US20010050956A1 - Video signal processing circuit and video signal processing method - Google Patents
Video signal processing circuit and video signal processing method Download PDFInfo
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- US20010050956A1 US20010050956A1 US09/353,924 US35392499A US2001050956A1 US 20010050956 A1 US20010050956 A1 US 20010050956A1 US 35392499 A US35392499 A US 35392499A US 2001050956 A1 US2001050956 A1 US 2001050956A1
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- 238000003672 processing method Methods 0.000 title claims description 9
- 238000001514 detection method Methods 0.000 claims abstract description 173
- 239000002131 composite material Substances 0.000 claims abstract description 117
- 238000000926 separation method Methods 0.000 claims abstract description 115
- 230000009467 reduction Effects 0.000 claims abstract description 97
- 230000002194 synthesizing effect Effects 0.000 claims abstract description 25
- 230000015572 biosynthetic process Effects 0.000 claims description 3
- 238000003786 synthesis reaction Methods 0.000 claims description 3
- 230000003111 delayed effect Effects 0.000 description 8
- 230000001934 delay Effects 0.000 description 7
- 230000000052 comparative effect Effects 0.000 description 4
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04N—PICTORIAL COMMUNICATION, e.g. TELEVISION
- H04N5/00—Details of television systems
- H04N5/14—Picture signal circuitry for video frequency region
- H04N5/21—Circuitry for suppressing or minimising disturbance, e.g. moiré or halo
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04N—PICTORIAL COMMUNICATION, e.g. TELEVISION
- H04N9/00—Details of colour television systems
- H04N9/77—Circuits for processing the brightness signal and the chrominance signal relative to each other, e.g. adjusting the phase of the brightness signal relative to the colour signal, correcting differential gain or differential phase
- H04N9/78—Circuits for processing the brightness signal and the chrominance signal relative to each other, e.g. adjusting the phase of the brightness signal relative to the colour signal, correcting differential gain or differential phase for separating the brightness signal or the chrominance signal from the colour television signal, e.g. using comb filter
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04N—PICTORIAL COMMUNICATION, e.g. TELEVISION
- H04N5/00—Details of television systems
- H04N5/14—Picture signal circuitry for video frequency region
- H04N5/144—Movement detection
Definitions
- the present invention relates to a video signal processing circuit and a video signal processing method having a function of reducing noise of a video signal on the basis of a result of motion detection for an image.
- Japanese Laid-Open Patent No. 2-184176 (1990) proposes a noise reduction circuit.
- This noise reduction circuit reduces noise by an inter-frame operation or an inter-line operation of a video signal in response to presence/absence of motion in an image.
- the S/N of the video signal can be improved in response to the type of the image.
- An object of the present invention is to provide a video signal processing circuit capable of further improving picture quality with a relatively simple structure.
- Another object of the present invention is to provide a video signal processing method capable of further improving picture quality with a relatively simple structure.
- a video signal processing circuit comprises a detection circuit detecting presence/absence of motion in an image, a separation circuit separating a luminance signal and a chrominance signal from a composite video signal by an inter-frame operation or an intra-frame operation on the basis of the result of detection by the detection circuit, and a noise reduction circuit reducing noise of at least the luminance signal output from the separation circuit by an inter-frame operation or an intra-frame operation on the basis of the result of detection by the detection circuit.
- the video signal processing circuit presence/absence of motion in the image is detected so that the luminance signal and the chrominance signal are separated from the composite video signal by an inter-frame operation or an intra-frame operation on the basis of the result of detection. At this time, noise of the composite video signal is reduced by an inter-frame operation. Further, noise of at least the luminance signal is reduced by an inter-frame operation or an intra-frame operation on the basis of the result of detection of motion in the image.
- noise of the composite video signal is reduced and noise of at least the luminance signal is reduced in the separated luminance and chrominance signals, whereby the S/N of the video signal is further improved.
- the detection circuit may include a motion detection circuit detecting presence/absence of motion in the image on the basis of the composite video signal, the separation circuit may separate the luminance signal and the chrominance signal from the composite video signal by an inter-frame operation or an intra-frame operation on the basis of an output signal of the motion detection circuit, and the noise reduction circuit may reduce noise of at least the luminance signal output from the separation circuit by an inter-frame operation or an intra-frame operation on the basis of the output signal of the motion detection circuit.
- noise of the composite video signal is reduced and noise of at least the luminance signal is reduced in the separated luminance and chrominance signals, whereby the S/N of the video signal is further improved.
- the motion detection circuit is provided in common for the separation circuit and the noise reduction circuit, whereby the circuit scale is not increased but the cost can be reduced.
- the picture quality can be further improved with a simple structure.
- the separation circuit may perform an intra-frame operation when the output signal of the motion detection circuit indicates presence of motion in the image and perform an inter-frame operation when the output signal of the motion detection circuit indicates absence of motion in the image
- the noise reduction circuit may perform an intra-frame operation or no operation when the output signal of the motion detection circuit indicates presence of motion in the image and may perform an inter-frame operation when the output signal of the motion detection circuit indicates absence of motion in the image
- the luminance signal and the chrominance signal are separated by an intra-frame operation when the image has motion, while the luminance signal and the chrominance signal are separated by an inter-frame operation when the image has no motion.
- high picture quality is obtained by an inter-frame operation as to a still picture.
- At least the luminance signal is subjected to an intra-frame operation or directly output with no operation in the separated luminance and chrominance signals when the image has motion, while at least the luminance signal is subjected to an inter-frame operation when the image has no motion.
- noise is reduced by an inter-frame operation as to a still picture.
- the picture quality can be further improved in response to a motion picture and a still picture.
- the video signal processing circuit may further comprise a first delay circuit delaying the composite video signal by one or more vertical scanning periods and a second delay circuit delaying at least the luminance signal output from the separation circuit by one or more vertical scanning periods, the motion detection circuit may detect presence/absence of motion in the image by operating the composite video signal and an output signal of the first delay circuit, the separation circuit may separate the luminance signal and the chrominance signal from the composite video signal by operating the composite video signal and the output signal of the first delay circuit, and the noise reduction circuit may reduce noise of at least the luminance signal output from the separation circuit by operating at least the luminance signal output from the separation circuit and an output signal of the second delay circuit.
- the composite video signal is delayed by one or more vertical scanning periods and presence/absence of motion in the image is detected through the video signal and the delayed signal while the luminance signal and the chrominance signal are separated from the composite video signal by an inter-frame operation.
- At least the luminance signal is delayed by one or more vertical scanning periods, and noise of at least the luminance signal is reduced through at least the luminance signal and the delayed signal.
- the motion detection circuit may calculate a differential value between the composite video signal and the output signal of the first delay circuit, for detecting presence/absence of motion in the image on the basis of the calculated differential value.
- the motion detection circuit may determine that the image has motion when the calculated differential value is greater than a prescribed value, and determine that the image has no motion when the calculated differential value is not greater than the prescribed value.
- the motion detection circuit may determine that the image has motion when the calculated differential value is greater than a first value, determine that the image has no motion when the calculated differential value is less than a second value, and determine that motion of the image is in an intermediate state when the calculated differential value is within the range from the first value to the second value.
- the separation circuit may perform an operation employing a result of an intra-frame operation and a result of an inter-frame operation when the motion detection circuit determines that motion of the image is in the intermediate state
- the noise reduction circuit may perform an operation employing a result of an intra-frame operation and a result of an inter-frame operation when the motion detection circuit determines that motion of the image is in the intermediate state.
- the detection circuit may include a first motion detection circuit detecting presence/absence of motion in the image on the basis of the composite video signal, a second motion detection circuit detecting presence/absence of motion in the image on the basis of at least the luminance signal output from the separation circuit and a synthesizing circuit synthesizing output signals of the first motion detection circuit and the second motion detection circuit, the separation circuit may separate the luminance signal and the chrominance signal from the composite video signal by an inter-frame operation or an intra-frame operation on the basis of the output signal of the first motion detection circuit, and the noise reduction circuit may reduce noise of at least the luminance signal output from the separation circuit by an inter-frame operation or an intra-frame operation on the basis of an output signal of the synthesizing circuit.
- presence/absence of motion in the image is detected on the basis of at least the separated luminance signal, and the result of motion detection through the composite video signal and the result of motion detection through at least the luminance signal are synthesized.
- noise of at least the luminance signal is reduced by an inter-frame operation or an intra-frame operation.
- noise of the composite video signal is reduced and noise of at least the luminance signal is reduced in the separated luminance and chrominance signals, whereby the S/N of the video signal is further improved.
- noise of at least the luminance signal is reduced on the basis of the result of motion detection through the composite video signal and the result of motion detection through at least the luminance signal after separation, whereby motion detection is more correctly performed.
- the first motion detection circuit is provided in common for the separation circuit and the noise reduction circuit, whereby the circuit scale is not increased but the cost can be reduced.
- the picture quality can be further improved with a simple structure.
- the separation circuit performs an intra-frame operation when the output signal of the first motion detection circuit indicates presence of motion in the image and performs an inter-frame operation when the output signal of the first motion detection circuit indicates absence of motion in the image
- the noise reduction circuit performs an intra-frame operation or no operation when the output signal of the synthesizing circuit indicates presence of motion in the image and performs an inter-frame operation when the output signal of the synthesizing circuit indicates absence of motion in the image.
- the luminance signal and the chrominance signal are separated by an intra-frame operation when the image has motion while the luminance signal and the chrominance signal are separated by an inter-frame operation when the image has no motion.
- an inter-frame operation as to a still picture.
- At least the luminance signal is subjected to an intra-frame operation or directly output with no operation in the separated luminance and chrominance signals when the image has motion, while at least the luminance signal is subjected to an inter-frame operation when the image has no motion.
- noise is reduced by an inter-frame operation as to a still picture.
- the picture quality can be further improved in response to a motion picture and a still picture.
- the video signal processing circuit further comprises a first delay circuit delaying the composite video signal by one or more vertical scanning periods and a second delay circuit delaying at least the luminance signal output from the separation circuit by one or more vertical scanning periods, the first motion detection circuit detects presence/absence of motion in the image by operating the composite video signal and an output signal of the first delay circuit, the separation circuit separates the luminance signal and the chrominance signal from the composite video signal by operating the composite video signal and the output signal of the first delay circuit, the second motion detection circuit detects presence/absence of motion in the image by operating at least the luminance signal output from the separation circuit and an output signal of the second delay circuit, and the noise reduction circuit reduces noise of at least the luminance signal output from the separation circuit by operating at least the luminance signal output from the separation circuit and the output signal of the second delay circuit.
- the composite video signal is delayed by one or more vertical scanning periods, presence/absence of motion in the image is detected through the video signal and the delayed signal, and the luminance signal and the chrominance signal are separated from the composite video signal by an inter-frame operation.
- At least the luminance signal is delayed by one or more vertical scanning periods, presence/absence of motion in the image is detected through at least the luminance signal and the delayed signal, and noise of at least the luminance signal is reduced on the basis of a synthesized result of motion detection.
- the first motion detection circuit may calculate a differential value between the composite video signal and the output signal of the first delay circuit and detect presence/absence of motion in the image on the basis of the calculated differential value
- the second motion detection circuit may calculate a differential value between at least the luminance signal output from the separation circuit and the output signal of the second delay signal and detect presence/absence of motion in the image on the basis of the calculated differential value
- the first motion detection circuit may determine that the image has motion when the calculated differential value is greater than a prescribed value and determine that the image has no motion when the calculated differential value is not greater than the prescribed value
- the second motion detection circuit may determine that the image has motion when the calculated differential value is greater than a prescribed value and determine that the image has no motion when the calculated value is not greater than the prescribed value
- the first motion detection circuit may determine that the image has motion when the calculated differential value is greater than a first value, determine that the image has no motion when the calculated differential value is less than a second value, and determine that motion of the image is in an intermediate state when the calculated differential value is within the range from the first value to the second value, and the second motion detection circuit may determine that the image has motion when the differential value is greater than a third value, determine that the image has no motion when the differential value is less than a fourth value, and determine that motion of the image is in an intermediate state when the differential value is within the range from the third value to the fourth value.
- the separation circuit may perform an operation employing a result of an intra-frame operation and a result of an inter-frame operation when the first motion detection circuit determines that motion of the image is in the intermediate state
- the noise reduction circuit may perform an operation employing a result of an intra-frame operation and a result of an inter-frame operation when the second motion detection circuit determines that motion of the image is in the intermediate state.
- the synthesizing circuit may perform synthesis by an operation employing output signals of the first motion detection circuit and the second motion detection circuit.
- the separation circuit may separate the luminance signal and the chrominance signal from the composite video signal by an operation using composite video signals of adjacent two lines as an intra-frame operation when the detection circuit detects presence of motion in the image, and separate the luminance signal and the chrominance signal from the composite video signal by an operation using composite video signals of the same lines in continuous two frames as an inter-frame operation when the detection circuit detects absence of motion in the image.
- the noise reduction circuit may perform an operation using at least luminance signals of adjacent two lines as an intra-frame operation or perform no operation when the detection circuit detects presence of motion in the image and perform an operation using at least luminance signals of the same lines in continuous two frames as an inter-frame operation when the detection circuit detects absence of motion in the image.
- the separation circuit may include a three-dimensional Y/C separation circuit
- the noise reduction circuit may include a three-dimensional noise reduction circuit
- the three-dimensional Y/C separation circuit separates the luminance signal and the chrominance signal from the composite video signal by an intra-frame operation as to a motion picture, and separates the luminance signal and the chrominance signal from the composite video signal by an inter-frame operation and reduces noise of the composite video signal as to a still picture.
- the three-dimensional noise reduction circuit reduces noise of at least the luminance signal by an intra-frame operation or directly outputs the luminance signal as to a motion picture, and reduces at least noise of the luminance signal as to a still picture.
- a video signal processing circuit comprises a three-dimensional Y/C separation circuit, a three-dimensional noise reduction circuit and a motion detection circuit for an image provided in common for the three-dimensional Y/C separation circuit and the three-dimensional noise reduction circuit.
- the three-dimensional Y/C separation circuit separates a luminance signal and a chrominance signal from a composite video signal by three-dimensional Y/C separation and reduces noise of the composite video signal as to a still picture, and separates the luminance signal and the chrominance signal from the composite video signal by two-dimensional Y/C separation as to a motion picture.
- the three-dimensional noise reduction circuit reduces noise of at least the luminance signal by three-dimensional noise reduction as to a still picture, and reduces noise of at least the luminance signal by two-dimensional noise reduction or directly outputs the luminance signal as to a motion picture.
- noise of the composite video signal is reduced and noise of at least the luminance signal is reduced in the separated luminance and chrominance signals, whereby the S/N of the video signal is further improved.
- the motion detection circuit is provided in common for the three-dimensional Y/C separation circuit and the three-dimensional noise reduction circuit, whereby the circuit scale is not increased but the cost can be reduced.
- the picture quality can be further improved with a simple structure.
- a video signal processing method includes steps of detecting presence/absence of motion in an image, separating a luminance signal and a chrominance signal from a composite video signal by an inter-frame operation or an intra-frame operation on the basis of the result of detection of presence/absence of motion in the image, and reducing noise of at least the luminance signal by an inter-frame operation or an intra-frame operation on the basis of the result of detection of presence/absence of motion in the image.
- noise of the composite video signal is reduced and noise of at least the luminance signal is reduced in the separated luminance and chrominance signals, whereby the S/N of the video signal is further improved.
- the detecting step may include a step of detecting presence/absence of motion in the image on the basis of the composite video signal
- the separating step may include a step of separating the luminance signal and the chrominance signal from the composite video signal by an inter-frame operation or an intra-frame operation on the basis of the result of detection of presence/absence of motion through the composite video signal
- the reducing step may include a step of reducing noise of at least the luminance signal by an inter-frame operation or an intra-frame operation on the basis of the result of detection of presence/absence of motion through the composite video signal.
- noise of the composite video signal is reduced and noise of at least the luminance signal is reduced in the separated luminance and chrominance signals, whereby the S/N of the video signal is further improved.
- a common result of motion detection is employed for separating the luminance signal and the chrominance signal and reducing noise of at least the separated luminance signal, whereby the circuit scale is not increased but the cost can be reduced.
- the picture quality can be further improved with a simple structure.
- the detecting step may include steps of detecting presence/absence of motion in the image on the basis of the composite video signal and detecting presence/absence of motion in the image on the basis of at least the separated luminance signal
- the separating step may include a step of separating the luminance signal and the chrominance signal from the composite video signal by an inter-frame operation or an intra-frame operation on the basis of the result of detection of presence/absence of motion through the composite video signal
- the reducing step may include a step of reducing noise of at least the luminance signal by an inter-frame operation or an intra-frame operation on the basis of the result of detection of presence/absence of motion through at least the luminance signal.
- noise of the composite video signal is reduced and noise of at least the luminance signal is reduced in the separated luminance and chrominance signals, whereby the S/N of the video signal is further improved.
- noise of at least the luminance signal is reduced on the basis of the result of motion detection through the composite video signal and the result of motion detection through at least the luminance signal after separation, whereby motion detection is more correctly performed.
- a common result of motion detection is employed for separating the luminance signal and the chrominance signal and reducing noise of at least the separated luminance signal, whereby the circuit scale is not increased but the cost can be reduced.
- the picture quality can be further improved with a simple structure.
- noise is reduced when the luminance signal and the chrominance signal are separated from the composite video signal and noise of at least the luminance signal after separation is reduced, whereby the S/N of the video signal is further improved.
- the picture quality can be further improved with a simple structure.
- FIG. 1 is a block diagram showing a video signal processing circuit according to a first embodiment of the present invention
- FIG. 2 illustrates the relation between a frame-to-frame differential value of a composite video signal and motion and still states of an image
- FIG. 3 is a block diagram showing a video signal processing circuit according to a second embodiment of the present invention.
- FIG. 1 is a block diagram showing a video signal processing circuit according to a first embodiment of the present invention.
- the video signal processing circuit shown in FIG. 1 includes a frame memory 101 , a motion detection circuit 102 , a three-dimensional Y/C separation circuit 103 , another frame memory 105 and a three-dimensional noise reduction circuit 106 .
- a composite video signal VD is supplied to the frame memory 101 , the motion detection circuit 102 and the three-dimensional Y/C separation circuit 103 .
- the frame memory 101 delays the composite video signal VD by one frame period.
- An output signal of the frame memory 101 is supplied to the motion detection circuit 102 and the three-dimensional Y/C separation circuit 103 .
- the motion detection circuit 102 detects presence/absence of motion in an image on the basis of the composite video signal VD and the output signal of the frame memory 101 , and outputs a motion signal MS indicating the result of detection.
- the motion signal MS output from the motion detection circuit 102 is supplied to the three-dimensional Y/C separation circuit 103 and the three-dimensional noise reduction circuit 106 .
- the three-dimensional Y/C separation circuit 103 performs three-dimensional Y/C separation or two-dimensional Y/C separation on the composite video signal VC on the basis of the output signal of the frame memory 101 and the motion signal MS output from the motion detection circuit 102 , and outputs a luminance signal Y 1 and a chrominance signal C 1 .
- the luminance signal Y 1 and the chrominance signal C 1 output from the three-dimensional Y/C separation circuit 103 is supplied to the three-dimensional noise reduction circuit 106 , and the luminance signal Y 1 is also supplied to the frame memory 105 .
- the frame memory 105 delays the luminance signal Y 1 by one frame period. An output signal of the frame memory 105 is supplied to the three-dimensional noise reduction circuit 106 .
- the three-dimensional noise reduction circuit 106 performs three-dimensional noise reduction or two-dimensional noise reduction on the luminance signal Y 1 output from the three-dimensional Y/C separation circuit 103 on the basis of the output signal of the frame memory 105 and the motion signal MS output from the motion detection circuit 102 .
- the three-dimensional Y/C separation circuit 103 corresponds to the separation circuit
- the three-dimensional noise reduction circuit 106 corresponds to the noise reduction circuit
- the motion detection circuit 102 corresponds to the motion detection circuit.
- the frame memory 101 corresponds to the first delay circuit
- the frame memory 105 corresponds to the second delay circuit.
- the frame memory 101 delays the input composite video signal VD by one frame period.
- the motion detection circuit 102 calculates a frame-to-frame differential value of the composite video signal VD on the basis of the composite video signal VD and the output signal of the frame memory 101 , and outputs the motion signal MS responsive to the differential value.
- FIG. 2 illustrates the relation between the frame-to-frame differential value of the composite video signal and motion and still states of the image.
- the image is determined as “still” if the differential value is less than a comparative value B, or determined as “motion” if the differential value is greater than a comparative value A. If the differential value is within the range from the comparative value A to the comparative value B, the image is determined as “intermediate” between “motion” and “still”.
- the motion signal MS is “00” if the result of the determination is “motion”, while the motion signal MS is “11” if the result of the determination is “still”. If the result of the determination is “intermediate”, the motion signal MS is “01”.
- the three-dimensional Y/C separation circuit 103 performs three-dimensional Y/C separation or two-dimensional Y/C separation on the composite video signal VD on the basis of the motion signal MS output from the motion detection circuit 102 .
- video signals of adjacent two lines (scanning lines) or video signals of the same lines in continuous two frames have correlation, and chrominance signals superposed on the two video signals are of opposite phase with each other, or of 180 degrees out-of-phase. Therefore, a chrominance signal is extracted and a luminance signal is cancelled by performing subtraction on a composite video signal between adjacent lines, for example. Further, a chrominance signal is extracted and a luminance signal is cancelled by performing subtraction on a composite video signal between continuous frames, for example.
- the former method of separating a chrominance signal is referred to as two-dimensional Y/C separation, and the latter method of separating a chrominance signal is referred to as three-dimensional Y/C separation.
- the composite video signal VD is subjected to three-dimensional Y/C separation using an inter-frame operation.
- the chrominance signal is extracted by performing subtraction on the composite video signal VD and the output signal of the frame memory 101
- the luminance signal is extracted by subtracting the chrominance signal from the composite video signal VD.
- the composite video signal VD is subjected to two-dimensional Y/C separation using an inter-line operation.
- the chrominance signal is extracted by performing subtraction on a composite video signal VD of an adjacent line, and the luminance signal is extracted by subtracting the chrominance signal from the composite video signal VD.
- the motion signal MS output from the motion detection circuit 102 indicates “intermediate”
- the weighted mean of a luminance signal obtained by three-dimensional Y/C separation using an inter-frame operation and a luminance signal obtained by two-dimensional Y/C separation using an inter-line operation is found, and the weighted mean of a chrominance signal obtained by three-dimensional Y/C separation using an inter-frame operation and a chrominance signal obtained by two-dimensional Y/C separation using an inter-line operation is found.
- the luminance signal Y 1 and the chrominance signal C 1 are separated from the composite video signal VD.
- three-dimensional Y/C separation is performed using an inter-frame operation thereby improving the S/N.
- two-dimensional Y/C separation is performed using an intra-frame operation.
- the frame memory 105 delays the luminance signal Y 1 output from the three-dimensional Y/C separation circuit 103 by one frame period. Further, the three-dimensional noise reduction circuit 105 performs three-dimensional noise reduction or two-dimensional noise reduction on the luminance signal Y 1 output from the three-dimensional Y/C separation circuit 103 on the basis of the motion signal MS.
- the luminance signal Y 1 is subjected to three-dimensional noise reduction using an inter-frame operation.
- the weighted mean of the luminance signal Y 1 and the output signal of the frame memory 105 is found by the three-dimensional noise reduction, and the result is output as a luminance signal Y 2 .
- the luminance signal Y 1 is subjected to two-dimensional noise reduction using an intra-frame operation.
- the luminance signal Y 1 is directly output as the luminance signal Y 2 , by the two-dimensional noise reduction.
- the motion signal MS output from the motion detection circuit 102 indicates “intermediate”
- the weighted mean of a luminance signal obtained by three-dimensional noise reduction using an inter-frame operation and a luminance signal obtained by two-dimensional noise reduction using an intra-frame operation is found and the result is output as the luminance signal Y 2 .
- the three-dimensional noise reduction circuit 106 directly outputs the chrominance signal C 1 as a chrominance signal C 2 .
- noise is reduced by three-dimensional noise reduction using an inter-frame operation.
- noise is reduced by two-dimensional noise reduction using an intra-frame operation.
- the video signal processing circuit employs the motion detection circuit 102 in common for the three-dimensional Y/C separation circuit 103 and the three-dimensional noise reduction circuit 106 , whereby motion of the image is smoothed, the degree of integration can be improved and the cost can be reduced.
- noise is reduced in the three-dimensional Y/C separation circuit 103 and the three-dimensional noise reduction circuit 106 , whereby the S/N is further improved and higher picture quality is attained.
- An inter-line operation or coring may be performed as the two-dimensional reduction.
- Frame-cyclic noise reduction may be performed as the three-dimensional noise reduction.
- three-dimensional noise reduction or two-dimensional noise reduction is performed as to the separated luminance signal Y 1 in this embodiment, three-dimensional noise reduction or two-dimensional noise reduction may be performed also as to the chrominance signal C 1 .
- FIG. 3 is a block diagram showing a video signal processing circuit according to a second embodiment of the present invention.
- the video signal processing circuit shown in FIG. 3 is different from that shown in FIG. 1 in a point that a motion detection circuit 107 and a synthesizing circuit 108 are additionally provided.
- a motion detection circuit 102 outputs a motion signal MS 1 .
- the motion signal MS 1 is supplied to a three-dimensional Y/C separation circuit 103 and the synthesizing circuit 108 .
- a luminance signal Y 1 output from the three-dimensional Y/C separation circuit 103 is supplied to a frame memory 105 and the motion detection circuit 107 .
- the frame memory 105 delays the luminance signal Y 1 by one frame period.
- An output signal of the frame memory 105 is supplied to a three-dimensional noise reduction circuit 106 and the motion detection circuit 107 .
- the motion detection circuit 107 detects presence/absence of motion in an image on the basis of the luminance signal Y 1 output from the three-dimensional Y/C separation circuit 103 and the output signal of the frame memory 105 , and outputs a motion signal MS 2 indicating the result of the detection.
- the motion signal MS output from the motion detection circuit 107 is supplied to the synthesizing circuit 108 .
- the synthesizing circuit 108 synthesizes the motion signal MS 1 output from the motion detection circuit 102 and the motion signal MS 2 output from the motion detection circuit 107 .
- a synthetic signal MS 3 output from the synthesizing circuit 108 is supplied to the three-dimensional noise reduction circuit 106 .
- the three-dimensional Y/C separation circuit 103 corresponds to the separation circuit
- the three-dimensional noise reduction circuit 106 corresponds to the noise reduction circuit
- the motion detection circuit 102 corresponds to the first motion detection circuit
- the motion detection circuit 107 corresponds to the second motion detection circuit.
- the frame memory 101 corresponds to the first delay circuit
- the frame memory 105 corresponds to the second delay circuit
- the synthesizing circuit 108 corresponds to the synthesizing circuit.
- the frame memory 101 delays an input composite video signal VD by one frame period.
- the motion detection circuit 102 calculates the differential value between the composite video signal VD and the output signal of the frame memory 101 , and outputs the motion signal MS 1 responsive to the differential value.
- presence/absence of motion in the image is detected by the frame-to-frame difference of the composite video signal VD.
- the three-dimensional Y/C separation circuit 103 performs three-dimensional Y/C separation or two-dimensional Y/C separation on the composite video signal VD on the basis of the motion signal MS 1 output from the motion detection circuit 102 .
- the composite video signal VD is subjected to three-dimensional Y/C separation using an inter-frame operation.
- the chrominance signal is extracted by performing subtraction on the composite video signal VD and the output signal of the frame memory 101
- the luminance signal is extracted by subtracting the chrominance signal from the composite video signal VD.
- the composite video signal VD is subjected to two-dimensional Y/C separation using an inter-line operation.
- the chrominance signal is extracted by performing subtraction on a composite video signal VD of an adjacent line, and the luminance signal is extracted by subtracting the chrominance signal from the composite video signal VD.
- the motion signal MS 1 output from the motion detection circuit 102 indicates “intermediate”
- the weighted mean of a luminance signal obtained by three-dimensional Y/C separation using an inter-frame operation and a luminance signal obtained by two-dimensional Y/C separation using an inter-line operation is found and the weighted mean of a chrominance signal obtained by three-dimensional Y/C separation using an inter-frame operation and a chrominance signal obtained by two-dimensional Y/C separation using an inter-line operation is found.
- the luminance signal Y 1 and the chrominance signal C 1 are separated from the composite video signal VD.
- three-dimensional Y/C separation is performed using an inter-frame operation, thereby improving the S/N.
- two-dimensional Y/C separation is performed using an intra-frame operation.
- the frame memory 105 delays the luminance signal Y 1 output from the three-dimensional Y/C separation circuit 103 by one frame period.
- the motion detection circuit 107 calculates the differential value between the luminance signal Y 1 output from the three-dimensional Y/C separation circuit 103 and the output signal of the frame memory 105 , and outputs a motion signal MS 2 responsive to the differential value.
- presence/absence of motion in the image is detected on the basis of frame-to-frame difference of the luminance signal Y 1 .
- the motion detection circuit 107 performs motion detection on the basis of the luminance signal Y 1 separated from the composite video signal VD by the three-dimensional Y/C separation circuit 103 and improved in S/N, whereby a detection result of high precision can be obtained.
- the synthesizing circuit 108 synthesizes the motion signal MS 1 output from the motion detection circuit 102 and the motion signal MS 2 output from the motion detection circuit 107 .
- the motion signals MS 1 and MS 2 can be synthesized by any logical operation such as a weighted mean operation, an OR operation or an AND operation.
- the synthetic signal MS 3 output from the synthesizing circuit 108 indicates “motion” when at least one of the motion signals MS 1 and MS 2 indicates “motion”, while otherwise indicating “still”.
- the synthesizing circuit 108 is set in a motion priority mode.
- the three-dimensional noise reduction circuit 106 performs three-dimensional noise reduction or two-dimensional noise reduction on the luminance signal Y 1 output from the three-dimensional Y/C separation circuit 103 on the basis of the synthetic signal MS 3 .
- the luminance signal Y 1 is subjected to three-dimensional noise reduction using an inter-frame operation.
- the weighted mean of the luminance signal Y 1 and the output signal of the frame memory 105 is found by the three-dimensional noise reduction, and the result is output as a luminance signal Y 2 .
- the luminance signal Y 1 is subjected to two-dimensional noise reduction using an intra-frame operation.
- the luminance signal Y 1 is directly output as the luminance signal Y 2 , by the two-dimensional noise reduction.
- the synthetic signal MS 3 indicates “intermediate”
- the weighted mean of a luminance signal obtained by three-dimensional noise reduction using an inter-frame operation and a luminance signal obtained by two-dimensional noise reduction using an intra-frame operation is found and the result is output as the luminance signal Y 2 .
- the three-dimensional noise reduction circuit 106 directly outputs the chrominance signal C 1 as the chrominance signal C 2 .
- noise is reduced by three-dimensional noise reduction using an inter-frame operation.
- noise is reduced by two-dimensional noise reduction using an intra-frame operation.
- the video signal processing circuit employs the motion detection circuit 102 in common for the three-dimensional Y/C separation circuit 103 and the three-dimensional noise reduction circuit 106 , whereby motion of the image is smoothed, the degree of integration can be improved and the cost can be reduced.
- noise is reduced in the three-dimensional Y/C separation circuit 103 and the three-dimensional noise reduction circuit 106 , whereby the S/N is further improved and higher picture quality is attained.
- the motion detection circuit 107 performs motion detection on the basis of the separated luminance signal Y 1 and the three-dimensional noise reduction circuit 106 performs three-dimensional noise reduction or two-dimensional noise reduction on the basis of the synthetic signal MS 3 of the motion signal MS 1 and the motion signal MS 2 , whereby the precision of motion detection is improved and false detection is reduced. Consequently, the S/N is further improved, to attain higher picture quality.
- An inter-line operation or coring may be performed as the two-dimensional reduction.
- Frame-cyclic noise reduction may be performed as the three-dimensional noise reduction.
- three-dimensional noise reduction or two-dimensional noise reduction is performed as to the separated luminance signal Y 1 in this embodiment, three-dimensional noise reduction or two-dimensional noise reduction may be performed also as to the chrominance signal C 1 .
- the synthesizing circuit 108 may be set in a still priority mode outputting a synthetic signal MS 3 indicating “still” when at least one of the motion signals MS 1 and MS 2 indicates “still”.
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Abstract
Description
- 1. Field of the Invention
- The present invention relates to a video signal processing circuit and a video signal processing method having a function of reducing noise of a video signal on the basis of a result of motion detection for an image.
- 2. Description of the Prior Art
- In order to improve the S/N (signal-to-noise ratio) of a video signal, Japanese Laid-Open Patent No. 2-184176 (1990), for example, proposes a noise reduction circuit. This noise reduction circuit reduces noise by an inter-frame operation or an inter-line operation of a video signal in response to presence/absence of motion in an image. Thus, the S/N of the video signal can be improved in response to the type of the image.
- Further improvement of the S/N is awaited for satisfying the recent requirement for higher picture quality. However, a video signal processing circuit must be miniaturized and reduced in cost, and hence it is unpreferable to complicate and increase the size of the noise reduction circuit for improving the S/N of a video signal.
- An object of the present invention is to provide a video signal processing circuit capable of further improving picture quality with a relatively simple structure.
- Another object of the present invention is to provide a video signal processing method capable of further improving picture quality with a relatively simple structure.
- A video signal processing circuit according to an aspect of the present invention comprises a detection circuit detecting presence/absence of motion in an image, a separation circuit separating a luminance signal and a chrominance signal from a composite video signal by an inter-frame operation or an intra-frame operation on the basis of the result of detection by the detection circuit, and a noise reduction circuit reducing noise of at least the luminance signal output from the separation circuit by an inter-frame operation or an intra-frame operation on the basis of the result of detection by the detection circuit.
- In the video signal processing circuit, presence/absence of motion in the image is detected so that the luminance signal and the chrominance signal are separated from the composite video signal by an inter-frame operation or an intra-frame operation on the basis of the result of detection. At this time, noise of the composite video signal is reduced by an inter-frame operation. Further, noise of at least the luminance signal is reduced by an inter-frame operation or an intra-frame operation on the basis of the result of detection of motion in the image.
- Thus, noise of the composite video signal is reduced and noise of at least the luminance signal is reduced in the separated luminance and chrominance signals, whereby the S/N of the video signal is further improved.
- The detection circuit may include a motion detection circuit detecting presence/absence of motion in the image on the basis of the composite video signal, the separation circuit may separate the luminance signal and the chrominance signal from the composite video signal by an inter-frame operation or an intra-frame operation on the basis of an output signal of the motion detection circuit, and the noise reduction circuit may reduce noise of at least the luminance signal output from the separation circuit by an inter-frame operation or an intra-frame operation on the basis of the output signal of the motion detection circuit.
- In this case, presence/absence of motion in the image is detected on the basis of the composite video signal, and the luminance signal and the chrominance signal are separated from the composite video signal by an inter-frame operation or an intra-frame operation on the basis of the result of detection. At this time, noise of the composite video signal is reduced by an inter-frame operation. Further, noise of at least the luminance signal is reduced by an inter-frame operation or an intra-frame operation on the basis of the result of detection of motion in the image.
- Thus, noise of the composite video signal is reduced and noise of at least the luminance signal is reduced in the separated luminance and chrominance signals, whereby the S/N of the video signal is further improved.
- Further, the motion detection circuit is provided in common for the separation circuit and the noise reduction circuit, whereby the circuit scale is not increased but the cost can be reduced.
- Thus, the picture quality can be further improved with a simple structure.
- The separation circuit may perform an intra-frame operation when the output signal of the motion detection circuit indicates presence of motion in the image and perform an inter-frame operation when the output signal of the motion detection circuit indicates absence of motion in the image, and the noise reduction circuit may perform an intra-frame operation or no operation when the output signal of the motion detection circuit indicates presence of motion in the image and may perform an inter-frame operation when the output signal of the motion detection circuit indicates absence of motion in the image.
- In this case, the luminance signal and the chrominance signal are separated by an intra-frame operation when the image has motion, while the luminance signal and the chrominance signal are separated by an inter-frame operation when the image has no motion. Thus, high picture quality is obtained by an inter-frame operation as to a still picture.
- Further, at least the luminance signal is subjected to an intra-frame operation or directly output with no operation in the separated luminance and chrominance signals when the image has motion, while at least the luminance signal is subjected to an inter-frame operation when the image has no motion. Thus, noise is reduced by an inter-frame operation as to a still picture.
- Thus, the picture quality can be further improved in response to a motion picture and a still picture.
- The video signal processing circuit may further comprise a first delay circuit delaying the composite video signal by one or more vertical scanning periods and a second delay circuit delaying at least the luminance signal output from the separation circuit by one or more vertical scanning periods, the motion detection circuit may detect presence/absence of motion in the image by operating the composite video signal and an output signal of the first delay circuit, the separation circuit may separate the luminance signal and the chrominance signal from the composite video signal by operating the composite video signal and the output signal of the first delay circuit, and the noise reduction circuit may reduce noise of at least the luminance signal output from the separation circuit by operating at least the luminance signal output from the separation circuit and an output signal of the second delay circuit.
- In this case, the composite video signal is delayed by one or more vertical scanning periods and presence/absence of motion in the image is detected through the video signal and the delayed signal while the luminance signal and the chrominance signal are separated from the composite video signal by an inter-frame operation.
- Further, at least the luminance signal is delayed by one or more vertical scanning periods, and noise of at least the luminance signal is reduced through at least the luminance signal and the delayed signal.
- The motion detection circuit may calculate a differential value between the composite video signal and the output signal of the first delay circuit, for detecting presence/absence of motion in the image on the basis of the calculated differential value.
- The motion detection circuit may determine that the image has motion when the calculated differential value is greater than a prescribed value, and determine that the image has no motion when the calculated differential value is not greater than the prescribed value.
- The motion detection circuit may determine that the image has motion when the calculated differential value is greater than a first value, determine that the image has no motion when the calculated differential value is less than a second value, and determine that motion of the image is in an intermediate state when the calculated differential value is within the range from the first value to the second value.
- The separation circuit may perform an operation employing a result of an intra-frame operation and a result of an inter-frame operation when the motion detection circuit determines that motion of the image is in the intermediate state, and the noise reduction circuit may perform an operation employing a result of an intra-frame operation and a result of an inter-frame operation when the motion detection circuit determines that motion of the image is in the intermediate state.
- The detection circuit may include a first motion detection circuit detecting presence/absence of motion in the image on the basis of the composite video signal, a second motion detection circuit detecting presence/absence of motion in the image on the basis of at least the luminance signal output from the separation circuit and a synthesizing circuit synthesizing output signals of the first motion detection circuit and the second motion detection circuit, the separation circuit may separate the luminance signal and the chrominance signal from the composite video signal by an inter-frame operation or an intra-frame operation on the basis of the output signal of the first motion detection circuit, and the noise reduction circuit may reduce noise of at least the luminance signal output from the separation circuit by an inter-frame operation or an intra-frame operation on the basis of an output signal of the synthesizing circuit.
- In this case, presence/absence of motion in the image is detected on the basis of the composite video signal and the luminance signal and the chrominance signal are separated from the composite video signal by an inter-frame operation or an intra-frame operation on the basis of the result of detection. At this time, noise of the composite video signal is reduced by an inter-frame operation.
- Further, presence/absence of motion in the image is detected on the basis of at least the separated luminance signal, and the result of motion detection through the composite video signal and the result of motion detection through at least the luminance signal are synthesized. On the basis of the result of this synthesis, noise of at least the luminance signal is reduced by an inter-frame operation or an intra-frame operation.
- Thus, noise of the composite video signal is reduced and noise of at least the luminance signal is reduced in the separated luminance and chrominance signals, whereby the S/N of the video signal is further improved.
- In particular, noise of at least the luminance signal is reduced on the basis of the result of motion detection through the composite video signal and the result of motion detection through at least the luminance signal after separation, whereby motion detection is more correctly performed.
- Further, the first motion detection circuit is provided in common for the separation circuit and the noise reduction circuit, whereby the circuit scale is not increased but the cost can be reduced.
- Thus, the picture quality can be further improved with a simple structure.
- The separation circuit performs an intra-frame operation when the output signal of the first motion detection circuit indicates presence of motion in the image and performs an inter-frame operation when the output signal of the first motion detection circuit indicates absence of motion in the image, and the noise reduction circuit performs an intra-frame operation or no operation when the output signal of the synthesizing circuit indicates presence of motion in the image and performs an inter-frame operation when the output signal of the synthesizing circuit indicates absence of motion in the image.
- In this case, the luminance signal and the chrominance signal are separated by an intra-frame operation when the image has motion while the luminance signal and the chrominance signal are separated by an inter-frame operation when the image has no motion. Thus, higher picture quality can be obtained by an inter-frame operation as to a still picture.
- Further, at least the luminance signal is subjected to an intra-frame operation or directly output with no operation in the separated luminance and chrominance signals when the image has motion, while at least the luminance signal is subjected to an inter-frame operation when the image has no motion. Thus, noise is reduced by an inter-frame operation as to a still picture.
- Thus, the picture quality can be further improved in response to a motion picture and a still picture.
- The video signal processing circuit further comprises a first delay circuit delaying the composite video signal by one or more vertical scanning periods and a second delay circuit delaying at least the luminance signal output from the separation circuit by one or more vertical scanning periods, the first motion detection circuit detects presence/absence of motion in the image by operating the composite video signal and an output signal of the first delay circuit, the separation circuit separates the luminance signal and the chrominance signal from the composite video signal by operating the composite video signal and the output signal of the first delay circuit, the second motion detection circuit detects presence/absence of motion in the image by operating at least the luminance signal output from the separation circuit and an output signal of the second delay circuit, and the noise reduction circuit reduces noise of at least the luminance signal output from the separation circuit by operating at least the luminance signal output from the separation circuit and the output signal of the second delay circuit.
- In this case, the composite video signal is delayed by one or more vertical scanning periods, presence/absence of motion in the image is detected through the video signal and the delayed signal, and the luminance signal and the chrominance signal are separated from the composite video signal by an inter-frame operation.
- Further, at least the luminance signal is delayed by one or more vertical scanning periods, presence/absence of motion in the image is detected through at least the luminance signal and the delayed signal, and noise of at least the luminance signal is reduced on the basis of a synthesized result of motion detection.
- The first motion detection circuit may calculate a differential value between the composite video signal and the output signal of the first delay circuit and detect presence/absence of motion in the image on the basis of the calculated differential value, and the second motion detection circuit may calculate a differential value between at least the luminance signal output from the separation circuit and the output signal of the second delay signal and detect presence/absence of motion in the image on the basis of the calculated differential value.
- The first motion detection circuit may determine that the image has motion when the calculated differential value is greater than a prescribed value and determine that the image has no motion when the calculated differential value is not greater than the prescribed value, and the second motion detection circuit may determine that the image has motion when the calculated differential value is greater than a prescribed value and determine that the image has no motion when the calculated value is not greater than the prescribed value.
- The first motion detection circuit may determine that the image has motion when the calculated differential value is greater than a first value, determine that the image has no motion when the calculated differential value is less than a second value, and determine that motion of the image is in an intermediate state when the calculated differential value is within the range from the first value to the second value, and the second motion detection circuit may determine that the image has motion when the differential value is greater than a third value, determine that the image has no motion when the differential value is less than a fourth value, and determine that motion of the image is in an intermediate state when the differential value is within the range from the third value to the fourth value.
- The separation circuit may perform an operation employing a result of an intra-frame operation and a result of an inter-frame operation when the first motion detection circuit determines that motion of the image is in the intermediate state, and the noise reduction circuit may perform an operation employing a result of an intra-frame operation and a result of an inter-frame operation when the second motion detection circuit determines that motion of the image is in the intermediate state.
- The synthesizing circuit may perform synthesis by an operation employing output signals of the first motion detection circuit and the second motion detection circuit.
- The separation circuit may separate the luminance signal and the chrominance signal from the composite video signal by an operation using composite video signals of adjacent two lines as an intra-frame operation when the detection circuit detects presence of motion in the image, and separate the luminance signal and the chrominance signal from the composite video signal by an operation using composite video signals of the same lines in continuous two frames as an inter-frame operation when the detection circuit detects absence of motion in the image.
- The noise reduction circuit may perform an operation using at least luminance signals of adjacent two lines as an intra-frame operation or perform no operation when the detection circuit detects presence of motion in the image and perform an operation using at least luminance signals of the same lines in continuous two frames as an inter-frame operation when the detection circuit detects absence of motion in the image.
- The separation circuit may include a three-dimensional Y/C separation circuit, and the noise reduction circuit may include a three-dimensional noise reduction circuit.
- In this case, the three-dimensional Y/C separation circuit separates the luminance signal and the chrominance signal from the composite video signal by an intra-frame operation as to a motion picture, and separates the luminance signal and the chrominance signal from the composite video signal by an inter-frame operation and reduces noise of the composite video signal as to a still picture. The three-dimensional noise reduction circuit reduces noise of at least the luminance signal by an intra-frame operation or directly outputs the luminance signal as to a motion picture, and reduces at least noise of the luminance signal as to a still picture.
- A video signal processing circuit according to another aspect of the present invention comprises a three-dimensional Y/C separation circuit, a three-dimensional noise reduction circuit and a motion detection circuit for an image provided in common for the three-dimensional Y/C separation circuit and the three-dimensional noise reduction circuit.
- In the video signal processing circuit, the three-dimensional Y/C separation circuit separates a luminance signal and a chrominance signal from a composite video signal by three-dimensional Y/C separation and reduces noise of the composite video signal as to a still picture, and separates the luminance signal and the chrominance signal from the composite video signal by two-dimensional Y/C separation as to a motion picture. The three-dimensional noise reduction circuit reduces noise of at least the luminance signal by three-dimensional noise reduction as to a still picture, and reduces noise of at least the luminance signal by two-dimensional noise reduction or directly outputs the luminance signal as to a motion picture.
- Thus, noise of the composite video signal is reduced and noise of at least the luminance signal is reduced in the separated luminance and chrominance signals, whereby the S/N of the video signal is further improved.
- Further, the motion detection circuit is provided in common for the three-dimensional Y/C separation circuit and the three-dimensional noise reduction circuit, whereby the circuit scale is not increased but the cost can be reduced.
- Thus, the picture quality can be further improved with a simple structure.
- A video signal processing method according to still another aspect of the present invention includes steps of detecting presence/absence of motion in an image, separating a luminance signal and a chrominance signal from a composite video signal by an inter-frame operation or an intra-frame operation on the basis of the result of detection of presence/absence of motion in the image, and reducing noise of at least the luminance signal by an inter-frame operation or an intra-frame operation on the basis of the result of detection of presence/absence of motion in the image.
- In the video signal processing method, noise of the composite video signal is reduced and noise of at least the luminance signal is reduced in the separated luminance and chrominance signals, whereby the S/N of the video signal is further improved.
- The detecting step may include a step of detecting presence/absence of motion in the image on the basis of the composite video signal, the separating step may include a step of separating the luminance signal and the chrominance signal from the composite video signal by an inter-frame operation or an intra-frame operation on the basis of the result of detection of presence/absence of motion through the composite video signal, and the reducing step may include a step of reducing noise of at least the luminance signal by an inter-frame operation or an intra-frame operation on the basis of the result of detection of presence/absence of motion through the composite video signal.
- In this case, noise of the composite video signal is reduced and noise of at least the luminance signal is reduced in the separated luminance and chrominance signals, whereby the S/N of the video signal is further improved.
- Further, a common result of motion detection is employed for separating the luminance signal and the chrominance signal and reducing noise of at least the separated luminance signal, whereby the circuit scale is not increased but the cost can be reduced.
- Thus, the picture quality can be further improved with a simple structure.
- The detecting step may include steps of detecting presence/absence of motion in the image on the basis of the composite video signal and detecting presence/absence of motion in the image on the basis of at least the separated luminance signal, the separating step may include a step of separating the luminance signal and the chrominance signal from the composite video signal by an inter-frame operation or an intra-frame operation on the basis of the result of detection of presence/absence of motion through the composite video signal, and the reducing step may include a step of reducing noise of at least the luminance signal by an inter-frame operation or an intra-frame operation on the basis of the result of detection of presence/absence of motion through at least the luminance signal.
- In this case, noise of the composite video signal is reduced and noise of at least the luminance signal is reduced in the separated luminance and chrominance signals, whereby the S/N of the video signal is further improved.
- In particular, noise of at least the luminance signal is reduced on the basis of the result of motion detection through the composite video signal and the result of motion detection through at least the luminance signal after separation, whereby motion detection is more correctly performed.
- Further, a common result of motion detection is employed for separating the luminance signal and the chrominance signal and reducing noise of at least the separated luminance signal, whereby the circuit scale is not increased but the cost can be reduced.
- Thus, the picture quality can be further improved with a simple structure.
- According to the video signal processing circuit and the video signal processing method of the present invention, as hereinabove described, noise is reduced when the luminance signal and the chrominance signal are separated from the composite video signal and noise of at least the luminance signal after separation is reduced, whereby the S/N of the video signal is further improved. Thus, the picture quality can be further improved with a simple structure.
- The foregoing and other objects, features, aspects and advantages of the present invention will become more apparent from the following detailed description of the present invention when taken in conjunction with the accompanying drawings.
- FIG. 1 is a block diagram showing a video signal processing circuit according to a first embodiment of the present invention;
- FIG. 2 illustrates the relation between a frame-to-frame differential value of a composite video signal and motion and still states of an image; and
- FIG. 3 is a block diagram showing a video signal processing circuit according to a second embodiment of the present invention.
- FIG. 1 is a block diagram showing a video signal processing circuit according to a first embodiment of the present invention.
- The video signal processing circuit shown in FIG. 1 includes a
frame memory 101, amotion detection circuit 102, a three-dimensional Y/C separation circuit 103, anotherframe memory 105 and a three-dimensionalnoise reduction circuit 106. - A composite video signal VD is supplied to the
frame memory 101, themotion detection circuit 102 and the three-dimensional Y/C separation circuit 103. Theframe memory 101 delays the composite video signal VD by one frame period. An output signal of theframe memory 101 is supplied to themotion detection circuit 102 and the three-dimensional Y/C separation circuit 103. - The
motion detection circuit 102 detects presence/absence of motion in an image on the basis of the composite video signal VD and the output signal of theframe memory 101, and outputs a motion signal MS indicating the result of detection. The motion signal MS output from themotion detection circuit 102 is supplied to the three-dimensional Y/C separation circuit 103 and the three-dimensionalnoise reduction circuit 106. - The three-dimensional Y/
C separation circuit 103 performs three-dimensional Y/C separation or two-dimensional Y/C separation on the composite video signal VC on the basis of the output signal of theframe memory 101 and the motion signal MS output from themotion detection circuit 102, and outputs a luminance signal Y1 and a chrominance signal C1. The luminance signal Y1 and the chrominance signal C1 output from the three-dimensional Y/C separation circuit 103 is supplied to the three-dimensionalnoise reduction circuit 106, and the luminance signal Y1 is also supplied to theframe memory 105. - The
frame memory 105 delays the luminance signal Y1 by one frame period. An output signal of theframe memory 105 is supplied to the three-dimensionalnoise reduction circuit 106. - The three-dimensional
noise reduction circuit 106 performs three-dimensional noise reduction or two-dimensional noise reduction on the luminance signal Y1 output from the three-dimensional Y/C separation circuit 103 on the basis of the output signal of theframe memory 105 and the motion signal MS output from themotion detection circuit 102. - In this embodiment, the three-dimensional Y/
C separation circuit 103 corresponds to the separation circuit, the three-dimensionalnoise reduction circuit 106 corresponds to the noise reduction circuit, and themotion detection circuit 102 corresponds to the motion detection circuit. Theframe memory 101 corresponds to the first delay circuit, and theframe memory 105 corresponds to the second delay circuit. - Operations of the video signal processing circuit shown in FIG. 1 are now described. First, the
frame memory 101 delays the input composite video signal VD by one frame period. Themotion detection circuit 102 calculates a frame-to-frame differential value of the composite video signal VD on the basis of the composite video signal VD and the output signal of theframe memory 101, and outputs the motion signal MS responsive to the differential value. - FIG. 2 illustrates the relation between the frame-to-frame differential value of the composite video signal and motion and still states of the image.
- As shown in FIG. 2, the image is determined as “still” if the differential value is less than a comparative value B, or determined as “motion” if the differential value is greater than a comparative value A. If the differential value is within the range from the comparative value A to the comparative value B, the image is determined as “intermediate” between “motion” and “still”.
- The motion signal MS is “00” if the result of the determination is “motion”, while the motion signal MS is “11” if the result of the determination is “still”. If the result of the determination is “intermediate”, the motion signal MS is “01”.
- The three-dimensional Y/
C separation circuit 103 performs three-dimensional Y/C separation or two-dimensional Y/C separation on the composite video signal VD on the basis of the motion signal MS output from themotion detection circuit 102. - In this case, video signals of adjacent two lines (scanning lines) or video signals of the same lines in continuous two frames have correlation, and chrominance signals superposed on the two video signals are of opposite phase with each other, or of 180 degrees out-of-phase. Therefore, a chrominance signal is extracted and a luminance signal is cancelled by performing subtraction on a composite video signal between adjacent lines, for example. Further, a chrominance signal is extracted and a luminance signal is cancelled by performing subtraction on a composite video signal between continuous frames, for example. The former method of separating a chrominance signal is referred to as two-dimensional Y/C separation, and the latter method of separating a chrominance signal is referred to as three-dimensional Y/C separation.
- When the motion signal MS output from the
motion detection circuit 102 indicates “still”, the composite video signal VD is subjected to three-dimensional Y/C separation using an inter-frame operation. In this case, the chrominance signal is extracted by performing subtraction on the composite video signal VD and the output signal of theframe memory 101, and the luminance signal is extracted by subtracting the chrominance signal from the composite video signal VD. - When the motion signal MS output from the
motion detection circuit 102 indicates “motion”, the composite video signal VD is subjected to two-dimensional Y/C separation using an inter-line operation. In this case, the chrominance signal is extracted by performing subtraction on a composite video signal VD of an adjacent line, and the luminance signal is extracted by subtracting the chrominance signal from the composite video signal VD. - When the motion signal MS output from the
motion detection circuit 102 indicates “intermediate”, the weighted mean of a luminance signal obtained by three-dimensional Y/C separation using an inter-frame operation and a luminance signal obtained by two-dimensional Y/C separation using an inter-line operation is found, and the weighted mean of a chrominance signal obtained by three-dimensional Y/C separation using an inter-frame operation and a chrominance signal obtained by two-dimensional Y/C separation using an inter-line operation is found. - Thus, the luminance signal Y 1 and the chrominance signal C1 are separated from the composite video signal VD.
- As to a still picture, three-dimensional Y/C separation is performed using an inter-frame operation thereby improving the S/N. As to a motion picture, on the other hand, two-dimensional Y/C separation is performed using an intra-frame operation.
- Then, the
frame memory 105 delays the luminance signal Y1 output from the three-dimensional Y/C separation circuit 103 by one frame period. Further, the three-dimensionalnoise reduction circuit 105 performs three-dimensional noise reduction or two-dimensional noise reduction on the luminance signal Y1 output from the three-dimensional Y/C separation circuit 103 on the basis of the motion signal MS. - When the motion signal MS output from the
motion detection circuit 102 indicates “still”, the luminance signal Y1 is subjected to three-dimensional noise reduction using an inter-frame operation. According to this embodiment, the weighted mean of the luminance signal Y1 and the output signal of theframe memory 105 is found by the three-dimensional noise reduction, and the result is output as a luminance signal Y2. - When the motion signal MS output from the
motion detection circuit 102 indicates “motion”, the luminance signal Y1 is subjected to two-dimensional noise reduction using an intra-frame operation. According to this embodiment, the luminance signal Y1 is directly output as the luminance signal Y2, by the two-dimensional noise reduction. - When the motion signal MS output from the
motion detection circuit 102 indicates “intermediate”, the weighted mean of a luminance signal obtained by three-dimensional noise reduction using an inter-frame operation and a luminance signal obtained by two-dimensional noise reduction using an intra-frame operation is found and the result is output as the luminance signal Y2. - According to this embodiment, the three-dimensional
noise reduction circuit 106 directly outputs the chrominance signal C1 as a chrominance signal C2. - Thus, as to a still picture, noise is reduced by three-dimensional noise reduction using an inter-frame operation. As to a motion picture, on the other hand, noise is reduced by two-dimensional noise reduction using an intra-frame operation.
- The video signal processing circuit according to this embodiment employs the
motion detection circuit 102 in common for the three-dimensional Y/C separation circuit 103 and the three-dimensionalnoise reduction circuit 106, whereby motion of the image is smoothed, the degree of integration can be improved and the cost can be reduced. - Further, noise is reduced in the three-dimensional Y/
C separation circuit 103 and the three-dimensionalnoise reduction circuit 106, whereby the S/N is further improved and higher picture quality is attained. - An inter-line operation or coring may be performed as the two-dimensional reduction. Frame-cyclic noise reduction may be performed as the three-dimensional noise reduction.
- While three-dimensional noise reduction or two-dimensional noise reduction is performed as to the separated luminance signal Y 1 in this embodiment, three-dimensional noise reduction or two-dimensional noise reduction may be performed also as to the chrominance signal C1.
- FIG. 3 is a block diagram showing a video signal processing circuit according to a second embodiment of the present invention.
- The video signal processing circuit shown in FIG. 3 is different from that shown in FIG. 1 in a point that a
motion detection circuit 107 and asynthesizing circuit 108 are additionally provided. - A
motion detection circuit 102 outputs a motion signal MS1. The motion signal MS1 is supplied to a three-dimensional Y/C separation circuit 103 and the synthesizingcircuit 108. A luminance signal Y1 output from the three-dimensional Y/C separation circuit 103 is supplied to aframe memory 105 and themotion detection circuit 107. - The
frame memory 105 delays the luminance signal Y1 by one frame period. An output signal of theframe memory 105 is supplied to a three-dimensionalnoise reduction circuit 106 and themotion detection circuit 107. - The
motion detection circuit 107 detects presence/absence of motion in an image on the basis of the luminance signal Y1 output from the three-dimensional Y/C separation circuit 103 and the output signal of theframe memory 105, and outputs a motion signal MS2 indicating the result of the detection. The motion signal MS output from themotion detection circuit 107 is supplied to the synthesizingcircuit 108. - The
synthesizing circuit 108 synthesizes the motion signal MS1 output from themotion detection circuit 102 and the motion signal MS2 output from themotion detection circuit 107. A synthetic signal MS3 output from the synthesizingcircuit 108 is supplied to the three-dimensionalnoise reduction circuit 106. - The remaining structure of the video signal processing circuit shown in FIG. 3 is similar to that of the video signal processing circuit shown in FIG. 1.
- In this embodiment, the three-dimensional Y/
C separation circuit 103 corresponds to the separation circuit, the three-dimensionalnoise reduction circuit 106 corresponds to the noise reduction circuit, themotion detection circuit 102 corresponds to the first motion detection circuit, and themotion detection circuit 107 corresponds to the second motion detection circuit. Theframe memory 101 corresponds to the first delay circuit, theframe memory 105 corresponds to the second delay circuit, and the synthesizingcircuit 108 corresponds to the synthesizing circuit. - Operations of the video signal processing circuit shown in FIG. 3 are now described. First, the
frame memory 101 delays an input composite video signal VD by one frame period. Themotion detection circuit 102 calculates the differential value between the composite video signal VD and the output signal of theframe memory 101, and outputs the motion signal MS1 responsive to the differential value. Thus, presence/absence of motion in the image is detected by the frame-to-frame difference of the composite video signal VD. - The three-dimensional Y/
C separation circuit 103 performs three-dimensional Y/C separation or two-dimensional Y/C separation on the composite video signal VD on the basis of the motion signal MS1 output from themotion detection circuit 102. - When the motion signal MS 1 output from the
motion detection circuit 102 indicates “still”, the composite video signal VD is subjected to three-dimensional Y/C separation using an inter-frame operation. In this case, the chrominance signal is extracted by performing subtraction on the composite video signal VD and the output signal of theframe memory 101, and the luminance signal is extracted by subtracting the chrominance signal from the composite video signal VD. - When the motion signal MS 1 output from the
motion detection circuit 102 indicates “motion”, the composite video signal VD is subjected to two-dimensional Y/C separation using an inter-line operation. In this case, the chrominance signal is extracted by performing subtraction on a composite video signal VD of an adjacent line, and the luminance signal is extracted by subtracting the chrominance signal from the composite video signal VD. - When the motion signal MS 1 output from the
motion detection circuit 102 indicates “intermediate”, the weighted mean of a luminance signal obtained by three-dimensional Y/C separation using an inter-frame operation and a luminance signal obtained by two-dimensional Y/C separation using an inter-line operation is found and the weighted mean of a chrominance signal obtained by three-dimensional Y/C separation using an inter-frame operation and a chrominance signal obtained by two-dimensional Y/C separation using an inter-line operation is found. - Thus, the luminance signal Y 1 and the chrominance signal C1 are separated from the composite video signal VD.
- As to a still picture, three-dimensional Y/C separation is performed using an inter-frame operation, thereby improving the S/N. As to a motion picture, on the other hand, two-dimensional Y/C separation is performed using an intra-frame operation.
- Then, the
frame memory 105 delays the luminance signal Y1 output from the three-dimensional Y/C separation circuit 103 by one frame period. Then, themotion detection circuit 107 calculates the differential value between the luminance signal Y1 output from the three-dimensional Y/C separation circuit 103 and the output signal of theframe memory 105, and outputs a motion signal MS2 responsive to the differential value. Thus, presence/absence of motion in the image is detected on the basis of frame-to-frame difference of the luminance signal Y1. - In this case, the
motion detection circuit 107 performs motion detection on the basis of the luminance signal Y1 separated from the composite video signal VD by the three-dimensional Y/C separation circuit 103 and improved in S/N, whereby a detection result of high precision can be obtained. - Then, the synthesizing
circuit 108 synthesizes the motion signal MS1 output from themotion detection circuit 102 and the motion signal MS2 output from themotion detection circuit 107. The motion signals MS1 and MS2 can be synthesized by any logical operation such as a weighted mean operation, an OR operation or an AND operation. - According to this embodiment, the synthetic signal MS 3 output from the synthesizing
circuit 108 indicates “motion” when at least one of the motion signals MS1 and MS2 indicates “motion”, while otherwise indicating “still”. Thus, the synthesizingcircuit 108 is set in a motion priority mode. - Further, the three-dimensional
noise reduction circuit 106 performs three-dimensional noise reduction or two-dimensional noise reduction on the luminance signal Y1 output from the three-dimensional Y/C separation circuit 103 on the basis of the synthetic signal MS3. - When the synthetic signal MS indicates “still”, the luminance signal Y 1 is subjected to three-dimensional noise reduction using an inter-frame operation. According to this embodiment, the weighted mean of the luminance signal Y1 and the output signal of the
frame memory 105 is found by the three-dimensional noise reduction, and the result is output as a luminance signal Y2. - When the synthetic signal MS 3 indicates “motion”, the luminance signal Y1 is subjected to two-dimensional noise reduction using an intra-frame operation. According to this embodiment, the luminance signal Y1 is directly output as the luminance signal Y2, by the two-dimensional noise reduction.
- When the synthetic signal MS 3 indicates “intermediate”, the weighted mean of a luminance signal obtained by three-dimensional noise reduction using an inter-frame operation and a luminance signal obtained by two-dimensional noise reduction using an intra-frame operation is found and the result is output as the luminance signal Y2.
- According to this embodiment, the three-dimensional
noise reduction circuit 106 directly outputs the chrominance signal C1 as the chrominance signal C2. - Thus, as to a still picture, noise is reduced by three-dimensional noise reduction using an inter-frame operation. As to a motion picture, on the other hand, noise is reduced by two-dimensional noise reduction using an intra-frame operation.
- The video signal processing circuit according to this embodiment employs the
motion detection circuit 102 in common for the three-dimensional Y/C separation circuit 103 and the three-dimensionalnoise reduction circuit 106, whereby motion of the image is smoothed, the degree of integration can be improved and the cost can be reduced. - Further, noise is reduced in the three-dimensional Y/
C separation circuit 103 and the three-dimensionalnoise reduction circuit 106, whereby the S/N is further improved and higher picture quality is attained. - In addition, the
motion detection circuit 107 performs motion detection on the basis of the separated luminance signal Y1 and the three-dimensionalnoise reduction circuit 106 performs three-dimensional noise reduction or two-dimensional noise reduction on the basis of the synthetic signal MS3 of the motion signal MS1 and the motion signal MS2, whereby the precision of motion detection is improved and false detection is reduced. Consequently, the S/N is further improved, to attain higher picture quality. - An inter-line operation or coring may be performed as the two-dimensional reduction. Frame-cyclic noise reduction may be performed as the three-dimensional noise reduction.
- While three-dimensional noise reduction or two-dimensional noise reduction is performed as to the separated luminance signal Y 1 in this embodiment, three-dimensional noise reduction or two-dimensional noise reduction may be performed also as to the chrominance signal C1.
- The
synthesizing circuit 108 may be set in a still priority mode outputting a synthetic signal MS3 indicating “still” when at least one of the motion signals MS1 and MS2 indicates “still”. - Although the present invention has been described and illustrated in detail, it is clearly understood that the same is by way of illustration and example only and is not to be taken by way of limitation, the spirit and scope of the present invention being limited only by the terms of the appended claims.
Claims (23)
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| JP20159098A JP4061721B2 (en) | 1998-07-16 | 1998-07-16 | Video signal processing circuit and video signal processing method |
| JP10-201590 | 1998-07-16 |
Publications (2)
| Publication Number | Publication Date |
|---|---|
| US20010050956A1 true US20010050956A1 (en) | 2001-12-13 |
| US6400762B2 US6400762B2 (en) | 2002-06-04 |
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| US09/353,924 Expired - Fee Related US6400762B2 (en) | 1998-07-16 | 1999-07-15 | Video signal processing circuit and video signal processing method |
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| US (1) | US6400762B2 (en) |
| EP (1) | EP0973341B1 (en) |
| JP (1) | JP4061721B2 (en) |
| DE (1) | DE69941417D1 (en) |
| MY (1) | MY126470A (en) |
| TW (1) | TW437238B (en) |
Cited By (3)
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| US20060023121A1 (en) * | 2004-07-21 | 2006-02-02 | Kabushiki Kaisha Toshiba | Electronic apparatus, video data reception method, and video data receiver |
| US20060192896A1 (en) * | 2004-01-30 | 2006-08-31 | Kazuki Sawa | Frame circulating type noise reduction method and frame circulating type noise reduction device |
| US20080309680A1 (en) * | 2007-06-13 | 2008-12-18 | Teng-Yi Lin | Noise Cancellation Device for an Image Signal Processing System |
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| KR100407952B1 (en) * | 2001-05-09 | 2003-12-03 | 엘지전자 주식회사 | Circuit and Method for Separating Color/Luminance Signal |
| TWI227630B (en) * | 2003-12-22 | 2005-02-01 | Sunplus Technology Co Ltd | A method of inter-frame Y/C separation |
| TWI229556B (en) * | 2003-12-22 | 2005-03-11 | Sunplus Technology Co Ltd | Method of motion detection for 3D comb filter video decoder |
| TWI232060B (en) * | 2003-12-22 | 2005-05-01 | Sunplus Technology Co Ltd | A method of inter-frame Y/C separation |
| TWI228935B (en) * | 2003-12-22 | 2005-03-01 | Sunplus Technology Co Ltd | Method of motion detection for 3D comb filter video decoder |
| JP4417780B2 (en) * | 2004-05-31 | 2010-02-17 | 株式会社東芝 | Noise removal apparatus and image display apparatus |
| JP4861636B2 (en) * | 2005-04-19 | 2012-01-25 | パナソニック株式会社 | Image processing apparatus and image processing program |
| US7450184B1 (en) | 2005-06-27 | 2008-11-11 | Magnum Semiconductor, Inc. | Circuits and methods for detecting 2:2 encoded video and systems utilizing the same |
| US7522214B1 (en) | 2005-06-27 | 2009-04-21 | Magnum Semiconductor, Inc. | Circuits and methods for deinterlacing video display data and systems using the same |
| US7414671B1 (en) | 2005-06-30 | 2008-08-19 | Magnum Semiconductor, Inc. | Systems and methods for display object edge detection and pixel data interpolation in video processing systems |
| TWI311436B (en) * | 2005-07-05 | 2009-06-21 | Realtek Semiconductor Corp | Motion detection method |
| US7538824B1 (en) | 2005-08-18 | 2009-05-26 | Magnum Semiconductor, Inc. | Systems and methods for reducing noise during video deinterlacing |
| JP2009044450A (en) * | 2007-08-08 | 2009-02-26 | Toshiba Microelectronics Corp | 3D Y / C separation circuit |
| JP2009100373A (en) * | 2007-10-18 | 2009-05-07 | Sanyo Electric Co Ltd | Noise reduction processing apparatus, noise reduction processing method, and electronic apparatus |
| JP5645699B2 (en) * | 2011-02-16 | 2014-12-24 | 三菱電機株式会社 | Motion detection device and method, video signal processing device and method, and video display device |
| US9019340B2 (en) * | 2012-03-28 | 2015-04-28 | Intel Corporation | Content aware selective adjusting of motion estimation |
| US9269158B2 (en) | 2012-09-25 | 2016-02-23 | Nokia Technologies Oy | Method, apparatus and computer program product for periodic motion detection in multimedia content |
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- 1999-07-12 TW TW088111799A patent/TW437238B/en not_active IP Right Cessation
- 1999-07-14 MY MYPI99002981A patent/MY126470A/en unknown
- 1999-07-15 DE DE69941417T patent/DE69941417D1/en not_active Expired - Fee Related
- 1999-07-15 EP EP99305610A patent/EP0973341B1/en not_active Expired - Lifetime
- 1999-07-15 US US09/353,924 patent/US6400762B2/en not_active Expired - Fee Related
Cited By (6)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US20060192896A1 (en) * | 2004-01-30 | 2006-08-31 | Kazuki Sawa | Frame circulating type noise reduction method and frame circulating type noise reduction device |
| US7567299B2 (en) * | 2004-01-30 | 2009-07-28 | Panasonic Corporation | Method and device of frame-cyclic noise reduction |
| US20060023121A1 (en) * | 2004-07-21 | 2006-02-02 | Kabushiki Kaisha Toshiba | Electronic apparatus, video data reception method, and video data receiver |
| US20080309680A1 (en) * | 2007-06-13 | 2008-12-18 | Teng-Yi Lin | Noise Cancellation Device for an Image Signal Processing System |
| US8180171B2 (en) * | 2007-06-13 | 2012-05-15 | Novatek Microelectronics Corp. | Noise cancellation device for an image signal processing system |
| TWI401944B (en) * | 2007-06-13 | 2013-07-11 | Novatek Microelectronics Corp | Noise cancellation device for an image signal processing system |
Also Published As
| Publication number | Publication date |
|---|---|
| JP4061721B2 (en) | 2008-03-19 |
| DE69941417D1 (en) | 2009-10-29 |
| TW437238B (en) | 2001-05-28 |
| EP0973341A3 (en) | 2001-10-10 |
| US6400762B2 (en) | 2002-06-04 |
| EP0973341A2 (en) | 2000-01-19 |
| MY126470A (en) | 2006-10-31 |
| EP0973341B1 (en) | 2009-09-16 |
| JP2000032494A (en) | 2000-01-28 |
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