WO2018153133A1 - 一种家用电器检测方法及系统 - Google Patents
一种家用电器检测方法及系统 Download PDFInfo
- Publication number
- WO2018153133A1 WO2018153133A1 PCT/CN2017/113357 CN2017113357W WO2018153133A1 WO 2018153133 A1 WO2018153133 A1 WO 2018153133A1 CN 2017113357 W CN2017113357 W CN 2017113357W WO 2018153133 A1 WO2018153133 A1 WO 2018153133A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- self
- home appliance
- test
- module
- checking
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Ceased
Links
Classifications
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01D—MEASURING NOT SPECIALLY ADAPTED FOR A SPECIFIC VARIABLE; ARRANGEMENTS FOR MEASURING TWO OR MORE VARIABLES NOT COVERED IN A SINGLE OTHER SUBCLASS; TARIFF METERING APPARATUS; MEASURING OR TESTING NOT OTHERWISE PROVIDED FOR
- G01D21/00—Measuring or testing not otherwise provided for
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01R—MEASURING ELECTRIC VARIABLES; MEASURING MAGNETIC VARIABLES
- G01R31/00—Arrangements for testing electric properties; Arrangements for locating electric faults; Arrangements for electrical testing characterised by what is being tested not provided for elsewhere
- G01R31/01—Subjecting similar articles in turn to test, e.g. "go/no-go" tests in mass production; Testing objects at points as they pass through a testing station
Definitions
- the invention relates to the technical field of self-inspection of home appliances, in particular to a method and system for detecting household appliances.
- the regular self-test of home appliances is self-test according to the default order of electronic control. Although it can perform self-test according to the order of home appliances, considering the influence of the frequency of home appliances and the environment on the home appliances, the home appliance self-test is still performed in the default order. If the self-checking flexibility is poor and the effect is poor.
- the main object of the present invention is to provide a method for detecting a household appliance, which aims to solve the problem of the home appliance self-inspection in the prior art, taking into account the influence of the frequency of the home appliance and the environment on the home appliance, and still performing the home appliance in the default order. Inspection, self-checking flexibility and poor performance.
- the invention provides a method for detecting a household appliance, comprising:
- Each home appliance is sequentially detected in accordance with the adjusted self-test order of the home appliance.
- the self-test self-test sequence of the home appliance self-checking table according to the influence parameter includes:
- the home appliance self-test sequence of the preset home appliance self-checking table is adjusted according to the frequency of use, and the self-test sequence of the high-frequency home appliance is used before the home appliance with a low frequency of use.
- the self-test self-test sequence of the home appliance self-checking table according to the influence parameter includes:
- the home appliance self-checking order of the preset home appliance self-checking table is adjusted, and the self-checking order of the home appliances that have a large influence on the home appliance is before the small-sized home appliance.
- the step of sequentially detecting each home appliance according to the adjusted self-test sequence of the home appliance further includes:
- the self-test frequency of each of the set home appliances is obtained, and each home appliance is sequentially detected at the self-test frequency.
- the method includes:
- the method further includes:
- each module of the single home appliance is detected in accordance with the adjusted module self-test sequence.
- the impact factor is weather
- the self-test sequence of adjusting a single home appliance module according to the impact factor includes:
- the self-test sequence of the individual home appliance modules is adjusted, and the self-test sequence of the home appliance modules having a large weather influence is before the influence of the small home appliance module.
- the method further includes:
- the home appliance self-test sequence is generated and a home appliance self-checking table is formed.
- the present invention further provides a home appliance detecting system, including:
- the parameter obtaining module is configured to obtain an influence parameter of the self-test of the home appliance in the preset home appliance self-checking table;
- An adjustment module configured to adjust a self-test sequence of the appliance of the preset home appliance self-checking table according to the influence parameter
- the control module is configured to sequentially detect each home appliance according to the adjusted self-test sequence of the home appliance.
- the parameter obtaining module includes: a frequency parameter acquiring unit:
- the frequency parameter acquisition is used to adjust the self-test sequence of the home appliance self-checking table according to the frequency of use, and the self-test sequence of the high-frequency home appliance is used before the home appliance with low frequency of use;
- the parameter obtaining module includes: an environment parameter acquiring unit:
- the environmental parameter obtaining unit is configured to adjust the self-test sequence of the home appliance self-checking table according to the environment, and the self-checking order of the home appliances that have a large influence on the home appliance before the home appliance affects the small appliance.
- control module is further configured to acquire a self-test frequency of each of the set appliances, and sequentially detect each home appliance by the self-test frequency.
- the method further comprises:
- a self-test module for obtaining an influence factor of a self-test of the home appliance module
- the adjustment module is further configured to adjust a self-test sequence of the single home appliance module according to the impact factor.
- control module is further configured to detect each module of the single home appliance according to the adjusted module self-test sequence when detecting the single home appliance.
- the self-test module is further configured to adjust a self-test sequence of the single home appliance module according to the weather, and the self-test sequence of the home appliance module having a large weather influence is before the small-sized home appliance module is affected.
- the system further comprises:
- a receiving module configured to receive, by using the input interface, an input home appliance that needs self-test
- the generating module is configured to generate a home appliance self-test sequence according to a preset rule and form a home appliance self-checking table.
- the invention obtains the influence parameter of the home appliance self-test in the preset home appliance self-checking table; adjusts the home appliance self-checking order of the preset home appliance self-checking table according to the influence parameter; and sequentially detects each home appliance according to the adjusted home appliance self-checking order . It has improved the efficiency and flexibility of self-checking of home appliances, laying a good foundation for extending the life of home appliances and reducing the occurrence of home appliance failures.
- FIG. 1 is a schematic flow chart of a first embodiment of a method for detecting a household appliance according to the present invention
- FIG. 2 is a schematic flow chart of a second embodiment of a method for detecting a household appliance according to the present invention
- FIG. 3 is a schematic flow chart of a third embodiment of a method for detecting a household appliance according to the present invention.
- FIG. 4 is a schematic diagram of functional modules of a first embodiment of a home appliance detection system of the present invention.
- FIG. 5 is a schematic diagram of functional modules of a second embodiment of a home appliance detecting system of the present invention.
- FIG. 6 is a schematic diagram of functional modules of a third embodiment of a home appliance detection system of the present invention.
- the present invention provides a home appliance detecting method.
- FIG. 1 is a schematic flow chart of a first embodiment of a method for detecting a household appliance according to the present invention.
- the method comprises:
- Step S10 obtaining an influence parameter of the self-test of the home appliance in the preset home appliance self-checking table
- a smart home appliance having a self-test function and capable of automatically generating a self-checking table generates a home appliance self-checking table of the home appliance when the self-checking function is initialized, and sends the home appliance self-checking table to the home appliance type as a logo to
- the intelligent terminal that controls the self-test of the home appliance or other electronic device associated with the smart terminal stores the smart device or other electronic device associated with the smart terminal, and when the electronic device self-checking table is received, the smart terminal extracts the stored home appliance Checking the type of the home appliance, and sorting the extracted types of the home appliances according to a preset order to generate a self-checking table for the home appliance; the preset order of the home appliances is arranged, and the order of the home appliance self-checking table is initialized, and the order is arranged to be written in advance.
- a logic for arranging the self-test sequence of home appliances for example, sorted according to power consumption, air conditioner>water heater>refrigerator>humidifier, etc., or sorted according to conventional frequency, refrigerator>humidifier>air conditioner>water heater;
- the home appliance self-checking table of the home appliance is arranged in a preset order, and the preset self-checking influence parameter of the home appliance self-checking table is obtained, which is used to adjust the current home appliance self-checking table home appliance sorting order, and then adjust the home appliance self-checking order;
- the self-test influence parameter of the home appliance is a parameter condition that affects the self-test sequence of the home appliance set by the user in the smart terminal where the home appliance self-checking table is located or other electronic device associated with the smart terminal, and the smart terminal is capable of controlling the home appliance to perform self-test Checking the operation of the intelligent electronic device, and being able to set the self-checking influence parameter of the home appliance and the self-checking table for storing the home appliance; the other electronic device associated with the intelligent terminal is used to set the self-checking influence parameter of the home appliance or the self-checking table for storing the home appliance;
- the influence parameter of the home appliance self-test is set by the user according to various factors such as the current
- the self-test self-test sequence of the home appliance self-checking table according to the influence parameter includes:
- the home appliance self-test sequence of the preset home appliance self-checking table is adjusted, and the self-test sequence of the high-frequency home appliance is used before the home appliance with a low frequency of use;
- the parameter of the home appliance self-test influence parameter is the home appliance use frequency, that is, the home appliance use frequency is set to optimize the home appliance self-checking table adjustment parameter.
- the frequency of use of the home appliance in the self-checking table of the home appliance is obtained in the cycle of the target time, and the order of the home appliance is rearranged according to the frequency of use of the home appliance according to the frequency of use of the home appliance, and the order of the home appliance is sorted according to the frequency of use. Adjust the order of home appliances in the current home appliance self-checking table.
- the target time is a cycle, which is a self-test cycle time of the home appliance set in the home appliance self-checking table, and during this time, the home appliance use frequency of the home appliance self-checking table is calculated.
- the front of the home appliance having a low frequency of use of the home appliance having a high frequency of use is a home appliance having a high priority for self-checking.
- the self-test self-test sequence of the home appliance self-checking table according to the influence parameter includes:
- the home appliance self-checking order of the preset home appliance self-checking table is adjusted, and the self-checking order of the home appliances that have a large influence on the home appliance is before the small-sized home appliance.
- the parameter of the home appliance self-test influence parameter is an environment, that is, the influence of the environmental change on the home appliance is used as an influence parameter for adjusting the self-test sequence of the home appliance; in this case, according to the home appliance
- the location is divided into indoor electrical appliances and outdoor electrical appliances.
- the influence of environmental changes on outdoor electrical appliances is greater than that of indoor electrical appliances.
- the outdoor electrical appliances are arranged in front of indoor electrical appliances. For example, cold air in the north is bad in winter, and frost is easily generated.
- the electrical appliance is prone to failure, and the solar water heater is arranged in front of the television, and the solar water heater is prioritized over the television for self-inspection.
- Step S20 adjusting a self-test sequence of the home appliances of the preset home appliance self-checking table according to the influence parameter
- the current self-checking order of the home appliance self-checking table is adjusted; in step S10, the influence parameter of the current home appliance self-test is first obtained, and the home appliance self-checking table is rearranged according to the influence parameter.
- step S30 each home appliance is sequentially detected according to the adjusted self-test order of the home appliance.
- the self-test of the home appliance is controlled in this order by the order in which the home appliance self-checking table of the home appliance has been adjusted.
- the self-checking of the control appliance is a self-checking function of the home appliance, and before the home appliance self-checking table is generated, the connection between the home appliance and the smart device where the self-checking table of the home appliance is located or other electronic device associated with the smart terminal where the home appliance self-checking table is located is connected. It is used to control the home appliance through the home appliance self-checking table for self-checking operation.
- the smart terminal is connected to other electronic devices and home appliances to control the home appliance to perform self-test.
- the link function is an existing connection function between the home appliance and the smart terminal or other electronic device, for example, a Bluetooth connection, an infrared connection, and the like. This connection method is prior art and will not be described here.
- the self-checking frequency in the home appliance cycle of the home appliance self-checking table may be set by using the home appliance self-checking list of the home appliance self-checking table to improve the self-checking efficiency and the self-checking effect of the home appliance, for example, according to the acquired cycle.
- the frequency of internal appliances is used to adjust the self-test frequency of the appliance, that is, to set the number of self-tests of the current home appliance self-checking table in the cycle.
- the rice cooker is frequently used, prompting the user to set the number of self-tests in the rice cooker cycle; when setting the number of self-tests in the appliance cycle, the cycle and the number of times can be customized, for example, setting the rice cooker every month. If the number of inspections is 5, the self-test will be automatically controlled every 6 days in the month according to the number of self-tests in the set rice cooker cycle.
- the home appliance self-checking influence parameter of the home appliance self-checking table is obtained, and the home appliance self-checking table is adjusted according to the parameter, and the home appliance is sequentially controlled according to the adjusted home appliance self-checking table. Inspection operation; improve the self-checking efficiency of home appliances, and reduce the failure of home appliances and reduce the possibility of accidents. It also improves the intelligent self-checking of home appliances. Further, it can manually adjust the self-test frequency in the appliance cycle through the influence parameters of the home appliance self-test, which improves the user-friendliness of the home appliance self-test.
- FIG. 2 is a schematic flow chart of a second embodiment of a method for detecting a household appliance according to the present invention.
- the method includes:
- Step S40 obtaining an influence factor of the self-test of the home appliance module
- the influence factor of the preset self-test of the home appliance module is obtained, and the influence factor is an influence factor of the home appliance self-test module preset by the user in the home appliance self-checking table.
- the order of the self-test modules of the home appliances is adjusted by the influence factor, thereby improving the self-checking efficiency of the home appliances.
- the self-test sequence of the existing home appliance module is the default self-test sequence of the home appliance module for the self-checking function of the current home appliance. If there is no influence factor of the self-test of the home appliance module, the self-check operation of the home appliance module is performed according to the default self-test sequence of the home appliance module.
- the impact factor is weather
- the self-test sequence of adjusting a single home appliance module according to the impact factor includes:
- the self-test sequence of the individual home appliance modules is adjusted, and the self-test sequence of the home appliance modules having a large weather influence is before the influence of the small home appliance module.
- the self-test sequence of the home appliance modules is arranged before the self-test sequence of the home appliance module affected by the weather; for example, the current weather is summer, and when the air conditioner performs self-test, since the refrigeration function is used more, the self-test sequence may be: Compressor>Condenser>Throttle valve>Evaporator; when the current weather is winter, the air conditioner heating function is used more, and the self-test sequence is adjusted to: compressor> evaporator> throttle valve> condenser.
- the order of the home appliance self-test module is adjusted by the weather, and the current climate can be judged by acquiring the outdoor temperature, the relative humidity, and the like.
- the specific climate judgment method is judged according to the existing climate judgment mode of the smart terminal where the home appliance self-checking table is located or other electronic devices associated with the home appliance self-checking table.
- the weather determination method is separately set by the user to determine the weather, and the self-test sequence of the individual home appliance modules is adjusted by the change of the weather influence factor.
- Step S50 adjusting a self-test sequence of the single home appliance module according to the influence factor
- the module self-test operation is performed on the home appliance through the preset home appliance self-test module influence factor on the current order of the home appliance self-test module.
- the order of the self-test modules of the home appliance is adjusted according to the influence factor preset by the self-test sequence of the single home appliance module, that is, the order influence factor of the home appliance self-test module is set according to the type of the home appliance, and the order of the modules corresponding to the self-test of the home appliance is adjusted by the influence factor.
- Step S60 when detecting the single home appliance, detecting the single simple individual modules according to the adjusted module self-test sequence.
- the home appliance module After the home appliance self-test module is adjusted by the influence factor of the home appliance self-test module, the home appliance module is self-checked according to the sequence.
- the influence factor of a single home appliance self-test module adjusts the self-test sequence of the current home appliance module. If the current home appliance does not have a self-test module influence factor, the module self-test operation is performed on the current home appliance according to the default home appliance self-test module sequence.
- FIG. 3 is a schematic flowchart of a third embodiment of a method for detecting a household appliance according to the present invention.
- the method for obtaining an influence parameter of a home appliance self-test in a preset home appliance self-checking table is performed.
- Also includes:
- Step S70 providing an input interface
- the home appliance self-test input page is provided to add the home appliance into the home appliance self-checking table, thereby controlling the home appliance to perform the self-checking operation.
- the interface includes input boxes and buttons such as home appliance type and self-test list download.
- the home appliance that needs self-test and has a self-check function generates a self-checking table for the home appliance according to the self-checking function of the self-owned home appliance; the self-checking table of the home appliance generates a self-checking table function for the home appliance; the generated home appliance
- the self-checking table is transmitted to the smart terminal where the server or the self-checking table of the home appliance is located or other electronic device associated with the smart terminal; the home appliance that needs self-checking and has a self-checking function has a wireless connection function and can be self-checked with the home appliance
- the smart terminal on which the meter is located or other electronic device associated with the smart terminal is wirelessly connected; the wireless association is related to the self-owned wireless connection mode of the home appliance and the smart terminal or other electronic device; for example, a Bluetooth connection, an infrared connection, etc.
- the wireless connection mode is prior art, and will not be described here.
- Step S80 receiving an input home appliance that needs self-test through the input interface
- the home appliance information that has been input is obtained, that is, the home appliance information added to the home appliance self-checking list.
- the new operation of the home appliance is manually filled in by the user, and the home appliance self-checking table of the newly added home appliance is obtained for storage, and the self-checking operation of the home appliance module is performed.
- Step S90 generating a home appliance self-test sequence according to a preset rule and forming a home appliance self-checking table.
- the types of household appliances that have been added to the self-checking table of the home appliance are arranged according to the preset arrangement rules, and the home appliance self-checking table is formed according to the content of the home appliance arrangement, and the home appliance self-checking table is controlled by the home appliance self-checking table.
- the preset home appliance sorting order is a default sorting order of the home appliances set before the home appliance self-checking table is generated, and the sorting order can be customized by the user, and is used to be relatively optimized when initializing the home appliance type table.
- the obtaining of the home appliance type of the home appliance self-checking table further includes:
- the self-checking table of the home appliance is generated by the self-checking form of the home appliance having the self-checking function and generating the home appliance self-checking table, and then uploaded to the smart terminal where the home appliance self-checking table is located or other electronic device associated with the home appliance self-checking table.
- the self-checking table for confirming whether the home appliance in the self-checking table of the home appliance is missing the home appliance further includes:
- the type of home appliance of the home appliance self-checking table and the type of home appliance self-checking table that has been stored in the smart terminal where the home appliance self-checking table is located or other electronic devices associated with the smart terminal, and compares the two to confirm whether there is
- the type of home appliance is missing corresponding to the self-checking table of home appliances; in this case, in order to avoid the user's self-checking table, there is a user-added type of home appliance, but the home appliance is not submitted to the self-checking table of the home appliance to the server for storage, causing a mistake in the self-test of the home appliance later; or
- the self-checking data of the home appliance is missing due to data errors, system abnormalities or hardware device damage, which affects the self-checking operation of the home appliance.
- the home appliance self-checking table indicating that the home appliance is missing is indicated. It is necessary to re-acquire the self-checking list of the appliance.
- the invention further provides a home appliance detection system.
- FIG. 4 is a schematic diagram of functional modules of a first embodiment of a home appliance detecting system according to the present invention.
- the system includes: a parameter acquisition module 10, an adjustment module 20, and a control module 30.
- the parameter obtaining module 10 is configured to obtain an influence parameter of the self-test of the home appliance in the preset home appliance self-checking table;
- a smart home appliance having a self-test function and capable of automatically generating a self-checking table generates a home appliance self-checking table of the home appliance when the self-checking function is initialized, and sends the home appliance self-checking table to the home appliance type as a logo to
- the intelligent terminal that controls the self-test of the home appliance or other electronic device associated with the smart terminal stores the smart device or other electronic device associated with the smart terminal, and when the electronic device self-checking table is received, the smart terminal extracts the stored home appliance Checking the type of the home appliance, and sorting the extracted types of the home appliances according to a preset order to generate a self-checking table for the home appliance; the preset order of the home appliances is arranged, and the order of the home appliance self-checking table is initialized, and the order is arranged to be written in advance.
- a logic for arranging the self-test sequence of home appliances for example, sorted according to power consumption, air conditioner>water heater>refrigerator>humidifier, etc., or sorted according to conventional frequency, refrigerator>humidifier>air conditioner>water heater;
- the home appliance self-checking table of the home appliance is arranged in a preset order, and the preset self-checking influence parameter of the home appliance self-checking table is obtained, which is used to adjust the current home appliance self-checking table home appliance sorting order, and then adjust the home appliance self-checking order;
- the self-test influence parameter of the home appliance is a parameter condition that affects the self-test of the home appliance set by the user in the smart terminal where the home appliance self-checking table is located or other electronic device associated with the smart terminal, and the smart terminal is capable of controlling the home appliance for self-test
- the intelligent electronic device is operated, and can set the self-checking influence parameter of the home appliance and the self-checking table for storing the home appliance; the other electronic device associated with the smart terminal is used to set the self-checking influence parameter of the home appliance or the self-checking table for storing the home appliance;
- the influence parameters of the self-test of the home appliance are set by the user according to various factors such as the current home appliance usage,
- the parameter obtaining module includes: a frequency parameter obtaining unit 101, and an environment parameter obtaining unit 102:
- the frequency parameter obtaining unit 101 is configured to adjust a self-test sequence of the home appliance self-checking table according to the frequency of use, and the self-test sequence of the high-frequency home appliance is used before the home appliance with a low frequency of use;
- the parameter of the home appliance self-test influence parameter is the home appliance use frequency, that is, the home appliance use frequency is set to optimize the home appliance self-checking table adjustment parameter.
- the frequency of use of the home appliance in the self-checking table of the home appliance is obtained in the cycle of the target time, and the order of the home appliance is rearranged according to the frequency of use of the home appliance according to the frequency of use of the home appliance, and the order of the home appliance is sorted according to the frequency of use. Adjust the order of home appliances in the current home appliance self-checking table.
- the target time is a cycle, which is a self-test cycle time of the home appliance set in the home appliance self-checking table, and during this time, the home appliance use frequency of the home appliance self-checking table is calculated.
- the front of the home appliance having a low frequency of use of the home appliance having a high frequency of use is a home appliance having a high priority for self-checking.
- the environmental parameter obtaining unit 102 is configured to adjust the home appliance self-checking order of the preset home appliance self-checking table according to the environment, and the self-checking order of the home appliances that have a large influence on the home appliance is before the home appliance having a small influence.
- the parameter of the home appliance self-test influence parameter is an environment, that is, the influence of the environmental change on the home appliance is used as an influence parameter for adjusting the self-test sequence of the home appliance; in this case, according to the home appliance
- the location is divided into indoor electrical appliances and outdoor electrical appliances.
- the influence of environmental changes on outdoor electrical appliances is greater than that of indoor electrical appliances.
- the outdoor electrical appliances are arranged in front of indoor electrical appliances. For example, cold air in the north is bad in winter, and frost is easily generated.
- the electrical appliance is prone to failure, and the solar water heater is arranged in front of the television, and the solar water heater is prioritized over the television for self-inspection.
- the adjusting module 20 is configured to adjust a self-test sequence of the home appliance of the preset home appliance self-checking table according to the influence parameter;
- the current self-checking order of the home appliance self-checking table is adjusted; in the parameter obtaining module 10, the influence parameter of the current home appliance self-test is first obtained, and the home appliance self-checking is rearranged according to the influence parameter.
- the order of the home appliances in the table is adjusted; in the parameter obtaining module 10, the influence parameter of the current home appliance self-test is first obtained, and the home appliance self-checking is rearranged according to the influence parameter. The order of the home appliances in the table.
- the control module 30 is configured to sequentially detect each home appliance according to the adjusted home appliance self-test sequence.
- the self-test of the home appliance is controlled in this order by the order in which the home appliance self-checking table of the home appliance has been adjusted.
- the self-checking of the control appliance is a self-checking function of the home appliance, and before the home appliance self-checking table is generated, the connection between the home appliance and the smart device where the self-checking table of the home appliance is located or other electronic device associated with the smart terminal where the home appliance self-checking table is located is connected. It is used to control the home appliance through the home appliance self-checking table for self-checking operation.
- the smart terminal is connected to other electronic devices and home appliances to control the home appliance to perform self-test.
- the link function is an existing connection function between the home appliance and the smart terminal or other electronic device, for example, a Bluetooth connection, an infrared connection, and the like. This connection method is prior art and will not be described here.
- the self-checking frequency in the home appliance cycle of the home appliance self-checking table may be set by using the home appliance self-checking list of the home appliance self-checking table to improve the self-checking efficiency and the self-checking effect of the home appliance, for example, according to the acquired cycle.
- the frequency of internal appliances is used to adjust the self-test frequency of the appliance, that is, to set the number of self-tests of the current home appliance self-checking table in the cycle.
- the rice cooker is frequently used, prompting the user to set the number of self-tests in the rice cooker cycle; when setting the number of self-tests in the appliance cycle, the cycle and the number of times can be customized, for example, setting the rice cooker every month. If the number of inspections is 5, the self-test will be automatically controlled every 6 days in the month according to the number of self-tests in the set rice cooker cycle.
- the home appliance self-checking influence parameter of the home appliance self-checking table is obtained, and the home appliance self-checking table is adjusted according to the parameter, and the home appliance is sequentially controlled according to the adjusted home appliance self-checking table. Inspection operation; improve the self-checking efficiency of home appliances, and reduce the failure of home appliances and reduce the possibility of accidents. It also improves the intelligent self-checking of home appliances. Further, it can manually adjust the self-test frequency in the appliance cycle through the influence parameters of the home appliance self-test, which improves the user-friendliness of the home appliance self-test.
- FIG. 5 is a schematic diagram of functional modules of a second embodiment of a home appliance detecting system according to the present invention.
- the system includes a self-test module 40.
- the self-test module 40 is configured to obtain an influence factor of the self-test of the home appliance module
- the influence factor of the preset self-test of the home appliance module is obtained, and the influence factor is an influence factor of the home appliance self-test module preset by the user in the home appliance self-checking table.
- the order of the self-test modules of the home appliances is adjusted by the influence factor, thereby improving the self-checking efficiency of the home appliances.
- the self-test sequence of the existing home appliance module is the default self-test sequence of the home appliance module for the self-checking function of the current home appliance. If there is no influence factor of the self-test of the home appliance module, the self-check operation of the home appliance module is performed according to the default self-test sequence of the home appliance module.
- the self-test module 40 is further configured to adjust the self-test sequence of the single home appliance module according to the weather, and the self-test sequence of the home appliance module having a large weather influence is before the small-sized home appliance module is affected.
- the self-test sequence of the home appliance modules is arranged before the self-test sequence of the home appliance module affected by the weather; for example, the current weather is summer, and when the air conditioner performs self-test, since the refrigeration function is used more, the self-test sequence may be: Compressor>Condenser>Throttle valve>Evaporator; when the current weather is winter, the air conditioner heating function is used more, and the self-test sequence is adjusted to: compressor> evaporator> throttle valve> condenser.
- the order of the home appliance self-test module is adjusted by the weather, and the current climate can be judged by acquiring the outdoor temperature, the relative humidity, and the like.
- the specific climate judgment method is judged according to the existing climate judgment mode of the smart terminal where the home appliance self-checking table is located or other electronic devices associated with the home appliance self-checking table.
- the weather determination method is separately set by the user to determine the weather, and the self-test sequence of the individual home appliance modules is adjusted by the change of the weather influence factor.
- the adjustment module 20 is further configured to adjust a self-test sequence of the single home appliance module according to the impact factor;
- the module self-test operation is performed on the home appliance through the preset home appliance self-test module influence factor on the current order of the home appliance self-test module.
- the order of the self-test modules of the home appliance is adjusted according to the influence factor preset by the self-test sequence of the single home appliance module, that is, the order influence factor of the home appliance self-test module is set according to the type of the home appliance, and the order of the modules corresponding to the self-test of the home appliance is adjusted by the influence factor.
- the control module 30 is further configured to detect the single simple individual modules according to the adjusted module self-test sequence when detecting the single home appliance.
- the home appliance module After the home appliance self-test module is adjusted by the influence factor of the home appliance self-test module, the home appliance module is self-checked according to the sequence.
- the influence factor of a single home appliance self-test module adjusts the self-test sequence of the current home appliance module. If the current home appliance does not have a self-test module influence factor, the module self-test operation is performed on the current home appliance according to the default home appliance self-test module sequence.
- FIG. 6 is a schematic diagram of functional modules of a third embodiment of a home appliance detecting system of the present invention.
- the system further includes a providing module 50, a receiving module 60, and a generating module 70.
- the home appliance self-test input page is provided to add the home appliance into the home appliance self-checking table, thereby controlling the home appliance to perform the self-checking operation.
- the interface includes input boxes and buttons such as home appliance type and self-test list download.
- the home appliance that needs self-test and has a self-check function generates a self-checking table for the home appliance according to the self-checking function of the self-owned home appliance; the self-checking table of the home appliance generates a self-checking table function for the home appliance; the generated home appliance
- the self-checking table is transmitted to the smart terminal where the server or the self-checking table of the home appliance is located or other electronic device associated with the smart terminal; the home appliance that needs self-checking and has a self-checking function has a wireless connection function and can be self-checked with the home appliance
- the smart terminal on which the meter is located or other electronic device associated with the smart terminal is wirelessly connected; the wireless association is related to the self-owned wireless connection mode of the home appliance and the smart terminal or other electronic device; for example, a Bluetooth connection, an infrared connection, etc.
- the wireless connection mode is prior art, and will not be described here.
- the receiving module 60 is configured to receive, by using the input interface, an input home appliance that needs self-test;
- the home appliance information that has been input is obtained, that is, the home appliance information added to the home appliance self-checking list.
- the new operation of the home appliance is manually filled in by the user, and the home appliance self-checking table of the newly added home appliance is obtained for storage, and the self-checking operation of the home appliance module is performed.
- the generating module 70 is configured to generate a home appliance self-test sequence according to a preset rule and form a home appliance self-checking table.
- the types of household appliances that have been added to the self-checking table of the home appliance are arranged according to the preset arrangement rules, and the home appliance self-checking table is formed according to the content of the home appliance arrangement, and the home appliance self-checking table is controlled by the home appliance self-checking table.
- the preset home appliance sorting order is a default sorting order of the home appliances set before the home appliance self-checking table is generated, and the sorting order can be customized by the user, and is used to be relatively optimized when initializing the home appliance type table.
- the obtaining of the home appliance type of the home appliance self-checking table further includes:
- the self-checking table of the home appliance is generated by the self-checking form of the home appliance having the self-checking function and generating the home appliance self-checking table, and then uploaded to the smart terminal where the home appliance self-checking table is located or other electronic device associated with the home appliance self-checking table.
- the self-checking table for confirming whether the home appliance in the self-checking table of the home appliance is missing the home appliance further includes:
- the type of home appliance of the home appliance self-checking table and the type of home appliance self-checking table that has been stored in the smart terminal where the home appliance self-checking table is located or other electronic devices associated with the smart terminal, and compares the two to confirm whether there is
- the type of home appliance is missing corresponding to the self-checking table of home appliances; in this case, in order to avoid the user's self-checking table, there is a user-added type of home appliance, but the home appliance is not submitted to the self-checking table of the home appliance to the server for storage, causing a mistake in the self-test of the home appliance later; or
- the self-checking data of the home appliance is missing due to data errors, system abnormalities or hardware device damage, which affects the self-checking operation of the home appliance.
- the home appliance self-checking table indicating that the home appliance is missing is indicated. It is necessary to re-acquire the self-checking list of the appliance.
Landscapes
- Physics & Mathematics (AREA)
- General Physics & Mathematics (AREA)
- Selective Calling Equipment (AREA)
- Management, Administration, Business Operations System, And Electronic Commerce (AREA)
Abstract
一种家用电器检测方法包括:获取预设家电自检表中家电自检的影响参数(S10);根据影响参数调整预设家电自检表的家电自检顺序(S20);按照调整后的家电自检顺序依次检测各个家电(S30)。还公开了一种家用电器检测系统。该方法和系统实现了家电自检的高效率及灵活性,延长家电使用寿命,减少了故障和事故的发生。
Description
技术领域
本发明涉及家电自检技术领域,尤其涉及一种家用电器检测方法及系统。
背景技术
在现有技术中,常见的家电一般只提供基本的应用功能,而以后的家电新品将拥有自我检测功能,能够对自身功能模块进行自检,并反馈当前是否存在故障,这给延长家电寿命,减少事故的发生打下了很好的基础。
常规的家电自检是按照电控默认顺序进行自检,这样做虽然能根据家电顺序进行自检,但考虑到家电使用频率及天气等环境对家电的影响下,依旧按照默认顺序进行家电自检的话,自检灵活性差及效果差。
上述内容仅用于辅助理解本发明的技术方案,并不代表承认上述内容是现有技术。
发明内容
本发明的主要目的在于提供一种家用电器检测方法,旨在解决在现有技术的家电自检中,考虑到家电使用频率及天气等环境对家电的影响下,依旧按照默认顺序对进行家电自检,自检灵活性及效果差的问题。
本发明提供的一种家用电器检测方法,包括:
获取预设家电自检表中家电自检的影响参数;
根据所述影响参数调整所述预设家电自检表的家电自检顺序;
按照调整后的家电自检顺序依次检测各个家电。
优选地,在所述自检影响参数为使用频率时,所述根据所述影响参数调整所述预设家电自检表的家电自检顺序包括:
按照使用频率调整预设家电自检表的家电自检顺序,使用频率高家电的自检顺序在使用频率低的家电之前。
优选地,在所述自检影响参数为环境时,所述根据所述影响参数调整所述预设家电自检表的家电自检顺序包括:
按照环境调整预设家电自检表的家电自检顺序,所述环境对家电影响大的家电的自检顺序在影响小的家电之前。
优选地,所述按照调整后的家电自检顺序依次检测各个家电的步骤,还包括:
获取已设定的各个所述家电的自检频率,并以所述自检频率依次检测各个家电。
优选地,所述按照调整后的家电自检顺序依次检测各个家电之后,包括:
获取家电模块自检的影响因子;
根据所述影响因子调整单个家电模块的自检顺序。
优选地,所述根据所述影响因子调整单个家电模块的自检顺序的步骤之后,还包括:
在对所述单个家电检测时,按照调整后的模块自检顺序检测所述单个家电的各个模块。
优选地,所述影响因子为天气,所述根据所述影响因子调整单个家电模块的自检顺序包括:
按照天气调整单个家电模块的自检顺序,天气影响大的家电模块的自检顺序在影响小的家电模块之前。
优选地,所述获取预设家电自检表中家电自检的影响参数之前,还包括:
提供输入界面;
通过所述输入界面接收输入的需要自检的家电;
按照预设规则生成家电自检顺序并形成家电自检表。
此外,为实现上述目的,本发明还提供一种家用电器检测系统,包括:
参数获取模块,用于获取预设家电自检表中家电自检的影响参数;
调整模块,用于根据所述影响参数调整所述预设家电自检表的家电自检顺序;
控制模块,用于按照调整后的家电自检顺序依次检测各个家电。
优选地,所述参数获取模块,包括:频率参数获取单元:
频率参数获取,用于按照使用频率调整预设家电自检表的家电自检顺序,使用频率高家电的自检顺序在使用频率低的家电之前;
优选地,所述参数获取模块,包括:环境参数获取单元:
环境参数获取单元,用于按照环境调整预设家电自检表的家电自检顺序,所述环境对家电影响大的家电的自检顺序在影响小的家电之前。
优选地,所述控制模块,还用于获取已设定的各个所述家电的自检频率,并以所述自检频率依次检测各个家电。
优选地,还包括:
自检模块,用于获取家电模块自检的影响因子;
所述调整模块,还用于根据所述影响因子调整单个家电模块的自检顺序。
优选地,所述控制模块,还用于在对所述单个家电检测时,按照调整后的模块自检顺序检测所述单个家电的各个模块。
优选地,所述自检模块,还用于按照天气调整单个家电模块的自检顺序,天气影响大的家电模块的自检顺序在影响小的家电模块之前。
优选地,所述系统还包括:
提供模块,用于提供输入界面;
接收模块,用于通过所述输入界面接收输入的需要自检的家电;
生成模块,用于按照预设规则生成家电自检顺序并形成家电自检表。
本发明通过获取预设家电自检表中家电自检的影响参数;根据所述影响参数调整所述预设家电自检表的家电自检顺序;按照调整后的家电自检顺序依次检测各个家电。提高了家电自检的效率及灵活性,为延长家电寿命,并减少家电故障事故的发生打下很好的基础。
附图说明
图1为本发明家用电器检测方法的第一实施例的流程示意图;
图2为本发明家用电器检测方法的第二实施例的流程示意图;
图3为本发明家用电器检测方法的第三实施例的流程示意图;
图4为本发明家用电器检测系统的第一实施例的功能模块示意图;
图5为本发明家用电器检测系统的第二实施例的功能模块示意图;
图6为本发明家用电器检测系统的第三实施例的功能模块示意图。
本发明目的的实现、功能特点及优点将结合实施例,参照附图做进一步说明。
具体实施方式
应当理解,此处所描述的具体实施例仅仅用以解释本发明,并不用于限定本发明。
基于上述问题,本发明提供一种家用电器检测方法。
参照图1,图1为本发明家用电器检测方法的第一实施例的流程示意图。
在一实施例中,所述方法包括:
步骤S10,获取预设家电自检表中家电自检的影响参数;
本实施例中,有自检功能且能够自动生成自检表的智能家电,在自检功能初始化时,生成该家电的家电自检表,并将该家电自检表以家电类型为标识发送至控制家电自检的智能终端或其他与该智能终端关联的电子设备中存储,该智能终端或其他与该智能终端关联的电子设备在接收到家电自检表时,智能终端提取已存储的家电自检表家电类型,并根据预设顺序排列已提取的家电类型,生成家电自检表;所述家电排列预设顺序,为已设置的家电自检表初始化排列顺序,该顺序排列为事先写入一种逻辑,用以对家电自检顺序进行排列,例如:按照耗电量排序,空调>热水器>冰箱>加湿器等,或者按照常规使用频率排序,冰箱>加湿器>空调>热水器等;
进一步的,按预设顺序排列家电的家电自检表,获取已预设的家电自检表家电自检影响参数,用以调整当前家电自检表家电排列顺序,进而调整家电自检顺序;所述家电自检影响参数,为用户在该家电自检表所在智能终端或与该智能终端关联其他电子设备中设置的影响家电自检顺序的参数条件,所述智能终端,为能够控制家电进行自检操作的智能电子设备,并能够设置家电自检影响参数及存储家电自检表;所述与该智能终端关联的其他电子设备,用以设置家电自检影响参数或存储家电自检表等;该家电自检影响参数为用户根据当前家电使用情况、所在地域、环境温度等各种因素设置,为优化当前家电自检表家电排列顺序,提高家电自检效率提供前提条件。
进一步的,在所述自检影响参数为使用频率时,所述根据所述影响参数调整所述预设家电自检表的家电自检顺序包括:
按照使用频率调整预设家电自检表的家电自检顺序,使用频率高家电的自检顺序在使用频率低的家电之前;
在当前家电自检表中,若所述家电自检影响参数的参数为家电使用频率,即设置家电使用频率为优化家电自检表的调整参数时。在此情况下,以目标时间为周期,获取周期内家电自检表中家电的使用频率,根据以获取到的家电使用频率,按照使用频率由高至低重新排列家电顺序,通过该家电排列顺序调整当前家电自检表的家电排列顺序。所述目标时间为周期,为家电自检表中设置的家电自检周期时间,在该时间内,计算家电自检表的家电使用频率。所述将使用频率高的家电排使用频率低的家电前面,是为优先自检使用频率高的家电。通过根据使用频率排列的家电顺序,调整当前家电自检表的家电顺序;提高家电自检效率并提升家电自检效果。
进一步的,在所述自检影响参数为环境时,所述根据所述影响参数调整所述预设家电自检表的家电自检顺序包括:
按照环境调整预设家电自检表的家电自检顺序,所述环境对家电影响大的家电的自检顺序在影响小的家电之前。
在当前家电自检表中,若所述家电自检影响参数的参数为环境时,即以环境变化对家电的影响大小,作为调整家电自检顺序的影响参数;在此情况下,根据家电所处位置,分为室内电器、室外电器,环境变化对室外电器的影响比室内电器的影响要大,则将室外电器排列在室内电器前面,例如,北方冬天冷空气恶劣,容易产生霜冻,在室外的电器容易出故障,则将太阳能热水器排列在电视机之前,将太阳能热水器优先于电视机进行自检。
步骤S20,根据所述影响参数调整所述预设家电自检表的家电自检顺序;
根据已获取到的家电自检影响参数,调整当前预设的家电自检表家电自检顺序;在步骤S10中,首先获取当前家电自检的影响参数,根据影响参数重新排列家电自检表中的家电排列顺序。
步骤S30,按照调整后的家电自检顺序依次检测各个家电。
通过已被影响参数调整后的家电自检表家电排列顺序,按该顺序控制家电进行自检。所述控制家电进行自检,为家电自检表功能,在家电自检表生成之前,通过家电与家电自检表所在智能终端或者与家电自检表所在智能终端关联的其他电子设备的连接,用以通过家电自检表控制家电进行自检操作。所述智能终端或者与其他电子设备与家电进行连接进而控制家电进行自检,该链接功能为家电与该智能终端或其他电子设备现有连接功能,例如,蓝牙连接、红外连接等。该连接方式为现有技术,在此不多赘述。
进一步的,还可通过家电自检表的家电排列顺序,设置该家电自检表中家电周期内的自检频率,用以提高家电自检效率及自检效果,例如,根据已获取到的周期内家电使用频率,调整家电自检频率,即,设置当前家电自检表家电在周期内的自检次数。例如,当前家电自检表中,电饭煲使用频率高,提示用户可设置电饭煲周期内的自检次数;在设置家电周期内自检次数时,可自定义周期及次数,例如设置电饭煲每个月自检次数为5次,则根据已设置的电饭煲周期内自检次数,当月内每隔6天自动控制电饭煲进行自检操作。
本实施例通过获取家电自检表的家电自检影响参数,并根据该参数调整当前家电自检表的家电排列顺序,进而根据已调整后的家电自检表的家电排列顺序依次控制家电进行自检操作;提高家电自检效率,并减少家电故障及降低事故发生可能性。也使家电自检智能化得到了提高,进一步的,还可通过家电自检影响参数手动调节家电周期内的自检频率,提升了用户操作家电自检的友好度。
参照图2,图2为本发明家用电器检测方法的第二实施例的流程示意图。基于上述方法的第一实施例,所述按照调整后的家电自检顺序依次检测各个家电之后,包括:
步骤S40,获取家电模块自检的影响因子;
本实施例中,在家电自检时,获取已预设的家电模块自检的影响因子,所述影响因子为用户在家电自检表中已预设的家电自检模块的影响因子。通过该影响因子调整家电自检模块顺序,进而提高家电自检效率。已有的家电模块自检顺序,为当前家电自有的自检功能默认的家电模块自检顺序。若无家电模块自检的影响因子,则根据默认的家电模块自检顺序对家电模块进行自检操作。
进一步的,所述影响因子为天气,所述根据所述影响因子调整单个家电模块的自检顺序包括:
按照天气调整单个家电模块的自检顺序,天气影响大的家电模块的自检顺序在影响小的家电模块之前。
在家电自检之前,若影响该家电自检模块顺序的影响因子为天气,根据气候的变化优先检测家电的某个模块,用以确认该家电模块是否受天气影响产生故障;将受天气影响大的家电模块的自检顺序排列在受天气影响小的家电模块自检顺序之前;例如,当前天气为夏天,在空调器进行自检时,由于制冷功能使用较多,则自检顺序可以为:压缩机>冷凝器>节流阀>蒸发器等;当前天气为冬天时,空调器制热功能使用较多,自检顺序调整为:压缩机>蒸发器>节流阀>冷凝器等。所述通过天气调整家电自检模块顺序,可通过获取室外温度、相对湿度等判断当前气候。具体气候判断方式,根据当前家电自检表所在智能终端或者与家电自检表关联的其他电子设备已有的气候判断方式进行判断。或者,由用户单独设置气候判断方式进行天气判断,并通过天气影响因子的变化调整单个家电模块自检顺序。
步骤S50,根据所述影响因子调整单个家电模块的自检顺序;
通过预设的家电自检模块影响因子对当前家电自检模块调整后的顺序对家电进行模块自检操作。所述家电自检模块顺序,根据单个家电模块自检顺序预设的影响因子进行调整,即根据家电类型设置家电自检模块顺序影响因子,并通过该影响因子调整对应家电自检的模块顺序。
步骤S60,在对所述单个家电检测时,按照调整后的模块自检顺序检测所述单个简单的各个模块。
经过家电自检模块影响因子调整后的家电自检模块顺序,根据该顺序对家电模块进行自检操作。单个家电自检模块影响因子调整当前家电模块的自检顺序,若当前家电并无自检模块影响因子,则根据默认的家电自检模块顺序对当前家电进行模块自检操作。
参照图3,图3为本发明家用电器检测方法的第三实施例的流程示意图,基于上述方法的第一、二实施例,所述获取预设家电自检表中家电自检的影响参数之前,还包括:
步骤S70,提供输入界面;
在已预设家电自检中,提供家电自检输入页面,用以新增家电进家电自检表中,进而控制家电进行自检操作。该界面包括家电类型、自检表下载等输入框和按钮。
进一步的,需要自检并拥有自检功能的家电,根据自有家电自检功能,生成家电自检表;所述家电自检表,为家电自有生成自检表功能;将已生成的家电自检表传输至服务器或家电自检表所在智能终端或与该智能终端关联的其他电子设备中保存;所述需自检并拥有自检功能的家电,具备无线连接功能,并能够与家电自检表所在的智能终端或与该智能终端关联的其他电子设备进行无线连接;所述无线关联,与家电及智能终端或其他电子设备自有无线连接方式有关;例如蓝牙连接、红外连接等,所述无线连接方式为现有技术,在此不多赘述。
步骤S80,通过所述输入界面接收输入的需要自检的家电;
在已提供的家电输入界面中,获取到已输入的家电信息,即新增至家电自检表的家电信息。该家电新增操作由用户手动进行填写,并获取该新增家电的家电自检表进行保存,用以进行家电模块自检操作。
步骤S90,按照预设规则生成家电自检顺序并形成家电自检表。
已添加至家电自检表中的家电类型,根据预设的排列规则对当前已有家电进行排列,根据家电排列后的内容形成家电自检表,用以通过该家电自检表控制家电自检操作,或者通过家电顺序影响参数重新排列家电排列顺序等。所述预设的家电排列顺序,为该家电自检表生成之前设置的家电默认排列顺序,该排列顺序可由用户自定义设置,用以在初始化家电类型表时,以一个相对来说比较优化的方式进行排列;例如,按照耗电量对初始家电类型表的家电类型进行排列(空调>热水器>冰箱>加湿器等);或者,按照常规家电使用频率进行排序(冰箱>加湿器>空调>热水器等)。
进一步的,所述家电自检表的家电类型的获取,还包括:
获取家电自检表所在的智能终端或与家电自检表关联的其他电子设备中已保存的家电自检表,从中提取家电类型,按照预设顺序将提取的家电类型生成家电类型表;所述家电自检表由有自检功能并有生成家电自检表的家电生成自检表后上传至该家电自检表所在智能终端或与家电自检表关联的其他电子设备进行保存。
进一步的,所述确认家电自检表中的家电是否缺失家电自检表,还包括:
获取家电自检表的家电类型,及家电自检表所在智能终端或与或与该智能终端关联的其他电子设备中已保存的家电自检表家电类型,将二者进行比对,确认是否有家电类型缺失对应家电自检表;此种情况,是为避免家电自检表中有用户新增家电类型,但该家电并未提交家电自检表至服务器保存,造成后期家电自检出错;或者,避免家电自检表所在的智能终端或与家电自检表关联的其他电子设备中由于数据错误、系统异常或硬件设备损坏等造成的家电自检表数据缺失,影响家电后期自检操作。
若有家电自检表的家电于家电自检表所在的智能终端或与家电自检表关联的其他电子设备中缺失对应自检表,则提示该家电的家电自检表缺失。需向重新获取该家电的自检表。
本发明进一步提供一种家用电器检测系统。
参照图4,图4为本发明家用电器检测系统的第一实施例的功能模块示意图。
在一实施例中,所述系统包括:参数获取模块10、调整模块20、及控制模块30。
参数获取模块10,用于获取预设家电自检表中家电自检的影响参数;
本实施例中,有自检功能且能够自动生成自检表的智能家电,在自检功能初始化时,生成该家电的家电自检表,并将该家电自检表以家电类型为标识发送至控制家电自检的智能终端或其他与该智能终端关联的电子设备中存储,该智能终端或其他与该智能终端关联的电子设备在接收到家电自检表时,智能终端提取已存储的家电自检表家电类型,并根据预设顺序排列已提取的家电类型,生成家电自检表;所述家电排列预设顺序,为已设置的家电自检表初始化排列顺序,该顺序排列为事先写入一种逻辑,用以对家电自检顺序进行排列,例如:按照耗电量排序,空调>热水器>冰箱>加湿器等,或者按照常规使用频率排序,冰箱>加湿器>空调>热水器等;
进一步的,按预设顺序排列家电的家电自检表,获取已预设的家电自检表家电自检影响参数,用以调整当前家电自检表家电排列顺序,进而调整家电自检顺序;所述家电自检影响参数,为用户在该家电自检表所在智能终端或与该智能终端关联其他电子设备中设置的影响家电自检的参数条件,所述智能终端,为能够控制家电进行自检操作的智能电子设备,并能够设置家电自检影响参数及存储家电自检表;所述与该智能终端关联的其他电子设备,用以设置家电自检影响参数或存储家电自检表等;该家电自检影响参数为用户根据当前家电使用情况、所在地域、环境温度等各种因素设置,为优化当前家电自检表家电排列顺序,提高家电自检效率提供前提条件。
进一步的,所述参数获取模块,包括:频率参数获取单元101,环境参数获取单元102:
频率参数获取单元101,用于按照使用频率调整预设家电自检表的家电自检顺序,使用频率高家电的自检顺序在使用频率低的家电之前;
在当前家电自检表中,若所述家电自检影响参数的参数为家电使用频率,即设置家电使用频率为优化家电自检表的调整参数时。在此情况下,以目标时间为周期,获取周期内家电自检表中家电的使用频率,根据以获取到的家电使用频率,按照使用频率由高至低重新排列家电顺序,通过该家电排列顺序调整当前家电自检表的家电排列顺序。所述目标时间为周期,为家电自检表中设置的家电自检周期时间,在该时间内,计算家电自检表的家电使用频率。所述将使用频率高的家电排使用频率低的家电前面,是为优先自检使用频率高的家电。通过根据使用频率排列的家电顺序,调整当前家电自检表的家电顺序;提高家电自检效率并提升家电自检效果。
环境参数获取单元102,用于按照环境调整预设家电自检表的家电自检顺序,所述环境对家电影响大的家电的自检顺序在影响小的家电之前。
在当前家电自检表中,若所述家电自检影响参数的参数为环境时,即以环境变化对家电的影响大小,作为调整家电自检顺序的影响参数;在此情况下,根据家电所处位置,分为室内电器、室外电器,环境变化对室外电器的影响比室内电器的影响要大,则将室外电器排列在室内电器前面,例如,北方冬天冷空气恶劣,容易产生霜冻,在室外的电器容易出故障,则将太阳能热水器排列在电视机之前,将太阳能热水器优先于电视机进行自检。
调整模块20,用于根据所述影响参数调整所述预设家电自检表的家电自检顺序;
根据已获取到的家电自检影响参数,调整当前预设的家电自检表家电自检顺序;在参数获取模块10中,首先获取当前家电自检的影响参数,根据影响参数重新排列家电自检表中的家电排列顺序。
控制模块30,用于按照调整后的家电自检顺序依次检测各个家电。
通过已被影响参数调整后的家电自检表家电排列顺序,按该顺序控制家电进行自检。所述控制家电进行自检,为家电自检表功能,在家电自检表生成之前,通过家电与家电自检表所在智能终端或者与家电自检表所在智能终端关联的其他电子设备的连接,用以通过家电自检表控制家电进行自检操作。所述智能终端或者与其他电子设备与家电进行连接进而控制家电进行自检,该链接功能为家电与该智能终端或其他电子设备现有连接功能,例如,蓝牙连接、红外连接等。该连接方式为现有技术,在此不多赘述。
进一步的,还可通过家电自检表的家电排列顺序,设置该家电自检表中家电周期内的自检频率,用以提高家电自检效率及自检效果,例如,根据已获取到的周期内家电使用频率,调整家电自检频率,即,设置当前家电自检表家电在周期内的自检次数。例如,当前家电自检表中,电饭煲使用频率高,提示用户可设置电饭煲周期内的自检次数;在设置家电周期内自检次数时,可自定义周期及次数,例如设置电饭煲每个月自检次数为5次,则根据已设置的电饭煲周期内自检次数,当月内每隔6天自动控制电饭煲进行自检操作。
本实施例通过获取家电自检表的家电自检影响参数,并根据该参数调整当前家电自检表的家电排列顺序,进而根据已调整后的家电自检表的家电排列顺序依次控制家电进行自检操作;提高家电自检效率,并减少家电故障及降低事故发生可能性。也使家电自检智能化得到了提高,进一步的,还可通过家电自检影响参数手动调节家电周期内的自检频率,提升了用户操作家电自检的友好度。
参照图5,图5为本发明家用电器检测系统的第二实施例的功能模块示意图。
基于上述第一实施例,所述系统包括:自检模块40。
自检模块40,用于获取家电模块自检的影响因子;
本实施例中,在家电自检时,获取已预设的家电模块自检的影响因子,所述影响因子为用户在家电自检表中已预设的家电自检模块的影响因子。通过该影响因子调整家电自检模块顺序,进而提高家电自检效率。已有的家电模块自检顺序,为当前家电自有的自检功能默认的家电模块自检顺序。若无家电模块自检的影响因子,则根据默认的家电模块自检顺序对家电模块进行自检操作。
进一步的,所述自检模块40,还用于按照天气调整单个家电模块的自检顺序,天气影响大的家电模块的自检顺序在影响小的家电模块之前。
在家电自检之前,若影响该家电自检模块顺序的影响因子为天气,根据气候的变化优先检测家电的某个模块,用以确认该家电模块是否受天气影响产生故障;将受天气影响大的家电模块的自检顺序排列在受天气影响小的家电模块自检顺序之前;例如,当前天气为夏天,在空调器进行自检时,由于制冷功能使用较多,则自检顺序可以为:压缩机>冷凝器>节流阀>蒸发器等;当前天气为冬天时,空调器制热功能使用较多,自检顺序调整为:压缩机>蒸发器>节流阀>冷凝器等。所述通过天气调整家电自检模块顺序,可通过获取室外温度、相对湿度等判断当前气候。具体气候判断方式,根据当前家电自检表所在智能终端或者与家电自检表关联的其他电子设备已有的气候判断方式进行判断。或者,由用户单独设置气候判断方式进行天气判断,并通过天气影响因子的变化调整单个家电模块自检顺序。
所述调整模块20,还用于根据所述影响因子调整单个家电模块的自检顺序;
通过预设的家电自检模块影响因子对当前家电自检模块调整后的顺序对家电进行模块自检操作。所述家电自检模块顺序,根据单个家电模块自检顺序预设的影响因子进行调整,即根据家电类型设置家电自检模块顺序影响因子,并通过该影响因子调整对应家电自检的模块顺序。
所述控制模块30,还用于在对所述单个家电检测时,按照调整后的模块自检顺序检测所述单个简单的各个模块。
经过家电自检模块影响因子调整后的家电自检模块顺序,根据该顺序对家电模块进行自检操作。单个家电自检模块影响因子调整当前家电模块的自检顺序,若当前家电并无自检模块影响因子,则根据默认的家电自检模块顺序对当前家电进行模块自检操作。
参照图6,图6为本发明家用电器检测系统的第三实施例的功能模块示意图。所述系统还包括:提供模块50、接收模块60及生成模块70。
提供模块50,用于提供输入界面;
在已预设家电自检中,提供家电自检输入页面,用以新增家电进家电自检表中,进而控制家电进行自检操作。该界面包括家电类型、自检表下载等输入框和按钮。
进一步的,需要自检并拥有自检功能的家电,根据自有家电自检功能,生成家电自检表;所述家电自检表,为家电自有生成自检表功能;将已生成的家电自检表传输至服务器或家电自检表所在智能终端或与该智能终端关联的其他电子设备中保存;所述需自检并拥有自检功能的家电,具备无线连接功能,并能够与家电自检表所在的智能终端或与该智能终端关联的其他电子设备进行无线连接;所述无线关联,与家电及智能终端或其他电子设备自有无线连接方式有关;例如蓝牙连接、红外连接等,所述无线连接方式为现有技术,在此不多赘述。
接收模块60,用于通过所述输入界面接收输入的需要自检的家电;
在已提供的家电输入界面中,获取到已输入的家电信息,即新增至家电自检表的家电信息。该家电新增操作由用户手动进行填写,并获取该新增家电的家电自检表进行保存,用以进行家电模块自检操作。
生成模块70,用于按照预设规则生成家电自检顺序并形成家电自检表。
已添加至家电自检表中的家电类型,根据预设的排列规则对当前已有家电进行排列,根据家电排列后的内容形成家电自检表,用以通过该家电自检表控制家电自检操作,或者通过家电顺序影响参数重新排列家电排列顺序等。所述预设的家电排列顺序,为该家电自检表生成之前设置的家电默认排列顺序,该排列顺序可由用户自定义设置,用以在初始化家电类型表时,以一个相对来说比较优化的方式进行排列;例如,按照耗电量对初始家电类型表的家电类型进行排列(空调>热水器>冰箱>加湿器等);或者,按照常规家电使用频率进行排序(冰箱>加湿器>空调>热水器等)。
进一步的,所述家电自检表的家电类型的获取,还包括:
获取家电自检表所在的智能终端或与家电自检表关联的其他电子设备中已保存的家电自检表,从中提取家电类型,按照预设顺序将提取的家电类型生成家电类型表;所述家电自检表由有自检功能并有生成家电自检表的家电生成自检表后上传至该家电自检表所在智能终端或与家电自检表关联的其他电子设备进行保存。
进一步的,所述确认家电自检表中的家电是否缺失家电自检表,还包括:
获取家电自检表的家电类型,及家电自检表所在智能终端或与或与该智能终端关联的其他电子设备中已保存的家电自检表家电类型,将二者进行比对,确认是否有家电类型缺失对应家电自检表;此种情况,是为避免家电自检表中有用户新增家电类型,但该家电并未提交家电自检表至服务器保存,造成后期家电自检出错;或者,避免家电自检表所在的智能终端或与家电自检表关联的其他电子设备中由于数据错误、系统异常或硬件设备损坏等造成的家电自检表数据缺失,影响家电后期自检操作。
若有家电自检表的家电于家电自检表所在的智能终端或与家电自检表关联的其他电子设备中缺失对应自检表,则提示该家电的家电自检表缺失。需向重新获取该家电的自检表。
以上仅为本发明的优选实施例,并非因此限制本发明的专利范围,凡是利用本发明说明书及附图内容所作的等效结构或等效流程变换,或直接或间接运用在其他相关的技术领域,均同理包括在本发明的专利保护范围内。
Claims (16)
- 一种家用电器检测方法,其特征在于,包括步骤:获取预设家电自检表中家电自检的影响参数;根据所述影响参数调整所述预设家电自检表的家电自检顺序;按照调整后的家电自检顺序依次检测各个家电。
- 如权利要求1所述的家用电器检测方法,其特征在于,在所述自检影响参数为使用频率时,所述根据所述影响参数调整所述预设家电自检表的家电自检顺序包括:按照使用频率调整预设家电自检表的家电自检顺序,使用频率高家电的自检顺序在使用频率低的家电之前。
- 如权利要求1所述的家用电器检测方法,其特征在于,在所述自检影响参数为环境时,所述根据所述影响参数调整所述预设家电自检表的家电自检顺序包括:按照环境调整预设家电自检表的家电自检顺序,所述环境对家电影响大的家电的自检顺序在影响小的家电之前。
- 如权利要求所述的家用电器检测方法,其特征在于,所述按照调整后的家电自检顺序依次检测各个家电的步骤,还包括:获取已设定的各个所述家电的自检频率,并以所述自检频率依次检测各个家电。
- 如权利要求1所述的家用电器检测方法,其特征在于,所述按照调整后的家电自检顺序依次检测各个家电之后,包括:获取家电模块自检的影响因子;根据所述影响因子调整单个家电模块的自检顺序。
- 如权利要求5所述的家用电器检测方法,其特征在于,所述根据所述影响因子调整单个家电模块的自检顺序的步骤之后,还包括:在对所述单个家电检测时,按照调整后的模块自检顺序检测所述单个家电的各个模块。
- 如权利要求5所述的家用电器检测方法,其特征在于,所述影响因子为天气,所述根据所述影响因子调整单个家电模块的自检顺序包括:按照天气调整单个家电模块的自检顺序,天气影响大的家电模块的自检顺序在影响小的家电模块之前。
- 如权利要求1至7任一项所述的家用电器检测方法,其特征在于,所述获取预设家电自检表中家电自检的影响参数之前,还包括:提供输入界面;通过所述输入界面接收输入的需要自检的家电;按照预设规则生成家电自检顺序并形成家电自检表。
- 一种家用电器检测系统,其特征在于,包括:参数获取模块,用于获取预设家电自检表中家电自检的影响参数;调整模块,用于根据所述影响参数调整所述预设家电自检表的家电自检顺序;控制模块,用于按照调整后的家电自检顺序依次检测各个家电。
- 如权利要求9所述家用电器检测系统,其特征在于,所述参数获取模块,包括:频率参数获取单元和环境参数获取单元:频率参数获取单元,用于按照使用频率调整预设家电自检表的家电自检顺序,使用频率高家电的自检顺序在使用频率低的家电之前。
- 如权利要求9所述家用电器检测系统,其特征在于,所述参数获取模块,还包括:环境参数获取单元:环境参数获取单元,用于按照环境调整预设家电自检表的家电自检顺序,所述环境对家电影响大的家电的自检顺序在影响小的家电之前。
- 如权利要求1所述家用电器检测系统,其特征在于,所述控制模块,还用于获取已设定的各个所述家电的自检频率,并以所述自检频率依次检测各个家电。
- 如权利要求9所述家用电器检测系统,其特征在于,还包括:自检模块,用于获取家电模块自检的影响因子;所述调整模块,还用于根据所述影响因子调整单个家电模块的自检顺序。
- 如权利要求13所述家用电器检测系统,其特征在于, 所述控制模块,还用于在对所述单个家电检测时,按照调整后的模块自检顺序检测所述单个家电的各个模块。
- 如权利要求13所述家用电器检测系统,其特征在于,所述自检模块,还用于按照天气调整单个家电模块的自检顺序,天气影响大的家电模块的自检顺序在影响小的家电模块之前。
- 如权利要求9至15任一项所述家用电器检测系统,其特征在于,所述系统还包括:提供模块,用于提供输入界面;接收模块,用于通过所述输入界面接收输入的需要自检的家电;生成模块,用于按照预设规则生成家电自检顺序并形成家电自检表。
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN201710107034.4 | 2017-02-24 | ||
| CN201710107034.4A CN106885593A (zh) | 2017-02-24 | 2017-02-24 | 一种家用电器检测方法及系统 |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| WO2018153133A1 true WO2018153133A1 (zh) | 2018-08-30 |
Family
ID=59180250
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| PCT/CN2017/113357 Ceased WO2018153133A1 (zh) | 2017-02-24 | 2017-11-28 | 一种家用电器检测方法及系统 |
Country Status (2)
| Country | Link |
|---|---|
| CN (1) | CN106885593A (zh) |
| WO (1) | WO2018153133A1 (zh) |
Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US11783604B2 (en) | 2018-01-11 | 2023-10-10 | Google Llc | Method for creating histopathological ground truth masks using slide restaining |
Families Citing this family (6)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN106885593A (zh) * | 2017-02-24 | 2017-06-23 | 美的集团股份有限公司 | 一种家用电器检测方法及系统 |
| CN110244681B (zh) * | 2018-03-07 | 2021-06-04 | 佛山市顺德区美的饮水机制造有限公司 | 电控板自检控制方法和控制装置以及饮水机及其电控板 |
| CN110045214B (zh) * | 2019-05-29 | 2021-06-11 | 东明兴业科技股份有限公司 | 一种小家电流水线用户模式自动检测系统和方法 |
| CN113123070B (zh) * | 2019-12-31 | 2023-11-07 | 重庆海尔洗衣机有限公司 | 洗衣机及其故障提醒方法 |
| CN112328438A (zh) * | 2020-08-06 | 2021-02-05 | 深圳Tcl新技术有限公司 | 终端设备的自检方法、装置及计算机存储介质 |
| CN118609339B (zh) * | 2024-08-08 | 2025-01-10 | 福州锐丽信电子有限公司 | 电器电路火灾安全管理系统 |
Citations (7)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN102158527A (zh) * | 2011-01-18 | 2011-08-17 | 青岛海信电器股份有限公司 | 家用电器维护系统及具有自检功能的家用电器 |
| CN103138980A (zh) * | 2011-11-30 | 2013-06-05 | 海尔集团公司 | 设备故障反馈系统及方法 |
| CN103176875A (zh) * | 2013-03-19 | 2013-06-26 | 卡斯柯信号有限公司 | 一种嵌入式系统上电自检方法 |
| US20130268806A1 (en) * | 2012-04-04 | 2013-10-10 | Samsung Electronics Co., Ltd. | System, method, and apparatus for performing fault diagnosis for an electronic appliance |
| CN105095039A (zh) * | 2015-09-22 | 2015-11-25 | 株洲南车时代电气股份有限公司 | I/o插件的上电自检方法和装置 |
| CN105281998A (zh) * | 2015-11-12 | 2016-01-27 | 安徽建筑大学 | 健康智能家居系统及其管理方法 |
| CN106885593A (zh) * | 2017-02-24 | 2017-06-23 | 美的集团股份有限公司 | 一种家用电器检测方法及系统 |
Family Cites Families (5)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US8547200B2 (en) * | 2009-08-05 | 2013-10-01 | Lg Electronics Inc. | Home appliance and method for operating the same |
| CN103092118A (zh) * | 2011-10-31 | 2013-05-08 | 鸿富锦精密工业(深圳)有限公司 | 家电安全检查系统及方法 |
| CN105607581B (zh) * | 2014-09-26 | 2020-03-17 | 杜也兵 | 家用电器的控制部件的自检方法 |
| CN106453604B (zh) * | 2016-10-31 | 2019-12-27 | 广东美的制冷设备有限公司 | 家电故障处理方法、装置及系统 |
| CN107843795A (zh) * | 2017-12-01 | 2018-03-27 | 杭州快电新能源科技有限公司 | 一种电动汽车充电设备的自检系统 |
-
2017
- 2017-02-24 CN CN201710107034.4A patent/CN106885593A/zh active Pending
- 2017-11-28 WO PCT/CN2017/113357 patent/WO2018153133A1/zh not_active Ceased
Patent Citations (7)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN102158527A (zh) * | 2011-01-18 | 2011-08-17 | 青岛海信电器股份有限公司 | 家用电器维护系统及具有自检功能的家用电器 |
| CN103138980A (zh) * | 2011-11-30 | 2013-06-05 | 海尔集团公司 | 设备故障反馈系统及方法 |
| US20130268806A1 (en) * | 2012-04-04 | 2013-10-10 | Samsung Electronics Co., Ltd. | System, method, and apparatus for performing fault diagnosis for an electronic appliance |
| CN103176875A (zh) * | 2013-03-19 | 2013-06-26 | 卡斯柯信号有限公司 | 一种嵌入式系统上电自检方法 |
| CN105095039A (zh) * | 2015-09-22 | 2015-11-25 | 株洲南车时代电气股份有限公司 | I/o插件的上电自检方法和装置 |
| CN105281998A (zh) * | 2015-11-12 | 2016-01-27 | 安徽建筑大学 | 健康智能家居系统及其管理方法 |
| CN106885593A (zh) * | 2017-02-24 | 2017-06-23 | 美的集团股份有限公司 | 一种家用电器检测方法及系统 |
Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US11783604B2 (en) | 2018-01-11 | 2023-10-10 | Google Llc | Method for creating histopathological ground truth masks using slide restaining |
Also Published As
| Publication number | Publication date |
|---|---|
| CN106885593A (zh) | 2017-06-23 |
Similar Documents
| Publication | Publication Date | Title |
|---|---|---|
| WO2018153133A1 (zh) | 一种家用电器检测方法及系统 | |
| WO2015143859A1 (zh) | 光伏空调器的温度调节方法和系统 | |
| WO2019051909A1 (zh) | 空调器运行参数调整方法、空调器及计算机可读存储介质 | |
| WO2019051903A1 (zh) | 终端控制方法、装置及计算机可读存储介质 | |
| WO2019051905A1 (zh) | 空调器控制方法、空调器及计算机可读存储介质 | |
| WO2020199330A1 (zh) | 家电设备及其控制权限分享方法、控制终端以及存储介质 | |
| WO2019114269A1 (zh) | 一种节目续播方法、电视设备及计算机可读存储介质 | |
| WO2019169717A1 (zh) | 空调器及其的控制方法和计算机可读存储介质 | |
| WO2019062113A1 (zh) | 家电设备的控制方法、装置、家电设备及可读存储介质 | |
| WO2015007007A1 (zh) | 一种adc自动校正的方法及装置 | |
| WO2019041851A1 (zh) | 家电售后咨询方法、电子设备和计算机可读存储介质 | |
| WO2017088438A1 (zh) | 无线路由器及其控制方法 | |
| WO2019085116A1 (zh) | 电磁炉测温方法、测温装置及可读储存介质 | |
| WO2017215116A1 (zh) | 智能电视的拍照方法及系统 | |
| WO2016187998A1 (zh) | 动态调整背光方法及装置 | |
| WO2017121066A1 (zh) | 应用程序显示方法和系统 | |
| WO2019051904A1 (zh) | 终端报警方法、装置及计算机可读存储介质 | |
| WO2017032122A1 (zh) | 数字电视机检测方法及装置 | |
| WO2018058956A1 (zh) | 一种交流电机控制方法、装置及空调器 | |
| WO2017045435A1 (zh) | 控制电视播放方法和装置 | |
| WO2019068241A1 (zh) | 空气处理系统及其控制方法、装置及计算机可读存储介质 | |
| WO2019061546A1 (zh) | 移动终端的拍照方法、装置及计算机可读存储介质 | |
| WO2018032679A1 (zh) | 电视定时开关机的设置方法和装置 | |
| WO2016095256A1 (zh) | 智能电视的全局按键处理方法及其系统 | |
| WO2019062112A1 (zh) | 空调器控制方法、装置、空调器及计算机可读存储介质 |
Legal Events
| Date | Code | Title | Description |
|---|---|---|---|
| 121 | Ep: the epo has been informed by wipo that ep was designated in this application |
Ref document number: 17897627 Country of ref document: EP Kind code of ref document: A1 |
|
| NENP | Non-entry into the national phase |
Ref country code: DE |
|
| 122 | Ep: pct application non-entry in european phase |
Ref document number: 17897627 Country of ref document: EP Kind code of ref document: A1 |