WO2017118129A1 - 频谱资源共享的方法和装置 - Google Patents
频谱资源共享的方法和装置 Download PDFInfo
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- WO2017118129A1 WO2017118129A1 PCT/CN2016/101389 CN2016101389W WO2017118129A1 WO 2017118129 A1 WO2017118129 A1 WO 2017118129A1 CN 2016101389 W CN2016101389 W CN 2016101389W WO 2017118129 A1 WO2017118129 A1 WO 2017118129A1
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- access device
- app
- shared
- spectrum resource
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W16/00—Network planning, e.g. coverage or traffic planning tools; Network deployment, e.g. resource partitioning or cells structures
- H04W16/14—Spectrum sharing arrangements between different networks
Definitions
- the present disclosure relates to the field of communication technologies, for example, to a method and apparatus for sharing spectrum resources.
- the spectrum resource demand of each cell is rapidly changing, but the allocation mode of the spectrum resources of each cell is fixed, and some spectrum resources cannot be fully utilized, thereby causing waste of spectrum resources.
- LTE Long Term Evolution
- 2G/3G standard data services are shrinking, but the demand for 2G and 3G voice services is still large.
- the amount of voice traffic in the 2G/3G system during the day is large, the demand for spectrum resources in the 2G/3G system is large, the data service in the LTE system is small, and the spectrum resources under the LTE system are small; but the voice in the 2G/3G system at night
- the traffic volume is small, and the demand for spectrum resources in the 2G/3G system is small, while the data service in the LTE standard is large, and the spectrum resource requirements under the LTE system are small.
- the idle spectrum resources can only be shared in the same system, and the idle spectrum resources of a certain standard service cannot be shared with other standard services, that is, the idle spectrum resources cannot be shared among different standard access devices, and the spectrum resource utilization rate is low.
- a method for sharing spectrum resources provided by the disclosure includes:
- the idle spectrum resource of the access device is used.
- the source is defined as a shared spectrum resource of the corresponding device of the access device, and is used by other standard access devices whose spectrum resources in the geographical area where the access device is located is tight.
- the method further includes:
- the spectrum resource information is a spectrum resource request
- the other system shared spectrum resources of the geographic area where the access device is located are shared with the access device.
- the method before the determining, according to the spectrum resource information sent by the access device, the type of the access device and the type of the spectrum resource information, the method further includes:
- the determining, according to the spectrum resource information sent by the access device, the type of the access device and the type of the spectrum resource information including:
- the selected APP Invoking the selected APP to perform the spectrum resource release request, and defining the idle spectrum resource of the access device as the corresponding standard shared spectrum resource of the access device, where the access device is located
- the spectrum resource information is a spectrum resource application
- the other system sharing spectrum resources of the geographical area where the access device is located are shared with the access device.
- the spectrum resource release request is at least one of: a frequency band resource release request and a frequency point resource release request; and the spectrum resource request is at least one of the following: a frequency band resource application, a frequency point resource application; and the sharing The spectrum resource is at least one of the following: a shared frequency band and a shared frequency point.
- the APP includes at least one of the following: a bandwidth level sharing class APP, a frequency point level sharing class APP, and a dynamic frequency point allocation class APP.
- the method for sharing the spectrum resource when the selected APP is a bandwidth level shared APP, the spectrum resource information is a frequency band resource application, and the selected bandwidth level sharing type APP performs the geographical location of the access device. Sharing of other shared spectrum resources of the area to the access device includes:
- the selected bandwidth-level shared-type APP defines the access device as a local access device according to the frequency band resource application; and monitors, in real time, whether a geographical shared area of the access device has a standard shared frequency band corresponding to another standard local access device;
- the shared frequency band corresponding to the other local access device is detected in the geographic area where the access device is located, the shared frequency band corresponding to the other standard local access device is selected from the geographic region where the access device is located. Said access device.
- the method for sharing a spectrum resource when the selected APP is a frequency-level shared APP, the spectrum resource information is a frequency point resource application, and the selected frequency-level shared class APP performs the access
- the operation of sharing the shared spectrum resources provided by other standard access devices in the geographic area of the device to the access device is specifically as follows:
- the selected frequency point-level shared-type APP defines the access device as a local access device according to the frequency band resource application; and monitors in real time whether the geographical area of the access device has a standard sharing frequency corresponding to other standard local access devices. point;
- the dynamic frequency allocation class APP creates a frequency point pool of a corresponding standard for each standard access device in advance; when the selected APP is a dynamic frequency point allocation APP, the spectrum resource information is a frequency point resource application. ;
- the selected dynamic frequency allocation type APP performs the definition of the idle spectrum resource of the access device as the corresponding standard shared spectrum resource of the access device, including:
- the selected dynamic frequency allocation type APP defines the access device as a local access device according to the frequency band resource application, and defines that the idle frequency of the access device is a corresponding standard shared frequency of the access device. And the shared frequency point is included in the frequency pool of the corresponding standard.
- the method for sharing a spectrum resource when the selected APP is a dynamic frequency point allocation APP, the spectrum resource information is a frequency point resource application;
- the operation of the selected dynamic frequency allocation class APP to share the other shared spectrum resources of the geographic area where the access device is located to the access device is:
- the selected dynamic frequency allocation type APP defines the access device as a local access device according to the frequency band resource application, and monitors the frequency point pool M of the corresponding standard local access device in the geographical area of the access device in real time. Whether there is a shared frequency point in it;
- the interference value between the cell where the corresponding local access device of the shared frequency of the shared frequency point is located and the cell where the access device is located is calculated.
- the shared frequency point corresponding to the minimum interference value is allocated to the access device.
- the method for sharing the spectrum resource further includes:
- the method for sharing the spectrum resource further includes:
- the new APP acquires corresponding characteristic data from each local access device according to the basic information. In order to reach the state before the failure APP fails.
- the present disclosure also provides an apparatus for sharing spectrum resources, where the apparatus for sharing spectrum resources includes:
- An acknowledgment module configured to determine, according to the spectrum resource information sent by the access device, a type of the access device and a type of the spectrum resource information
- a processing module configured to: when the spectrum resource information is a spectrum resource release request, the idle spectrum resource of the access device is defined as a corresponding standard shared spectrum resource of the access device, where the access device is located The use of other standard access devices with tight spectrum resources.
- the processing module is further configured to: when the spectrum resource information is a spectrum resource application, share the other shared spectrum resources of the geographic area where the access device is located to the access device.
- the device for sharing the spectrum resource further includes:
- APP application
- the confirming module is configured to determine, according to the spectrum resource information sent by the access device, a type of the access device and a type of the spectrum resource information, and select a policy according to the type of the APP module, Select one APP module among multiple APP modules;
- the processing module is configured to invoke the selected APP module to perform the spectrum resource release request, and define the idle spectrum resource of the access device as the corresponding standard shared spectrum resource of the access device, for When the spectrum resource information is a spectrum resource application, the spectrum resource request is shared, and the other system shared spectrum resources of the geographic area where the access device is located are shared to the Access device operation.
- the spectrum resource release request is at least one of: a frequency band resource release request and a frequency point resource release request; and the spectrum resource request is at least one of the following: a frequency band resource application, a frequency point resource application; and the sharing The spectrum resource is at least one of the following: a shared frequency band and a shared frequency point.
- the APP module includes at least one of the following: a bandwidth level sharing class APP unit, a frequency point level sharing class APP unit, and a dynamic frequency point allocation class APP unit.
- the device for sharing the spectrum resource when the selected APP module is a bandwidth level shared APP unit, the spectrum resource information is a frequency band resource application, and the selected bandwidth level shared APP unit is set according to the The frequency band resource application defines that the access device is a local access device; and real-time monitoring whether the geographical area of the access device exists in a standard shared frequency band corresponding to other standard local access devices; when the geographical location of the access device is detected A standard shared frequency band corresponding to the local access device of the other device is used in the area, and a shared frequency band corresponding to the other local access device is selected from the geographical area of the access device to be shared with the access device.
- the device for sharing the spectrum resource when the selected APP module is a frequency point level shared APP unit, the spectrum resource information is a frequency point resource application, and the selected frequency point level shared APP unit is set to Determining, according to the application for the frequency band resource, that the access device is a local access device; and monitoring, in real time, whether a geographic sharing area corresponding to another standard local access device exists in a geographical area where the access device is located; If there is a standard sharing frequency point corresponding to the local access device of the other device in the geographical area of the device, the system sharing frequency corresponding to the other local access device is selected from the geographical area of the access device to be shared with the access device. .
- the dynamic frequency allocation type APP unit is configured to create a frequency pool of a corresponding standard for each standard access device in advance;
- the selected APP module is a dynamic frequency point allocation type APP unit
- the spectrum resource information is a frequency point resource application
- the selected dynamic frequency point allocation type APP unit is set to define the access according to the frequency band resource application.
- the device is a local access device; and the idle frequency of the access device is defined as a corresponding frequency shared frequency of the access device, and the shared frequency is included in the frequency pool of the corresponding standard.
- the device for sharing the spectrum resource when the selected APP module is a dynamic frequency allocation class
- the APP unit where the spectrum resource information is a frequency point resource application
- the selected dynamic frequency allocation type APP unit is configured to define the access device as a local access device according to the frequency band resource application, and monitor the corresponding standard local access device corresponding to the geographical area of the access device in real time. Whether there is a shared frequency point in the frequency pool M; when it is detected that the frequency pool M has a shared frequency point, calculate a cell of the corresponding standard local access device of each shared frequency point in the frequency pool M and The interference value between the cells in which the access device is located; the shared frequency point corresponding to the minimum interference value is allocated to the access device.
- the device for sharing the spectrum resource further includes:
- the load monitoring module is configured to monitor the load condition of each APP module in real time. When the load value of an APP module reaches the maximum load of the APP module, the creation module is called to create an APP module of the type for subsequent connection. The spectrum resource information sent by the ingress device and the APP module type selection policy are selected.
- the device for sharing the spectrum resource further includes:
- the running status monitoring module is configured to monitor the running status of each APP module in real time; when an APP module fails, the creating module is called to create a new APP module of the type, and the local APP of the fault APP module is fed back to the new APP module.
- the new APP module is configured to acquire corresponding characteristic data from each local access device according to the basic information to reach a state before the faulty APP module fails.
- a non-transitory storage medium storing computer-executable instructions configured to perform the above-described method of spectrum resource sharing is provided.
- a computer program product comprising a computer program stored on a non-transitory computer readable storage medium, the computer program comprising program instructions, when the program instructions Causing the computer to perform the above-described spectrum when executed by a computer The method of resource sharing.
- an electronic device comprising at least one processor and a memory communicatively coupled to the at least one processor, the memory for storing instructions executable by the at least one processor And the method of causing the at least one processor to perform the foregoing sharing of spectrum resources when the instructions are executed by the at least one processor.
- the method and device for sharing spectrum resources provided by the disclosure can realize spectrum resource sharing between different standard access devices in the same geographical area, and improve utilization of spectrum resources.
- FIG. 1 is a schematic flowchart diagram of a method for sharing spectrum resources according to an embodiment of the present disclosure
- FIG. 2 is a schematic diagram of a process in which a bandwidth-level shared APP of the present disclosure shares other standard shared spectrum resources of a geographic area in which the access device is located to the access device;
- FIG. 3 is a schematic flowchart of sharing, by the frequency-spot sharing APP of the present disclosure, another shared spectrum resource of a geographic area in which the access device is located to the access device;
- FIG. 4 is a schematic flowchart of sharing, by the selected dynamic frequency allocation type APP, the other system shared spectrum resources of the geographic area where the access device is located, to the access device;
- FIG. 5 is a schematic structural block diagram of an apparatus for sharing spectrum resources according to an embodiment of the present disclosure
- FIG. 6 is a schematic structural block diagram of an apparatus for spectrum resource sharing according to another embodiment of the present disclosure.
- FIG. 7 is a schematic structural block diagram of an APP module of the present disclosure.
- FIG. 8 is a schematic structural block diagram of an apparatus for spectrum resource sharing according to still another embodiment of the present disclosure.
- FIG. 9 is a schematic structural block diagram of an apparatus for spectrum resource sharing according to still another embodiment of the present disclosure.
- FIG. 10 is a structural block diagram of an electronic device according to an embodiment of the present disclosure.
- FIG. 1 is a schematic flowchart diagram of a method for sharing spectrum resources according to an embodiment of the present disclosure.
- the method for sharing spectrum resources includes:
- Step S10 Determine, according to the spectrum resource information sent by the access device, the type of the access device and the type of the spectrum resource information.
- the types of the access device include, but are not limited to, a 2G standard access device, a 3G standard access device, and a 4G standard access device, and the 2G standard access device and the 3G standard access device in the present disclosure.
- the 2G standard access device and the 4G standard access device are other standard access devices than the 3G standard access device; the 3G standard access device and the 4G standard access device.
- the spectrum resource information type includes: a spectrum resource release request and a spectrum resource application.
- Step S20 When the spectrum resource information is a spectrum resource release request, the idle spectrum resource of the access device is defined as a corresponding standard shared spectrum resource of the access device, and the spectrum of the geographic area where the access device is located Use of other standard access devices with tight resources.
- the spectrum resource release request in the step S20 is: a frequency band resource release request or a frequency point resource release request; the shared spectrum resource is: a shared frequency band or a shared frequency point.
- the spectrum resource release request is frequency a segment resource release request
- the idle band resource of the access device is defined as a corresponding standard shared frequency band of the access device, and other standard access devices for the frequency band resource in the geographical region where the access device is located are tight. use.
- the spectrum resource release request is a frequency point resource release request
- the step S20 defines the idle frequency resource of the access device as the corresponding standard shared frequency point of the access device, where the access device is located in the geographic area. Other standard access devices with tight frequency resources are used.
- the step S10 further includes: processing, sharing, by using the other standard shared spectrum resources of the geographic area where the access device is located, Access device.
- the spectrum resource application in the embodiment is at least one of the following: a frequency band resource application and a frequency point resource application; the shared spectrum resource is at least one of the following: a shared frequency band and a shared frequency point.
- the spectrum resource application is a frequency band resource application
- the other system shared frequency band resources of the geographic area where the access device is located are shared with the access device.
- the spectrum resource application is a frequency point resource application
- the other system sharing frequency point resources of the geographic area where the access device is located are shared with the access device.
- the type of the access device and the type of the spectrum resource information are determined according to the spectrum resource information sent by the access device; when the spectrum resource information is a spectrum resource release request, the access device is
- the idle spectrum resource is defined as a corresponding shared spectrum resource of the access device, and is used by other standard access devices in which the spectrum resource of the geographical area of the access device is tight, and can implement different standard access in the same geographical area.
- the sharing of spectrum resources between devices greatly improves the utilization of spectrum resources.
- Another embodiment of the present disclosure provides a method for sharing a spectrum resource, where the determining, according to the spectrum resource information sent by the access device, the type of the access device and the type of the spectrum resource information, The method also includes the following processing: dividing the geographical area, creating more for each geographical area APP, and APP category selection strategy. Step S10: determining, according to the spectrum resource information sent by the access device, the type of the access device and the type of the spectrum resource information, where the determining, according to the spectrum resource information sent by the access device, determining the access The type of the device and the type of the spectrum resource information are selected from the plurality of APPs according to the APP type selection policy.
- the idle spectrum resource of the access device is defined as the corresponding standard shared spectrum resource of the access device, where the access device is located.
- the spectrum resource information is a spectrum resource application
- the other shared spectrum resources of the geographic area in which the access device is located are shared with the access device.
- the idle spectrum resource of the 4G access device is defined as a shared spectrum resource of the 4G standard.
- the APP category selection policy is a first APP category selection policy; a second APP category selection policy; or a third APP category selection policy.
- the first APP category selection policy is: selecting a frequency point level sharing type APP in a first time period of the day, and selecting a bandwidth level sharing type APP in the second time period.
- the first time period is the day time period
- the second time period is the night time period; wherein the specific time range can be set according to actual needs, for example, the first time period can be set to (00:60, 18:00), that is, from 00:60 to 18:00, including time 18:00, but not including time point 00:60; the second time period can be set to (00:00, 06:00) and [18:00, 24:00] , where (00:00,06:00) means from 00:00 to 06:00, including time point 06:00, but does not include time point 00:00; where (18:00, 24:00) means from 18 : 00 to 24:00, including the time of 24:00, but does not include the time of 18:00.
- the second APP type selection policy is: when the spectrum resource occupation information of the access device changes greatly, the frequency-level sharing APP is selected; the spectrum resource occupation information of the access device does not change much, and the bandwidth-level sharing APP is selected; the access device obtains After the frequency-level sharing of the spectrum resources allocated by the APP or the bandwidth-level shared APP, it cannot be normal. Use the allocated spectrum resource, then select the dynamic frequency allocation class APP.
- the third APP category selection strategy is: selecting an APP of a corresponding category according to a selection instruction input by the user.
- the idle spectrum resource of the access device is defined as the corresponding standard shared spectrum resource of the access device
- the access device cannot use the corresponding standard to share the spectrum resource, if the access device is currently If the spectrum resource is tight, and the corresponding standard shared spectrum resource needs to be recovered, the spectrum resource recovery application needs to be sent to the selected APP, and the selected APP first determines, according to the real-time spectrum resource recovery application, the corresponding standard shared spectrum resource. Whether it is occupied, if it is occupied, the recovery failure information is fed back to the access device, and if it is not occupied, the corresponding shared spectrum resource is returned to the access device, and the access device is deleted.
- the idle spectrum resource is defined as the correlation of the corresponding standard shared spectrum resource of the access device.
- the APP in this embodiment includes at least one of the following: a bandwidth level sharing class APP, a frequency point level sharing class APP, and a dynamic frequency point allocation class APP.
- the selected APP is a bandwidth-level shared-type APP
- the spectrum resource information is a frequency band resource application
- the selected bandwidth-level shared-type APP performs sharing of other standard shared spectrum resources of the geographic area where the access device is located to the access
- the operation of the device includes the following processing: the selected bandwidth level sharing type APP defines the access device as a local access device according to the frequency band resource application; and monitors whether the local area of the access device exists in the local area in real time.
- the standard shared frequency band corresponding to the device when it is detected that the geographical area of the access device exists in the standard shared frequency band corresponding to the other local access device, the local access device corresponding to the other device is selected from the geographic region where the access device is located.
- the shared frequency band of the system is shared with the access device.
- FIG. 2 is a schematic flowchart of a bandwidth-level sharing APP of the present disclosure sharing other system shared spectrum resources of a geographic area where the access device is located to the access device.
- the process includes:
- Step S21 The selected bandwidth-level shared-type APP defines the access device as a local access device according to the application for the frequency band resource, and determines whether there is another standard local area in the geographical area where the access device is located.
- the shared frequency band corresponding to the access device of the access device if there is a standard shared frequency band corresponding to the local access device of the other standard in the geographic area where the access device is located, the process proceeds to step S23; if there is no other local standard in the geographical area where the access device is located If the standard shared frequency band corresponding to the access device is used, the process proceeds to step S22.
- Step S22 Record that the access device is in a state of being in a spectrum resource state, and monitor in real time whether there is a standard shared frequency band corresponding to the local access device of the other standard in the geographical area where the access device is located; when the geographical area where the access device is located is detected If there is a standard shared frequency band corresponding to the local access device of another system, the process proceeds to step S23.
- Step S23 Select a standard shared frequency band corresponding to a local access device of the other device from the geographical area of the access device to be shared with the access device.
- an APP is selected according to the APP type selection policy, and the access device is considered to be the local access device of the selected APP.
- the other types of local access devices in the present embodiment are for the access device.
- the standard type of the access device is a 3G standard
- the standard types of the other local access devices are Refers to other standards than the 3G system, such as the 2G system and the 4G system
- the standard shared frequency band corresponding to the local access device of the other system refers to the shared frequency band other than the 3G standard shared frequency band, such as the 2G standard shared frequency band and 4G.
- the system shares the frequency band.
- the idle band resources can be utilized to the maximum extent, and the effect of fully utilizing the idle band resources can be achieved.
- the selected APP when the selected APP is a frequency-level shared-type APP, the spectrum resource information is a frequency point resource application, and the selected frequency-level shared-type APP performs other systems for accessing the geographic area where the access device is located.
- the operation of sharing the shared spectrum resource provided by the device to the access device includes the following steps: the selected frequency point-level shared-type APP defines the access device as a local access device according to the frequency band resource application; Whether there is a system corresponding to other standard local access devices in the geographical area where the access device is located.
- FIG. 3 is a schematic flowchart of sharing the other standard shared spectrum resources of the geographic area where the access device is located to the access device by the frequency-spot sharing APP of the present disclosure. The process includes:
- Step S31 The selected frequency point-level shared-type APP defines the access device as a local access device according to the frequency band resource application, and determines whether the geographical area where the access device is located has a corresponding corresponding local access device. If the access device has a shared frequency point corresponding to the local access device of the standard, the process proceeds to step S33; if the geographic area of the access device does not exist, the local access of the standard is not available. The system corresponding frequency sharing point of the device, proceeds to step S32;
- Step S32 Record that the access device is in a state of being in a spectrum resource state, and monitor in real time whether the geographical area of the access device has a standard sharing frequency point corresponding to another standard local access device; when the geographical location of the access device is detected If there is a standard sharing frequency point corresponding to the local access device of the other system in the area, the process proceeds to step S33.
- Step S33 Select a standard sharing frequency point corresponding to a local access device of another standard from the geographical area where the access device is located, and share the frequency to the access device.
- the other types of local access devices in the embodiment are for the access device.
- the standard type of the access device is a 3G standard
- the standard type of the other local access devices refers to Other systems other than the 3G system, such as the 2G system and the 4G system
- the standard shared frequency points corresponding to the local access devices of the other systems refer to other modes of sharing frequencies other than the 3G standard shared frequency points, such as the 2G standard shared frequency band and 4G standard sharing frequency.
- the dynamic frequency allocation class APP creates a corresponding system for each standard access device in advance.
- the dynamic frequency allocation type APP creates a 2G standard frequency point pool for the 2G standard access device, creates a 3G standard frequency point pool for the 3G standard access device, and creates a 4G standard frequency for the 4G standard access device. Point pool.
- the selected APP is a dynamic frequency allocation type APP
- the spectrum resource information is a frequency point resource application.
- the selected dynamic frequency allocation type APP performs to define the idle spectrum resource of the access device as the corresponding standard shared spectrum resource of the access device, specifically: the selected dynamic frequency point allocation type APP is applied according to the frequency band resource,
- the access device is defined as a local access device; and the idle frequency of the access device is defined as a corresponding frequency shared frequency of the access device, and the shared frequency is included in a frequency pool of the corresponding standard.
- the type of the access device is 4G
- the idle frequency of the 4G access device is defined as a shared frequency of the 4G standard.
- the spectrum resource information is a frequency point resource application.
- the operation of the selected dynamic frequency allocation class APP to share the other system shared spectrum resources of the geographic area in which the access device is located to the access device includes the following processing: the selected dynamic frequency allocation class APP is according to the The frequency band resource application defines that the access device is a local access device; in real time, whether there is a shared frequency point in the frequency pool M of the corresponding standard local access device in the geographical area of the access device; The frequency point pool M has a shared frequency point, and the interference value between the cell where the corresponding local access device of the corresponding frequency in the frequency pool M is located and the cell where the access device is located is calculated.
- FIG. 4 is a schematic flowchart of a shared dynamic frequency allocation type APP of the present disclosure sharing other system shared spectrum resources of a geographical area where the access device is located to the access device. The process includes:
- Step S41 The selected dynamic frequency allocation type APP defines the access device as a local access device according to the frequency band resource application, and determines the frequency of the corresponding standard local access device in the geographical area where the access device is located. Whether there is a shared frequency point in the point pool M; if there is no shared frequency point in the frequency point pool M of the corresponding standard local access device in the geographical area of the access device, the process proceeds to step S42; If there is a shared frequency point in the frequency pool M of the corresponding standard local access device in the geographic area where the access device is located, the process proceeds to step S43.
- the frequency point pool M is configured to receive a local access device corresponding to the local frequency pool standard system in the geographical area where the access device is located (the type of the local access device corresponding to the current frequency pool standard system and the access mode) If the access device is a 2G standard access device, the frequency pool M includes: a 3G system frequency point pool and/or a 4G system frequency point pool.
- the 3G standard frequency point pool is used for accommodating the idle frequency of the 3G standard local access device in the geographical area where the access device is located, and the idle frequency point is defined as the 3G standard shared frequency point;
- the 4G standard frequency point pool is used for the storage place The idle frequency of the 4G standard local access device in the geographic area where the access device is located, and the idle frequency is defined as the shared frequency of the 4G standard.
- Step S42 Real-time monitoring whether the frequency point pool M is included in the shared frequency point, and monitoring that the frequency point pool M is included in the shared frequency point, and then proceeds to step S43.
- Step S43 Calculate an interference value between a cell where the local access device of the corresponding standard of the shared frequency point in the frequency pool M is located and a cell where the access device is located.
- Step S44 Allocating a shared frequency point corresponding to the minimum interference value to the access device.
- the shared frequency point corresponding to the minimum interference value is allocated to the access device, and the signal interference of the access device is reduced on the basis of fully utilizing the frequency point resource, thereby ensuring the experience effect of the access device user.
- a further embodiment of the present disclosure provides a method for sharing spectrum resources.
- the method for sharing spectrum resources further includes: monitoring load status of each APP in real time, when an APP is used. If the load reaches the maximum load of the APP, an APP of the type is created for subsequent selection according to the spectrum resource information sent by the access device and the APP type selection policy. This setting ensures that each APP's workload is within the set range, thus ensuring the responsiveness of each app.
- An access device that strains spectrum resources can quickly use idle spectrum resources released by other access devices.
- a further embodiment of the present disclosure provides a method for sharing spectrum resources.
- the method for sharing spectrum resources further includes: monitoring the running status of each APP in real time; In the event of a failure, a new APP of this type is created and the basic information of the local access device of the failed APP is fed back to the new APP.
- the new APP acquires corresponding characteristic data from each local access device according to the basic information to reach a state before the failure APP fails. This setting ensures that in the presence of idle spectrum resources, access devices with tight spectrum resources can apply for idle spectrum resources for normal operation.
- FIG. 5 is a schematic structural block diagram of an apparatus for sharing spectrum resources according to an embodiment of the present disclosure.
- the apparatus 100 for sharing spectrum resources includes: a confirmation module 110 and a processing module 120.
- the confirmation module is configured to determine a type of the access device and a type of the spectrum resource information according to the spectrum resource information sent by the access device.
- the processing module 120 is configured to: when the spectrum resource information is a spectrum resource release request, the idle spectrum resource of the access device is defined as a corresponding standard shared spectrum resource of the access device, where the access device is located. The use of other standard access devices where the spectrum resources of the area are tight.
- the types of the access device include, but are not limited to, a 2G standard access device, a 3G standard access device, and a 4G standard access device, and the 2G standard access device and the 3G standard access device in the present disclosure.
- the 2G standard access device and the 4G standard access device are other standard access devices than the 3G standard access device; the 3G standard access device and the 4G standard access device.
- the spectrum resource information type package Including: spectrum resource release request, spectrum resource application.
- the spectrum resource release request in the embodiment is at least one of the following: a frequency band resource release request and a frequency point resource release request; the shared spectrum resource is at least one of the following: a shared frequency band and a shared frequency point.
- the processing module 120 is configured to define the idle frequency band resource of the access device as the corresponding standard shared frequency band of the access device, where the access device is located. The use of other standard access devices with tight band resources.
- the processing module 120 is configured to define an idle frequency resource of the access device as a corresponding standard shared frequency point of the access device, where the access device is used. The use of other standard access devices with tight frequency resources in the geographical area.
- the processing module 120 is further configured to: when the spectrum resource information is a spectrum resource application, share the other shared spectrum resources of the geographic area where the access device is located to the Into the device.
- the application for the spectrum resource is at least one of the following: a frequency band resource application and a frequency point resource application; and the shared spectrum resource is at least one of the following: a shared frequency band and a shared frequency point.
- the spectrum resource application is a frequency band resource application
- the processing module 120 is configured to share other standard shared frequency band resources of the geographic area where the access device is located to the access device.
- the processing module 120 is configured to share other standard shared frequency resources of the geographic area where the access device is located to the access device.
- the type of the access device and the type of the spectrum resource information are determined according to the spectrum resource information sent by the access device; when the spectrum resource information is a spectrum resource release request, the access device is
- the idle spectrum resource is defined as a corresponding shared spectrum resource of the access device, and is used by other standard access devices in which the spectrum resource of the geographical area of the access device is tight, and can implement different standard access in the same geographical area.
- the sharing of spectrum resources between devices greatly improves the utilization of spectrum resources.
- FIG. 6 is a schematic structural block diagram of an apparatus for sharing spectrum resources according to another embodiment of the present disclosure.
- the apparatus 100 for sharing spectrum resources further includes: a creating module 130.
- the creating module 130 is configured to divide a geographic area, and for each geographic area, a plurality of APP modules 140 and an APP module 140 category selection policy are created.
- the confirmation module 110 is configured to determine, according to the spectrum resource information sent by the access device, the type of the access device and the type of the spectrum resource information, and select a policy according to the type of the APP module 140, from the multiple APPs. An APP module is selected in the module 140.
- the processing module 120 is configured to invoke the selected APP module 140 to perform the spectrum resource release request, and define the idle spectrum resource of the access device as the corresponding standard shared spectrum resource of the access device, For other standard access devices in which the spectrum resources of the access device are located are tight; when the spectrum resource information is a spectrum resource application, the other shared spectrum resources of the geographic area where the access device is located are shared with the The operation of the access device. For example, when the type of the access device is 4G, the idle spectrum resource of the 4G access device is defined as a shared spectrum resource of the 4G standard.
- the access device cannot use the corresponding standard to share the spectrum resource, if the access device is currently If the spectrum resource is tight, and the corresponding standard shared spectrum resource needs to be recovered, the spectrum resource recovery application needs to be sent to the selected APP, and the selected APP first determines, according to the real-time spectrum resource recovery application, the corresponding standard shared spectrum resource. If the corresponding shared spectrum resource is occupied, the recovery failure information is fed back to the access device, and if the corresponding shared spectrum resource is not occupied, the corresponding shared spectrum resource is returned. Giving the access device, and deleting the idle spectrum resource of the access device as a corresponding standard shared spectrum resource of the access device Within the relevant source.
- FIG. 7 is a schematic structural block diagram of an APP module of the present disclosure.
- the APP module 140 in the embodiment includes at least one of the following: a bandwidth level sharing class APP unit 141, a frequency point level sharing class APP unit 142, and a dynamic frequency point allocation class APP unit 143.
- the selected APP module is the bandwidth-level shared-type APP unit 141
- the spectrum resource information is a frequency band resource request
- the selected bandwidth-level shared-type APP unit 141 is configured to define the access device according to the frequency band resource application.
- a local access device in real time, it is monitored whether there is a standard shared frequency band corresponding to the local access device of the other standard in the geographical area where the access device is located; and a standard corresponding to the local access device of the other standard is detected in the geographical area where the access device is located
- the shared frequency band is selected from the geographical area of the access device, and the shared mode of the standard access mode of the other standard local access device is shared with the access device.
- the inbound device is a local access device; and it is determined whether there is another standard shared frequency band in the geographical area where the access device is located; if there is another standard shared frequency band in the geographical area where the access device is located, the geographical region where the access device is located Selecting a shared frequency band corresponding to a standard local access device to share the access If the access device is located in the geographical area where the access device is located, the access device is in a state of being in a spectrum resource state, and the local area of the access device is monitored in real time.
- the shared frequency band of the standard access mode is selected; when the shared frequency band corresponding to the local access device of the other standard is detected in the geographical area where the access device is located, the standard shared frequency band corresponding to the local access device of another standard is selected and shared by the access device. .
- the access device after receiving the spectrum resource information of an access device and selecting an APP according to the APP type selection policy, the access device is considered to be the local access device of the selected APP.
- the other type of local access device in the embodiment is for the access device.
- the standard type of the access device is a 3G system
- the standard type of the other local access device refers to Other than the 3G system, such as the 2G system and the 4G system
- the standard shared frequency band corresponding to the local access device of the other system is It refers to the shared frequency bands other than the shared band of the 3G system, such as the 2G standard shared frequency band and the 4G standard shared frequency band.
- the idle band resources can be utilized to the maximum extent, and the effect of fully utilizing the idle band resources can be achieved.
- the APP module 140 category selection policy is a first APP category selection policy; a second APP category selection policy; or a third APP category selection policy.
- the first APP category selection policy is: selecting a frequency point level sharing class APP unit 142 and a second time period selecting bandwidth level sharing class APP unit 141 in a first time period of the day.
- the first time period is the day time period
- the second time period is the night time period; wherein the specific time range can be set according to actual needs, for example, the first time period can be set to (00:60, 18:00), that is, from 00:60 to 18:00, including time 18:00, but not including time point 00:60; the second time period can be set to (00:00, 06:00) and [18:00, 24:00] , where (00:00,06:00) means from 00:00 to 06:00, including time point 06:00, but does not include time point 00:00; where (18:00, 24:00) means from 18 : 00 to 24:00, including the time of 24:00, but does not include the time of 18:00.
- the second APP type selection policy is: when the spectrum resource occupation information of the access device changes greatly, the frequency point level sharing APP unit 142 is selected; the spectrum resource occupation information of the access device does not change much, and the bandwidth level sharing type APP unit 141 is selected; After the access device obtains the spectrum resource allocated by the frequency-level shared APP unit 142 or the bandwidth-level shared APP unit 141, and the allocated spectrum resource cannot be used normally, the dynamic frequency allocation class APP unit 143 is selected.
- the third APP category selection strategy is: selecting an APP of a corresponding category according to a selection instruction input by the user.
- the selected APP module is the frequency point level sharing type APP unit 142
- the spectrum resource information is a frequency point resource application
- the selected frequency point level sharing type APP unit 142 is set to apply according to the frequency band resource.
- the system sharing frequency points corresponding to the other local access devices are located in the geographical area of the device, and the standard sharing frequency corresponding to the other local access devices is selected from the geographical area of the access device to be shared with the access device.
- the access device is defined as a local access device; and the geographic area of the access device is determined to be a shared frequency of the standard corresponding to the local access device of the other standard; If the access area of the access device is in the geographic area of the access device, the system sharing frequency point corresponding to the other local access device is selected from the geographical area of the access device.
- the area has a standard sharing frequency point corresponding to the local access device of the other system; when it is detected that there is a standard sharing frequency point corresponding to the local access device of the other standard in the geographical area where the access device is located, then another local standard access device is selected.
- the corresponding standard sharing frequency is shared to the access device.
- the other type of local access device is for the access device.
- the standard type of the access device is a 3G standard
- the standard type of the other local access device refers to a 3G standard.
- Other standards such as 2G system and 4G system
- the standard sharing frequency points corresponding to the local access devices of the other systems refer to the shared frequency points other than the shared frequency of the 3G system, such as the 2G standard shared frequency band and the 4G standard. Share frequency points.
- the dynamic frequency allocation type APP unit 143 in this embodiment is configured to create a frequency pool of a corresponding standard for each standard access device in advance.
- the dynamic frequency allocation class APP creates a 2G standard frequency point pool for the 2G standard access device, a 3G standard frequency point pool for the 3G standard access device, and a 4G standard frequency point pool for the 4G standard access device.
- the spectrum resource information is a frequency point resource release request; then the selected dynamic frequency point allocation class APP unit 143 is set to be based on The frequency band resource application, the access device is defined as a local access device, and the idle frequency of the access device is defined as a corresponding frequency shared frequency of the access device, and the shared frequency point is included in the corresponding The frequency of the system is in the pool.
- the type of the access device is 4G
- the idle frequency of the 4G access device is defined as a shared frequency of the 4G standard.
- the selected APP module is a dynamic frequency allocation type APP unit 143
- the spectrum resource information is a frequency point resource application.
- the selected dynamic frequency allocation class APP unit 413 is further configured to: according to the frequency band resource application, the access device is defined as a local access device; and the real-time monitoring of the local device of the other device in the geographic region where the access device is located Whether there is a shared frequency point in the frequency point pool M of the system; when it is detected that the frequency point pool M has a shared frequency point, the corresponding standard local access device of each shared frequency point in the frequency point pool M is calculated. The interference value between the cell and the cell where the access device is located; the shared frequency point corresponding to the minimum interference value is allocated to the access device.
- the access device is defined as a local access device; and whether the frequency point pool M of the corresponding standard local access device in the geographic region of the access device is present exists.
- the frequency of the shared frequency point is calculated; if there is a shared frequency point in the frequency point pool M of the corresponding standard local access device in the geographical area of the access device, the corresponding standard of each shared frequency point in the frequency point pool M is calculated.
- the interference value between the cell where the local access device is located and the cell where the access device is located; the shared frequency point corresponding to the minimum interference value is allocated to the access device; if the access device is located in the geographical area of the access device, other systems are locally accessed.
- the real time monitoring whether the frequency point pool M is included in the shared frequency point, and calculating the frequency point pool after monitoring the frequency point pool M to be included in the shared frequency point The interference value between the cell in which the corresponding standard access device of the shared frequency point is located and the cell in which the access device is located; and the shared frequency point corresponding to the minimum interference value is allocated to the access device .
- the frequency point pool M is configured to receive a local access device corresponding to the local frequency pool standard system in the geographical area where the access device is located (the type of the local access device corresponding to the current frequency pool standard system and the access mode)
- the idle frequency point of the device type is different, for example, if the access device is a 2G standard access device, the frequency pool M package Including: 3G system frequency point pool and / or 4G system frequency point pool.
- the 3G standard frequency point pool is used for accommodating the idle frequency of the 3G standard local access device in the geographical area where the access device is located, and the idle frequency point is defined as the 3G standard shared frequency point;
- the 4G standard frequency point pool is used for the storage place
- the idle frequency of the 4G standard local access device in the geographic area where the access device is located, and the idle frequency is defined as the shared frequency of the 4G standard.
- the shared frequency point corresponding to the minimum interference value is allocated to the access device, and the signal interference of the access device is reduced on the basis of fully utilizing the frequency point resource, thereby ensuring the experience effect of the access device user. .
- FIG. 8 is a schematic structural diagram of an apparatus for sharing spectrum resources according to still another embodiment of the present disclosure.
- the apparatus 100 for sharing spectrum resources further includes: a load monitoring module 150.
- the load monitoring module 150 is configured to monitor the load condition of each APP module 140 in real time. When the load value of a certain APP module 140 reaches the maximum load of the APP module 140, the creation module is invoked to create an APP module of the type. 140.
- the method further selects according to the spectrum resource information sent by the access device and the APP module 140 type selection policy. This setting ensures that each APP workload is within the set range, thereby ensuring the response speed of each APP, enabling the access equipment with tight spectrum resources to quickly use the idle spectrum resources released by other access devices.
- FIG. 9 is a schematic block diagram of an apparatus for sharing spectrum resources according to still another embodiment of the present disclosure.
- the apparatus 100 for sharing spectrum resources further includes: an operation status monitoring module 160.
- the running status monitoring module 160 is configured to monitor the running status of each APP module 140 in real time; when a certain APP module 140 fails, the calling module creates a new APP module 140 of the type and feeds back to the new APP module 140.
- the new APP module 140 is configured to monitor the running status of each APP module 140 in real time; when a certain APP module 140 fails, the calling module creates a new APP module 140 of the type and feeds back to the new APP module 140.
- Basic information of the local access device of the fault APP module 140 The new APP module 140.
- the method is configured to acquire, according to the basic information, corresponding characteristic data to each local access device to reach a state before the faulty APP module 140 fails. This setting ensures that in the presence of idle spectrum resources, access devices with tight spectrum resources can apply for idle spectrum resources for normal operation.
- the present disclosure also provides a non-transitory storage medium storing computer executable instructions arranged to perform the method of spectrum resource sharing of the above embodiments.
- the present disclosure also provides a computer program product comprising a computer program stored on a non-transitory computer readable storage medium, the computer program comprising program instructions, when the program instructions are executed by a computer, A method of causing the computer to perform spectrum resource sharing of the above embodiments.
- FIG. 10 is a structural block diagram of an electronic device according to an embodiment of the present disclosure.
- the electronic device may include a processor 51 and a memory 53, and may further include a communication interface 52 and a bus 54.
- the processor 51, the communication interface 52, and the memory 53 can complete communication with each other through the bus 54.
- Communication interface 52 can be used for information transmission.
- the processor 51 can call the logic instructions in the memory 53 to perform the method of spectrum resource sharing of the above embodiments.
- the logic instructions in the memory 53 described above may be implemented in the form of a software functional unit and sold or used as a stand-alone product, and may be stored in a computer readable storage medium.
- the technical solution of the present disclosure may be embodied in the form of a software product stored in a storage medium, including a plurality of instructions for causing a computer device (which may be a personal computer, a server, or a network) The device or the like) performs all or part of the steps of the method described in various embodiments of the present disclosure.
- the foregoing storage medium may be a non-transitory storage medium, including: a USB flash drive, a mobile hard disk, a read-only memory (ROM), and a random access memory (RAM). Random Access Memory), a disk or a disc, and other media that can store program code, or a transient storage medium.
- the method and device for sharing spectrum resources provided by the disclosure can realize spectrum resource sharing between different standard access devices in the same geographical area, and improve utilization of spectrum resources.
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Abstract
本公开公开了一种频谱资源共享的方法,所述方法包括:根据接入设备发送的频谱资源信息,确定接入设备的制式种类和频谱资源信息类型;当频谱资源信息为频谱资源释放请求,将接入设备的空闲频谱资源定义为接入设备的对应制式共享频谱资源。
Description
本公开涉及通信技术领域,例如涉及一种频谱资源共享的方法和装置。
在相关技术的网络中,每个小区的频谱资源需求瞬息万变,但每个小区的频谱资源的分配方式是固定的,有些频谱资源不能得到充分的利用,从而造成频谱资源的浪费。
目前,长期演进(Long Term Evolution,LTE)部署规模大,2G/3G制式数据业务萎缩,但2G、3G制式的语音业务需求量仍很大。例如白天2G/3G制式的语音业务量大,对2G/3G制式下的频谱资源需求量大,LTE制式的数据业务小,对LTE制式下的频谱资源需求小;但晚上2G/3G制式的语音业务量小,对2G/3G制式下的频谱资源需求量小,而LTE制式的数据业务很大,对LTE制式下的频谱资源需求小。然而相关技术中空闲频谱资源只能在同一制式进行共享,某一制式业务的空闲频谱资源无法共享给其他制式业务,即空闲频谱资源无法在不同制式接入设备间共享,频谱资源利用率低。
发明内容
本公开提供的一种频谱资源共享的方法,包括:
根据接入设备发送的频谱资源信息,确定所述接入设备的制式种类和所述频谱资源信息类型;
当所述频谱资源信息为频谱资源释放请求,将所述接入设备的空闲频谱资
源定义为所述接入设备的对应制式共享频谱资源,供所述接入设备所在地理区域的频谱资源紧张的其他制式接入设备使用。
可选地,在根据接入设备发送的频谱资源信息,确定所述接入设备的制式种类和所述频谱资源信息类型之后,所述方法还包括:
当所述频谱资源信息为频谱资源申请,将所述接入设备所在地理区域的其他制式共享频谱资源共享给所述接入设备。
可选地,所述根据接入设备发送的频谱资源信息,确定所述接入设备的制式种类和所述频谱资源信息类型之前,所述方法还包括:
划分地理区域,针对每一地理区域,创建多种应用程序(Application,APP),以及APP种类选择策略。
可选地,所述根据接入设备发送的频谱资源信息,确定所述接入设备的制式种类和所述频谱资源信息类型包括:
根据接入设备发送的频谱资源信息,确定所述接入设备的制式种类和所述频谱资源信息类型,根据所述APP种类选择策略,从所述多种APP中选择一个APP;
调用所选APP执行当所述频谱资源信息为频谱资源释放请求,将所述接入设备的空闲频谱资源定义为所述接入设备的对应制式共享频谱资源,供所述接入设备所在地理区域的频谱资源紧张的其他制式接入设备使用;当所述频谱资源信息为频谱资源申请,将所述接入设备所在地理区域的其他制式共享频谱资源共享给所述接入设备的操作。
可选地,所述频谱资源释放请求为以下至少之一:频段资源释放请求、频点资源释放请求;所述频谱资源申请为以下至少之一:频段资源申请、频点资源申请;所述共享频谱资源为以下至少之一:共享频段、共享频点。
可选地,所述APP包括以下至少之一:带宽级共享类APP、频点级共享类APP、动态频点分配类APP。
可选地,所述的频谱资源共享的方法,当所选APP为带宽级共享类APP,所述频谱资源信息为频段资源申请,所选带宽级共享类APP执行将所述接入设备所在地理区域的其他制式共享频谱资源共享给所述接入设备包括:
所选带宽级共享类APP根据所述频段资源申请,定义所述接入设备为本地接入设备;实时监测所述接入设备所在地理区域是否存在其他制式本地接入设备对应的制式共享频段;
当监测到所述接入设备所在地理区域存在其他制式本地接入设备对应的制式共享频段,则从所述接入设备所在地理区域选择一其他制式本地接入设备对应的制式共享频段共享给所述接入设备。
可选地,所述的频谱资源共享的方法,当所选APP为频点级共享类APP,所述频谱资源信息为频点资源申请,所选频点级共享类APP执行将所述接入设备所在地理区域的其他制式接入设备提供的共享频谱资源共享给所述接入设备的操作具体为:
所选频点级共享类APP根据所述频段资源申请,定义所述接入设备为本地接入设备;实时监测所述接入设备所在地理区域是否存在其他制式本地接入设备对应的制式共享频点;
当监测到所述接入设备所在地理区域存在其他制式本地接入设备对应的制式共享频点,则从所述接入设备所在地理区域选择一其他制式本地接入设备对应的制式共享频点共享给所述接入设备。
可选地,所述动态频点分配类APP预先为每一制式接入设备创建对应制式的频点池;当所选APP为动态频点分配类APP,所述频谱资源信息为频点资源申请;
所选动态频点分配类APP执行将所述接入设备的空闲频谱资源定义为所述接入设备的对应制式共享频谱资源包括:
所选动态频点分配类APP根据所述频段资源申请,定义所述接入设备为本地接入设备;并定义所述接入设备的空闲频点为所述接入设备的对应制式共享频点,将所述共享频点纳入对应制式的频点池内。
可选地,所述的频谱资源共享的方法,当所选APP为动态频点分配类APP,所述频谱资源信息为频点资源申请;
所选动态频点分配类APP执行将所述接入设备所在地理区域的其他制式共享频谱资源共享给所述接入设备的操作为:
所选动态频点分配类APP根据所述频段资源申请,定义所述接入设备为本地接入设备;实时监测所述接入设备所在地理区域其他制式本地接入设备对应制式的频点池M中是否存在共享频点;
当监测到所述频点池M存在共享频点,则计算所述频点池M中的每个共享频点的对应制式本地接入设备所在小区与所述接入设备所在小区间的干扰值;
将最小干扰值对应的共享频点分配给所述接入设备。
可选地,所述的频谱资源共享的方法还包括:
实时监测每一个APP的负荷情况,当某一APP的负荷值达到该类APP的最大负荷量,则创建一个该类型的APP,供后续根据接入设备发送的频谱资源信息和所述APP种类选择策略进行选择。
可选地,所述的频谱资源共享的方法还包括:
实时监测每一个APP的运行状态;当某一APP出现故障,则创建一个该类型的新APP,并向该新APP反馈故障APP的本地接入设备的基本信息;
所述新APP根据所述基本信息,向每个本地接入设备获取相应的特性数据,
以达到与故障APP出现故障之前的状态。
本公开还提供一种频谱资源共享的装置,所述频谱资源共享的装置包括:
确认模块,设置为根据接入设备发送的频谱资源信息,确定所述接入设备的制式种类和所述频谱资源信息类型;
处理模块,设置为当所述频谱资源信息为频谱资源释放请求,将所述接入设备的空闲频谱资源定义为所述接入设备的对应制式共享频谱资源,供所述接入设备所在地理区域的频谱资源紧张的其他制式接入设备使用。
可选地,所述处理模块,还设置为当所述频谱资源信息为频谱资源申请,将所述接入设备所在地理区域的其他制式共享频谱资源共享给所述接入设备。
可选地,所述的频谱资源共享的装置还包括:
创建模块,设置为划分地理区域,针对每一地理区域,创建多种应用程序(Application,APP)模块,以及APP模块种类选择策略。
可选地,所述确认模块,设置为根据接入设备发送的频谱资源信息,确定所述接入设备的制式种类和所述频谱资源信息类型,根据所述APP模块种类选择策略,从所述多种APP模块中选择一个APP模块;
所述处理模块,设置为调用所选APP模块执行当所述频谱资源信息为频谱资源释放请求,将所述接入设备的空闲频谱资源定义为所述接入设备的对应制式共享频谱资源,供所述接入设备所在地理区域的频谱资源紧张的其他制式接入设备使用;当所述频谱资源信息为频谱资源申请,将所述接入设备所在地理区域的其他制式共享频谱资源共享给所述接入设备的操作。
可选地,所述频谱资源释放请求为以下至少之一:频段资源释放请求、频点资源释放请求;所述频谱资源申请为以下至少之一:频段资源申请、频点资源申请;所述共享频谱资源为以下至少之一:共享频段、共享频点。
可选地,所述APP模块包括以下至少之一:带宽级共享类APP单元、频点级共享类APP单元、动态频点分配类APP单元。
可选地,所述的频谱资源共享的装置,当所选APP模块为带宽级共享类APP单元,所述频谱资源信息为频段资源申请,所选带宽级共享类APP单元,设置为根据所述频段资源申请,定义所述接入设备为本地接入设备;实时监测所述接入设备所在地理区域是否存在其他制式本地接入设备对应的制式共享频段;当监测到所述接入设备所在地理区域存在其他制式本地接入设备对应的制式共享频段,则从所述接入设备所在地理区域选择一其他制式本地接入设备对应的制式共享频段共享给所述接入设备。
可选地,所述的频谱资源共享的装置,当所选APP模块为频点级共享类APP单元,所述频谱资源信息为频点资源申请,所选频点级共享类APP单元,设置为根据所述频段资源申请,定义所述接入设备为本地接入设备;实时监测所述接入设备所在地理区域是否存在其他制式本地接入设备对应的制式共享频点;当监测到所述接入设备所在地理区域存在其他制式本地接入设备对应的制式共享频点,则从所述接入设备所在地理区域选择一其他制式本地接入设备对应的制式共享频点共享给所述接入设备。
可选地,所述动态频点分配类APP单元,设置为预先为每一制式接入设备创建对应制式的频点池;
当所选APP模块为动态频点分配类APP单元,所述频谱资源信息为频点资源申请;则所选动态频点分配类APP单元,设置为根据所述频段资源申请,定义所述接入设备为本地接入设备;并定义所述接入设备的空闲频点为所述接入设备的对应制式共享频点,将所述共享频点纳入对应制式的频点池内。
可选地,所述的频谱资源共享的装置,当所选APP模块为动态频点分配类
APP单元,所述频谱资源信息为频点资源申请;
所选动态频点分配类APP单元,设置为根据所述频段资源申请,定义所述接入设备为本地接入设备;实时监测所述接入设备所在地理区域其他制式本地接入设备对应制式的频点池M中是否存在共享频点;当监测到所述频点池M存在共享频点,则计算所述频点池M中的每个共享频点的对应制式本地接入设备所在小区与所述接入设备所在小区间的干扰值;将最小干扰值对应的共享频点分配给所述接入设备。
可选地,所述的频谱资源共享的装置还包括:
负荷监测模块,设置为实时监测每一个APP模块的负荷情况,当某一APP模块的负荷值达到该类APP模块的最大负荷量,则调用创建模块创建一个该类型的APP模块,供后续根据接入设备发送的频谱资源信息和所述APP模块种类选择策略进行选择。
可选地,所述的频谱资源共享的装置还包括:
运行状态监测模块,设置为实时监测每一个APP模块的运行状态;当某一APP模块出现故障,调用创建模块创建一个该类型的新APP模块,并向该新APP模块反馈故障APP模块的本地接入设备的基本信息;
所述新APP模块,设置为根据所述基本信息,向每个本地接入设备获取相应的特性数据,以达到与故障APP模块出现故障之前的状态。
根据本公开的又一方面,提供了一种非暂态存储介质,存储有计算机可执行指令,所述计算机可执行指令设置为执行上述的频谱资源共享的方法。
根据本公开的又一方面,提供了一种计算机程序产品,所述计算机程序产品包括存储在非暂态计算机可读存储介质上的计算机程序,所述计算机程序包括程序指令,当所述程序指令被计算机执行时,使所述计算机执行上述的频谱
资源共享的方法。
根据本公开的又一方面,提供了一种电子设备,包括至少一个处理器和与所述至少一个处理器通信连接的存储器,所述存储器用于存储可被所述至少一个处理器执行的指令,所述指令被所述至少一个处理器执行时,使所述至少一个处理器执行上述的频谱资源共享的方法。
本公开所提供的频谱资源共享的方法和装置,能够实现同一地理区域的不同制式接入设备间的频谱资源共享,提高了频谱资源的利用率。
一个或多个实施例通过与之对应的附图中的图片进行示例性说明,这些示例性说明并不构成对实施例的限定,附图中具有相同参考数字标号的元件表示为类似的元件,除非有特别申明,附图中的图不构成比例限制。
图1为本公开的一个实施例的频谱资源共享的方法的流程示意图;
图2为本公开的带宽级共享类APP将所述接入设备所在地理区域的其他制式共享频谱资源共享给所述接入设备的流程示意图;
图3为本公开的频点级共享类APP将所述接入设备所在地理区域的其他制式共享频谱资源共享给所述接入设备的流程示意图;
图4为本公开的所选动态频点分配类APP将所述接入设备所在地理区域的其他制式共享频谱资源共享给所述接入设备的流程示意图;
图5为本公开的一个实施例的频谱资源共享的装置的的示意性结构框图;
图6为本公开的另一个实施例的频谱资源共享的装置的示意性结构框图;
图7为本公开的APP模块的示意性结构框图;
图8为本公开的又一个实施例的频谱资源共享的装置的示意性结构框图;
图9为本公开的又一个实施例的频谱资源共享的装置的示意性结构框图;以及
图10是本公开实施例提供的电子设备的结构框图。
以下结合说明书附图对本公开的优选实施例进行说明,应当理解,此处所描述的优选实施例仅用于说明和解释本公开,并不用于限定本公开,并且在不冲突的情况下,本公开中的实施例及实施例中的特征可以相互组合。
本公开提供一种频谱资源共享的方法。参照图1,图1为本公开的实施例提供的频谱资源共享的方法的流程示意图。所述频谱资源共享的方法包括:
步骤S10、根据接入设备发送的频谱资源信息,确定所述接入设备的制式种类和所述频谱资源信息类型。
本实施例中,所述接入设备的制式种类包括但不限于:2G制式接入设备、3G制式接入设备、4G制式接入设备,本公开中2G制式接入设备、3G制式接入设备相对于4G制式接入设备为其他制式接入设备;2G制式接入设备、4G制式接入设备相对于3G制式接入设备为其他制式接入设备;3G制式接入设备、4G制式接入设备相对于2G制式接入设备为其他制式接入设备。所述频谱资源信息类型包括:频谱资源释放请求、频谱资源申请。
步骤S20、当所述频谱资源信息为频谱资源释放请求,将所述接入设备的空闲频谱资源定义为所述接入设备的对应制式共享频谱资源,供所述接入设备所在地理区域的频谱资源紧张的其他制式接入设备使用。
本步骤S20中所述频谱资源释放请求为:频段资源释放请求或频点资源释放请求;所述共享频谱资源为:共享频段或共享频点。当频谱资源释放请求为频
段资源释放请求,本步骤S20将所述接入设备的空闲频段资源定义为所述接入设备的对应制式共享频段,供所述接入设备所在地理区域的频段资源紧张的其他制式接入设备使用。当频谱资源释放请求为频点资源释放请求,本步骤S20将所述接入设备的空闲频点资源定义为所述接入设备的对应制式共享频点,供所述接入设备所在地理区域的频点资源紧张的其他制式接入设备使用。
上述频谱资源共享的方法实施例中,当所述频谱资源信息为频谱资源申请,所述步骤S10之后还包括如下处理:将所述接入设备所在地理区域的其他制式共享频谱资源共享给所述接入设备。
本实施例中所述频谱资源申请为以下至少之一:频段资源申请、频点资源申请;所述共享频谱资源为以下至少之一:共享频段、共享频点。当所述频谱资源申请为频段资源申请,则将所述接入设备所在地理区域的其他制式共享频段资源共享给所述接入设备。当所述频谱资源申请为频点资源申请,则将所述接入设备所在地理区域的其他制式共享频点资源共享给所述接入设备。
本实施例通过根据接入设备发送的频谱资源信息,确定所述接入设备的制式种类和所述频谱资源信息类型;当所述频谱资源信息为频谱资源释放请求,将所述接入设备的空闲频谱资源定义为所述接入设备的对应制式共享频谱资源,供所述接入设备所在地理区域的频谱资源紧张的其他制式接入设备使用的方式,能够实现同一地理区域的不同制式接入设备间的频谱资源共享,极大了提高了频谱资源的利用率。
本公开的另一实施例提供一种频谱资源共享的方法,,在所述根据接入设备发送的频谱资源信息,确定所述接入设备的制式种类和所述频谱资源信息类型之前,所述方法还包括如下处理:划分地理区域,针对每一地理区域,创建多
种APP,以及APP种类选择策略。所述步骤S10根据接入设备发送的频谱资源信息,确定所述接入设备的制式种类和所述频谱资源信息类型具体为:所述根据接入设备发送的频谱资源信息,确定所述接入设备的制式种类和所述频谱资源信息类型,根据所述APP种类选择策略从所述多种APP中选择一个APP。并调用所选APP执行当所述频谱资源信息为频谱资源释放请求,将所述接入设备的空闲频谱资源定义为所述接入设备的对应制式共享频谱资源,供所述接入设备所在地理区域的频谱资源紧张的其他制式接入设备使用;当所述频谱资源信息为频谱资源申请,将所述接入设备所在地理区域的其他制式共享频谱资源共享给所述接入设备的操作。例如当所述接入设备的制式种类为4G制式,则定义所述4G制式接入设备的空闲频谱资源为4G制式共享频谱资源。
所述APP种类选择策略为第一APP种类选择策略;第二APP种类选择策略;或者,第三APP种类选择策略。
其中第一APP种类选择策略为:一天中的第一时间段选择频点级共享类APP、第二时间段选择带宽级共享类APP。其中第一时间段为白天时间段,第二时间段为晚上时间段;其中具体时间范围可以根据实际需要进行设置,如第一时间段可以设置为(00:60,18:00],即从00:60至18:00,包括时间点18:00,但不包括时间点00:60;第二时间段可以设置为(00:00,06:00]以及[18:00,24:00],其中(00:00,06:00]表示从00:00至06:00,包括时间点06:00,但不包括时间点00:00;其中(18:00,24:00]表示从18:00至24:00,包括时间点24:00,但不包括时间点18:00。
第二APP种类选择策略为:接入设备的频谱资源占用信息变化大,则选择频点级共享APP;接入设备的频谱资源占用信息变化不大,选择带宽级共享类APP;接入设备获得频点级共享APP或带宽级共享类APP分配的频谱资源后,无法正常
使用所分配的频谱资源,则选择动态频点分配类APP.
第三APP种类选择策略为:根据用户输入的选择指令,选择相应种类的APP。
本实施例中所述接入设备的空闲频谱资源定义为所述接入设备的对应制式共享频谱资源后,所述接入设备不能使用所述对应制式共享频谱资源,若所述接入设备当前频谱资源紧张,需要回收所述对应制式共享频谱资源,则需要向所述所选APP发送频谱资源回收申请,所述所选APP根据实时频谱资源回收申请后,首先判断所述对应制式共享频谱资源是否被占用,若被占用,则向所述接入设备反馈回收失败信息,若未被占用则将所述对应制式共享频谱资源还回给所述接入设备,并删除将所述接入设备的空闲频谱资源定义为所述接入设备的对应制式共享频谱资源的相关内。
本实施例中所述APP包括以下至少之一:带宽级共享类APP、频点级共享类APP、动态频点分配类APP。当所选APP为带宽级共享类APP,所述频谱资源信息为频段资源申请,所选带宽级共享类APP执行将所述接入设备所在地理区域的其他制式共享频谱资源共享给所述接入设备的操作包括如下处理:所选带宽级共享类APP根据所述频段资源申请,定义所述接入设备为本地接入设备;实时监测所述接入设备所在地理区域是否存在其他制式本地接入设备对应的制式共享频段;当监测到所述接入设备所在地理区域存在其他制式本地接入设备对应的制式共享频段,则从所述接入设备所在地理区域选择一其他制式本地接入设备对应的制式共享频段共享给所述接入设备。
参见图2,图2为本公开的带宽级共享类APP将所述接入设备所在地理区域的其他制式共享频谱资源共享给所述接入设备的流程示意图。该过程包括:
步骤S21、所选带宽级共享类APP根据所述频段资源申请,定义所述接入设备为本地接入设备;并判断所述接入设备所在地理区域是否存在其他制式本地
接入设备对应的制式共享频段;若所述接入设备所在地理区域存在其他制式本地接入设备对应的制式共享频段,转入步骤S23;若所述接入设备所在地理区域不存在其他制式本地接入设备对应的制式共享频段,则转入步骤S22。
步骤S22、记录所述接入设备处于频谱资源紧张状态,实时监测所述接入设备所在地理区域是否存在其他制式本地接入设备对应的制式共享频段;当监测到所述接入设备所在地理区域存在其他制式本地接入设备对应的制式共享频段,则转入步骤S23。
步骤S23、从所述接入设备所在地理区域选择一其他制式本地接入设备对应的制式共享频段共享给所述接入设备。
本公开中接收到某一接入设备的频谱资源信息之后,根据APP种类选择策略选择一个APP,则认为该接入设备为所选APP的本地接入设备。其中,本实施例中所述其他制式本地接入设备是针对所述接入设备而言,例如若所述接入设备的制式种类为3G制式,则所述其他制式本地接入设备的制式种类指除3G制式以外的其他制式,如2G制式、4G制式;该其他制式本地接入设备对应的制式共享频段则是指除3G制式共享频段以外的其他制式共享频段,如2G制式共享频段和4G制式共享频段。本实施例中如此设置,能够最大限度地利用空闲频段资源,达到充分利用空闲频段资源的效果。
本实施例中当所选APP为频点级共享类APP,所述频谱资源信息为频点资源申请,所选频点级共享类APP执行将所述接入设备所在地理区域的其他制式接入设备提供的共享频谱资源共享给所述接入设备的操作包括如下处理:所选频点级共享类APP根据所述频段资源申请,定义所述接入设备为本地接入设备;实时监测所述接入设备所在地理区域是否存在其他制式本地接入设备对应的制式共
享频点;当监测到所述接入设备所在地理区域存在其他制式本地接入设备对应的制式共享频点,则从所述接入设备所在地理区域选择一其他制式本地接入设备对应的制式共享频点共享给所述接入设备。参见图3,图3为本公开的频点级共享类APP将所述接入设备所在地理区域的其他制式共享频谱资源共享给所述接入设备的流程示意图。该过程包括:
步骤S31、所选频点级共享类APP根据所述频段资源申请,定义所述接入设备为本地接入设备;并判断所述接入设备所在地理区域是否存在其他制式本地接入设备对应的制式共享频点;若所述接入设备所在地理区域存在其他制式本地接入设备对应的制式共享频点,则转入步骤S33;若所述接入设备所在地理区域不存在其他制式本地接入设备对应的制式共享频点,转入步骤S32;
步骤S32、记录所述接入设备处于频谱资源紧张状态,实时监测所述接入设备所在地理区域是否有其他制式本地接入设备对应的制式共享频点;当监测到所述接入设备所在地理区域存在其他制式本地接入设备对应的制式共享频点,则转入步骤S33。
步骤S33、从所述接入设备所在地理区域选择一其他制式本地接入设备对应的制式共享频点共享给所述接入设备。
本实施例中所述其他制式本地接入设备是针对所述接入设备而言,例如若所述接入设备的制式种类为3G制式,则所述其他制式本地接入设备的制式种类指除3G制式以外的其他制式,如2G制式、4G制式;该其他制式本地接入设备对应的制式共享频点则是指除3G制式共享频点以外的其他制式共享频点,如2G制式共享频段和4G制式共享频点。如此设置,能够最大限度地利用零散的空闲频点资源,达到充分利用空闲频点资源的效果。
本实施例中,所述动态频点分配类APP预先为每一制式接入设备创建对应制
式的频点池;例如动态频点分配类APP预先为2G制式接入设备创建2G制式频点池,为3G制式接入设备创建3G制式频点池,为4G制式接入设备创建4G制式频点池。当所选APP为动态频点分配类APP,所述频谱资源信息为频点资源申请。所选动态频点分配类APP执行将所述接入设备的空闲频谱资源定义为所述接入设备的对应制式共享频谱资源具体为:所选动态频点分配类APP根据所述频段资源申请,定义所述接入设备为本地接入设备;并定义所述接入设备的空闲频点为所述接入设备的对应制式共享频点,将所述共享频点纳入对应制式的频点池内。例如当所述接入设备的制式种类为4G制式,则定义所述4G制式接入设备的空闲频点为4G制式共享频点。
本实施例中,当所选APP为动态频点分配类APP,所述频谱资源信息为频点资源申请。所述所选动态频点分配类APP执行将所述接入设备所在地理区域的其他制式共享频谱资源共享给所述接入设备的操作包括如下处理:所选动态频点分配类APP根据所述频段资源申请,定义所述接入设备为本地接入设备;实时监测所述接入设备所在地理区域其他制式本地接入设备对应制式的频点池M中是否存在共享频点;当监测到所述频点池M存在共享频点,则计算所述频点池M中的每个共享频点的对应制式本地接入设备所在小区与所述接入设备所在小区间的干扰值。参见图4,图4为本公开的所选动态频点分配类APP将所述接入设备所在地理区域的其他制式共享频谱资源共享给所述接入设备的流程示意图。该过程包括:
步骤S41、所选动态频点分配类APP根据所述频段资源申请,定义所述接入设备为本地接入设备;并判断所述接入设备所在地理区域其他制式本地接入设备对应制式的频点池M中是否存在共享频点;若所述接入设备所在地理区域其他制式本地接入设备对应制式的频点池M中不存在共享频点,转入步骤S42;若所
述接入设备所在地理区域其他制式本地接入设备对应制式的频点池M中存在共享频点,则转入步骤S43。
所述频点池M用于收纳所述接入设备所在地理区域中与本频点池制式对应制式本地接入设备(本频点池制式对应制式本地接入设备的制式种类与所述接入设备制式种类不同)的空闲频点,例如若所述接入设备为2G制式接入设备,则所述频点池M包括:3G制式频点池和/或4G制式频点池。3G制式频点池用于收纳所述接入设备所在地理区域中3G制式本地接入设备的空闲频点,该空闲频点被定义为3G制式共享频点;4G制式频点池用于收纳所述接入设备所在地理区域中4G制式本地接入设备的空闲频点,该空闲频点被定义为4G制式共享频点。
步骤S42、实时监测所述频点池M是否纳入共享频点,监测到所述频点池M纳入共享频点后转入步骤S43。
步骤S43、计算所述频点池M中的每个共享频点的对应制式本地接入设备所在小区与所述接入设备所在小区间的干扰值。
步骤S44、将最小干扰值对应的共享频点分配给所述接入设备。
本实施例通过将最小干扰值对应的共享频点分配给所述接入设备,在达到充分利用频点资源的基础上,降低了接入设备的信号干扰,确保了接入设备用户的体验效果。
本公开的又一实施例提供一种频谱资源共享的方法,在上述任一实施例的基础,所述的频谱资源共享的方法还包括:实时监测每一个APP的负荷情况,当某一APP的负荷值达到该类APP的最大负荷量,则创建一个该类型的APP,供后续根据接入设备发送的频谱资源信息和所述APP种类选择策略进行选择。如此设置可以确保每个APP工作量在设定范围内,从而能够确保每个APP的响应速度,
使频谱资源紧张的接入设备能够快速使用其他接入设备释放的空闲频谱资源。
本公开的又一实施例提供了一种频谱资源共享的方法,在上述任一实施例的基础,所述的频谱资源共享的方法还包括:实时监测每一个APP的运行状态;当某一APP出现故障,则创建一个该类型的新APP,并向该新APP反馈故障APP的本地接入设备的基本信息。所述新APP根据所述基本信息,向每个本地接入设备获取相应的特性数据,以达到与故障APP出现故障之前的状态。如此设置能够确保在存在空闲频谱资源的情况下,频谱资源紧张的接入设备能够申请到空闲频谱资源,实现正常运行。
本公开还提供一种频谱资源共享的装置。参照图5,图5为本公开的一个实施例提供的频谱资源共享的装置的示意性结构框图。在本实施例中,所述频谱资源共享的装置100包括:确认模块110和处理模块120。其中,所述确认模块设置为根据接入设备发送的频谱资源信息,确定所述接入设备的制式种类和所述频谱资源信息类型。所述处理模块120设置为当所述频谱资源信息为频谱资源释放请求,将所述接入设备的空闲频谱资源定义为所述接入设备的对应制式共享频谱资源,供所述接入设备所在地理区域的频谱资源紧张的其他制式接入设备使用。
本实施例中,所述接入设备的制式种类包括但不限于:2G制式接入设备、3G制式接入设备、4G制式接入设备,本公开中2G制式接入设备、3G制式接入设备相对于4G制式接入设备为其他制式接入设备;2G制式接入设备、4G制式接入设备相对于3G制式接入设备为其他制式接入设备;3G制式接入设备、4G制式接入设备相对于2G制式接入设备为其他制式接入设备。所述频谱资源信息类型包
括:频谱资源释放请求、频谱资源申请。
本实施例中所述频谱资源释放请求为以下至少之一:频段资源释放请求、频点资源释放请求;所述共享频谱资源为以下至少之一:共享频段、共享频点。当频谱资源释放请求为频段资源释放请求,所述处理模块120设置为将所述接入设备的空闲频段资源定义为所述接入设备的对应制式共享频段,供所述接入设备所在地理区域的频段资源紧张的其他制式接入设备使用。当频谱资源释放请求为频点资源释放请求,所述处理模块120设置为将所述接入设备的空闲频点资源定义为所述接入设备的对应制式共享频点,供所述接入设备所在地理区域的频点资源紧张的其他制式接入设备使用。
上述频谱资源共享的装置实施例中,所述处理模块120,还设置为当所述频谱资源信息为频谱资源申请,将所述接入设备所在地理区域的其他制式共享频谱资源共享给所述接入设备。其中所述频谱资源申请为以下至少之一:频段资源申请、频点资源申请;所述共享频谱资源为以下至少之一:共享频段、共享频点。当所述频谱资源申请为频段资源申请,所述处理模块120设置为将所述接入设备所在地理区域的其他制式共享频段资源共享给所述接入设备。当所述频谱资源申请为频点资源申请,所述处理模块120设置为将所述接入设备所在地理区域的其他制式共享频点资源共享给所述接入设备。
本实施例通过根据接入设备发送的频谱资源信息,确定所述接入设备的制式种类和所述频谱资源信息类型;当所述频谱资源信息为频谱资源释放请求,将所述接入设备的空闲频谱资源定义为所述接入设备的对应制式共享频谱资源,供所述接入设备所在地理区域的频谱资源紧张的其他制式接入设备使用的方式,能够实现同一地理区域的不同制式接入设备间的频谱资源共享,极大了提高了频谱资源的利用率。
本公开的另一实施例提供一种频谱资源共享的装置,参见图6,图6为本公开的另一实施例提供的频谱资源共享的装置的示意性结构框图。在上述实施例的基础,所述频谱资源共享的装置100还包括:创建模块130。其中所述创建模块130设置为划分地理区域,针对每一地理区域,创建多种APP模块140,以及APP模块140种类选择策略。所述确认模块110设置为根据接入设备发送的频谱资源信息,确定所述接入设备的制式种类和所述频谱资源信息类型,根据所述APP模块140种类选择策略,从所述多种APP模块140中选择一个APP模块。所述处理模块120设置为调用所选APP模块140执行当所述频谱资源信息为频谱资源释放请求,将所述接入设备的空闲频谱资源定义为所述接入设备的对应制式共享频谱资源,供所述接入设备所在地理区域的频谱资源紧张的其他制式接入设备使用;当所述频谱资源信息为频谱资源申请,将所述接入设备所在地理区域的其他制式共享频谱资源共享给所述接入设备的操作。例如当所述接入设备的制式种类为4G制式,则定义所述4G制式接入设备的空闲频谱资源为4G制式共享频谱资源。
本实施例中所述接入设备的空闲频谱资源定义为所述接入设备的对应制式共享频谱资源后,所述接入设备不能使用所述对应制式共享频谱资源,若所述接入设备当前频谱资源紧张,需要回收所述对应制式共享频谱资源,则需要向所述所选APP发送频谱资源回收申请,所述所选APP根据实时频谱资源回收申请后,首先判断所述对应制式共享频谱资源是否被占用,若所述对应制式共享频谱资源被占用,则向所述接入设备反馈回收失败信息,若所述对应制式共享频谱资源未被占用,则将所述对应制式共享频谱资源还回给所述接入设备,并删除将所述接入设备的空闲频谱资源定义为所述接入设备的对应制式共享频谱资
源的相关内。
图7为本公开的APP模块的示意性结构框图。参见图7,本实施例中所述APP模块140包括以下至少之一:带宽级共享类APP单元141、频点级共享类APP单元142、动态频点分配类APP单元143。当所选APP模块为带宽级共享类APP单元141,所述频谱资源信息为频段资源申请,所选带宽级共享类APP单元141,设置为根据所述频段资源申请,定义所述接入设备为本地接入设备;实时监测所述接入设备所在地理区域是否存在其他制式本地接入设备对应的制式共享频段;当监测到所述接入设备所在地理区域存在其他制式本地接入设备对应的制式共享频段,则从所述接入设备所在地理区域选择一其他制式本地接入设备对应的制式共享频段共享给所述接入设备其中具体处理过程如下:根据所述频段资源申请,定义所述接入设备为本地接入设备;并判断所述接入设备所在地理区域是否存在其他制式共享频段;若所述接入设备所在地理区域存在其他制式共享频段,则从所述接入设备所在地理区域选择一其他制式本地接入设备对应的制式共享频段共享给所述接入设备;若所述接入设备所在地理区域不存在其他制式共享频段,则记录所述接入设备处于频谱资源紧张状态,实时监测所述接入设备所在地理区域是否存在其他制式本地接入设备对应的制式共享频段;当监测到所述接入设备所在地理区域存在其他制式本地接入设备对应的制式共享频段,则选择一其他制式本地接入设备对应的制式共享频段共享给所述接入设备。本公开中接收到某一接入设备的频谱资源信息之后根据APP种类选择策略选择一个APP,则认为该接入设备为所选APP的本地接入设备。其中本实施例中所述其他制式本地接入设备是针对所述接入设备而言,例如若所述接入设备的制式种类为3G制式,则所述其他制式本地接入设备的制式种类指除3G制式以外的其他制式,如2G制式、4G制式;该其他制式本地接入设备对应的制式共享频段则
是指除3G制式共享频段以外的其他制式共享频段,如2G制式共享频段和4G制式共享频段。本实施例中如此设置,能够最大限度地利用空闲频段资源,达到充分利用空闲频段资源的效果。
所述APP模块140种类选择策略为第一APP种类选择策略;第二APP种类选择策略;或者,第三APP种类选择策略。
其中第一APP种类选择策略为:一天中的第一时间段选择频点级共享类APP单元142、第二时间段选择带宽级共享类APP单元141。其中第一时间段为白天时间段,第二时间段为晚上时间段;其中具体时间范围可以根据实际需要进行设置,如第一时间段可以设置为(00:60,18:00],即从00:60至18:00,包括时间点18:00,但不包括时间点00:60;第二时间段可以设置为(00:00,06:00]以及[18:00,24:00],其中(00:00,06:00]表示从00:00至06:00,包括时间点06:00,但不包括时间点00:00;其中(18:00,24:00]表示从18:00至24:00,包括时间点24:00,但不包括时间点18:00。
第二APP种类选择策略为:接入设备的频谱资源占用信息变化大,则选择频点级共享APP单元142;接入设备的频谱资源占用信息变化不大,选择带宽级共享类APP单元141;接入设备获得频点级共享APP单元142或带宽级共享类APP单元141分配的频谱资源后,无法正常使用所分配的频谱资源,则选择动态频点分配类APP单元143。
第三APP种类选择策略为:根据用户输入的选择指令,选择相应种类的APP。
本实施例中,当所选APP模块为频点级共享类APP单元142,所述频谱资源信息为频点资源申请,所选频点级共享类APP单元142,设置为根据所述频段资源申请,定义所述接入设备为本地接入设备;实时监测所述接入设备所在地理区域是否存在其他制式本地接入设备对应的制式共享频点;当监测到所述接入
设备所在地理区域存在其他制式本地接入设备对应的制式共享频点,则从所述接入设备所在地理区域选择一其他制式本地接入设备对应的制式共享频点共享给所述接入设备。其中处理过程如下:根据所述频段资源申请,定义所述接入设备为本地接入设备;并判断所述接入设备所在地理区域是否存在其他制式本地接入设备对应的制式共享频点;若所述接入设备所在地理区域存在其他制式本地接入设备对应的制式共享频点,则从所述接入设备所在地理区域选择一其他制式本地接入设备对应的制式共享频点共享给所述接入设备;若所述接入设备所在地理区域不存在其他制式本地接入设备对应的制式共享频点,则记录所述接入设备处于频谱资源紧张状态,实时监测所述接入设备所在地理区域是否有其他制式本地接入设备对应的制式共享频点;当监测到所述接入设备所在地理区域存在其他制式本地接入设备对应的制式共享频点,则选择一其他制式本地接入设备对应的制式共享频点共享给所述接入设备。其中,所述其他制式本地接入设备是针对所述接入设备而言,例如若所述接入设备的制式种类为3G制式,则所述其他制式本地接入设备的制式种类指除3G制式以外的其他制式,如2G制式、4G制式;该其他制式本地接入设备对应的制式共享频点则是指除3G制式共享频点以外的其他制式共享频点,如2G制式共享频段和4G制式共享频点。如此设置,能够最大限度地利用零散的空闲频点资源,达到充分利用空闲频点资源的效果。
本实施例中所述动态频点分配类APP单元143,用于预先为每一制式接入设备创建对应制式的频点池。例如动态频点分配类APP预先为2G制式接入设备创建2G制式频点池,为3G制式接入设备创建3G制式频点池,为4G制式接入设备创建4G制式频点池。当所选APP模块为动态频点分配类APP单元143,所述频谱资源信息为频点资源释放请求;则所选动态频点分配类APP单元143,设置为根据
所述频段资源申请,定义所述接入设备为本地接入设备;并定义所述接入设备的空闲频点为所述接入设备的对应制式共享频点,将所述共享频点纳入对应制式的频点池内。例如当所述接入设备的制式种类为4G制式,则定义所述4G制式接入设备的空闲频点为4G制式共享频点。本实施例中当所选APP模块为动态频点分配类APP单元143,所述频谱资源信息为频点资源申请。所选动态频点分配类APP单元413,还设置为根据所述频段资源申请,定义所述接入设备为本地接入设备;实时监测所述接入设备所在地理区域其他制式本地接入设备对应制式的频点池M中是否存在共享频点;当监测到所述频点池M存在共享频点,则计算所述频点池M中的每个共享频点的对应制式本地接入设备所在小区与所述接入设备所在小区间的干扰值;将最小干扰值对应的共享频点分配给所述接入设备。其中处理过程如下:根据所述频段资源申请,定义所述接入设备为本地接入设备;并判断所述接入设备所在地理区域其他制式本地接入设备对应制式的频点池M中是否存在共享频点;若所述接入设备所在地理区域其他制式本地接入设备对应制式的频点池M中存在共享频点,则计算所述频点池M中的每个共享频点的对应制式本地接入设备所在小区与所述接入设备所在小区间的干扰值;将最小干扰值对应的共享频点分配给所述接入设备;若所述接入设备所在地理区域其他制式本地接入设备对应制式的频点池M中不存在共享频点,则实时监测所述频点池M是否纳入共享频点,在监测到所述频点池M纳入共享频点后计算所述频点池M中的每个共享频点的对应制式接入设备所在小区与所述接入设备所在小区间的干扰值;将最小干扰值对应的共享频点分配给所述接入设备。所述频点池M用于收纳所述接入设备所在地理区域中与本频点池制式对应制式本地接入设备(本频点池制式对应制式本地接入设备的制式种类与所述接入设备制式种类不同)的空闲频点,例如若所述接入设备为2G制式接入设备,则所述频点池M包
括:3G制式频点池和/或4G制式频点池。3G制式频点池用于收纳所述接入设备所在地理区域中3G制式本地接入设备的空闲频点,该空闲频点被定义为3G制式共享频点;4G制式频点池用于收纳所述接入设备所在地理区域中4G制式本地接入设备的空闲频点,该空闲频点被定义为4G制式共享频点。本实施例通过将最小干扰值对应的共享频点分配给所述接入设备,在达到充分利用频点资源的基础上,降低了接入设备的信号干扰,确保了接入设备用户的体验效果。
本公开的又一实施例提供一种频谱资源共享的装置,参见图8,图8为本公开的又一实施例提供的频谱资源共享的装置的示意性结构图。在上述任一实施例的基础,所述频谱资源共享的装置100还包括:负荷监测模块150。所述负荷监测模块150设置为实时监测每一个APP模块140的负荷情况,当某一APP模块140的负荷值达到该类APP模块140的最大负荷量,则调用创建模块创建一个该类型的APP模块140,供后续根据接入设备发送的频谱资源信息和所述APP模块140种类选择策略进行选择。如此设置可以确保每个APP工作量在设定范围内,从而能够确保每个APP的响应速度,使频谱资源紧张的接入设备能够快速使用其他接入设备释放的空闲频谱资源。
本公开的又一实施例提供一种频谱资源共享的装置,参见图9,图9为本公开的又一实施例提供的频谱资源共享的装置的示意性框图。在上述任一实施例的基础,所述频谱资源共享的装置100还包括:运行状态监测模块160。所述运行状态监测模块160设置为实时监测每一个APP模块140的运行状态;当某一APP模块140出现故障,调用创建模块创建一个该类型的新APP模块140,并向该新APP模块140反馈故障APP模块140的本地接入设备的基本信息。所述新APP模块
140,用于根据所述基本信息,向每个本地接入设备获取相应的特性数据,以达到与故障APP模块140出现故障之前的状态。如此设置能够确保在存在空闲频谱资源的情况下,频谱资源紧张的接入设备能够申请到空闲频谱资源,实现正常运行。
本公开还提供了一种非暂态存储介质,存储有计算机可执行指令,所述计算机可执行指令设置为执行上述实施例的频谱资源共享的方法。
本公开还提供了一种计算机程序产品,所述计算机程序产品包括存储在非暂态计算机可读存储介质上的计算机程序,所述计算机程序包括程序指令,当所述程序指令被计算机执行时,使所述计算机执行上述实施例的频谱资源共享的方法。
本公开还提供了一种电子设备。图10是本公开实施例提供的电子设备的结构框图。该电子设备可以包括:处理器(processor)51和存储器(memory)53,还可以包括通信接口(Communications Interface)52和总线54。其中,处理器51、通信接口52、存储器53可以通过总线54完成相互间的通信。通信接口52可以用于信息传输。处理器51可以调用存储器53中的逻辑指令,以执行上述实施例的频谱资源共享的方法。
此外,上述的存储器53中的逻辑指令可以通过软件功能单元的形式实现并作为独立的产品销售或使用时,可以存储在一个计算机可读取存储介质中。基于这样的理解,本公开的技术方案可以以软件产品的形式体现出来,该计算机软件产品存储在一个存储介质中,包括若干指令用以使得一台计算机设备(可以是个人计算机,服务器,或者网络设备等)执行本公开各个实施例所述方法的全部或部分步骤。而前述的存储介质可以是非暂态存储介质,包括:U盘、移动硬盘、只读存储器(ROM,Read-Only Memory)、随机存取存储器(RAM,
Random Access Memory)、磁碟或者光盘等各种可以存储程序代码的介质,也可以是暂态存储介质。
以上仅为本公开的部分实施例,并非因此限制本公开的专利范围,凡是利用本公开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,均同理包括在本公开的专利保护范围内。
本公开所提供的频谱资源共享的方法和装置,能够实现同一地理区域的不同制式接入设备间的频谱资源共享,提高了频谱资源的利用率。
Claims (27)
- 一种频谱资源共享的方法,包括:根据接入设备发送的频谱资源信息,确定所述接入设备的制式种类和所述频谱资源信息类型;以及当所述频谱资源信息为频谱资源释放请求,将所述接入设备的空闲频谱资源定义为所述接入设备的对应制式共享频谱资源,供所述接入设备所在地理区域的频谱资源紧张的其他制式接入设备使用。
- 根据权利要求1所述的频谱资源共享的方法,其中,所述根据接入设备发送的频谱资源信息,确定所述接入设备的制式种类和所述频谱资源信息类型之后,所述方法还包括:当所述频谱资源信息为频谱资源申请,将所述接入设备所在地理区域的其他制式共享频谱资源共享给所述接入设备。
- 根据权利要求1或2所述的频谱资源共享的方法,其中,所述根据接入设备发送的频谱资源信息,确定所述接入设备的制式种类和所述频谱资源信息类型之前,所述方法还包括:划分地理区域,针对每一地理区域,创建多种应用程序(Application,APP),以及APP种类选择策略。
- 根据权利要求3所述的频谱资源共享的方法,其中,所述根据接入设备发送的频谱资源信息,确定所述接入设备的制式种类和所述频谱资源信息类型包括:根据接入设备发送的频谱资源信息,确定所述接入设备的制式种类和所述 频谱资源信息类型,根据所述APP种类选择策略,从所述多种APP中选择一个APP;调用所选APP执行当所述频谱资源信息为频谱资源释放请求,将所述接入设备的空闲频谱资源定义为所述接入设备的对应制式共享频谱资源,供所述接入设备所在地理区域的频谱资源紧张的其他制式接入设备使用;当所述频谱资源信息为频谱资源申请,将所述接入设备所在地理区域的其他制式共享频谱资源共享给所述接入设备的操作。
- 根据权利要求4所述的频谱资源共享的方法,其中,所述频谱资源释放请求为以下至少之一:频段资源释放请求、频点资源释放请求;所述频谱资源申请为以下至少之一:频段资源申请、频点资源申请;所述共享频谱资源为以下至少之一:共享频段、共享频点。
- 根据权利要求5所述的频谱资源共享的方法,其中,所述APP包括以下至少之一:带宽级共享类APP、频点级共享类APP、动态频点分配类APP。
- 根据权利要求6所述的频谱资源共享的方法,其中,当所选APP为带宽级共享类APP,所述频谱资源信息为频段资源申请,所选带宽级共享类APP执行将所述接入设备所在地理区域的其他制式共享频谱资源共享给所述接入设备包括:所选带宽级共享类APP根据所述频段资源申请,定义所述接入设备为本地接入设备;实时监测所述接入设备所在地理区域是否存在其他制式本地接入设备对应的制式共享频段;当监测到所述接入设备所在地理区域存在其他制式本地接入设备对应的制式共享频段,则从所述接入设备所在地理区域选择一其他制式本地接入设备对 应的制式共享频段共享给所述接入设备。
- 根据权利要求6所述的频谱资源共享的方法,其中,当所选APP为频点级共享类APP,所述频谱资源信息为频点资源申请,所选频点级共享类APP执行将所述接入设备所在地理区域的其他制式接入设备提供的共享频谱资源共享给所述接入设备的操作为:所选频点级共享类APP根据所述频段资源申请,定义所述接入设备为本地接入设备;实时监测所述接入设备所在地理区域是否存在其他制式本地接入设备对应的制式共享频点;当监测到所述接入设备所在地理区域存在其他制式本地接入设备对应的制式共享频点,则从所述接入设备所在地理区域选择一其他制式本地接入设备对应的制式共享频点共享给所述接入设备。
- 根据权利要求6所述的频谱资源共享的方法,其中,所述动态频点分配类APP预先为每一制式接入设备创建对应制式的频点池;当所选APP为动态频点分配类APP,所述频谱资源信息为频点资源申请;所选动态频点分配类APP执行将所述接入设备的空闲频谱资源定义为所述接入设备的对应制式共享频谱资源包括:所选动态频点分配类APP根据所述频段资源申请,定义所述接入设备为本地接入设备;并定义所述接入设备的空闲频点为所述接入设备的对应制式共享频点,将所述共享频点纳入对应制式的频点池内。
- 根据权利要求6所述的频谱资源共享的方法,其中,当所选APP为动态频点分配类APP,所述频谱资源信息为频点资源申请;所选动态频点分配类APP执行将所述接入设备所在地理区域的其他制式共享频谱资源共享给所述接入设备的操作为:所选动态频点分配类APP根据所述频段资源申请,定义所述接入设备为本地接入设备;实时监测所述接入设备所在地理区域其他制式本地接入设备对应制式的频点池M中是否存在共享频点;当监测到所述频点池M存在共享频点,则计算所述频点池M中的每个共享频点的对应制式本地接入设备所在小区与所述接入设备所在小区间的干扰值;将最小干扰值对应的共享频点分配给所述接入设备。
- 根据权利要求1至10任一项所述的频谱资源共享的方法,还包括:实时监测每一个APP的负荷情况,当某一APP的负荷值达到该类APP的最大负荷量,则创建一个该类型的APP,供后续根据接入设备发送的频谱资源信息和所述APP种类选择策略进行选择。
- 根据权利要求1至10任一项所述的频谱资源共享的方法,其中,还包括:实时监测每一个APP的运行状态;当某一APP出现故障,则创建一个该类型的新APP,并向该新APP反馈故障APP的本地接入设备的基本信息;所述新APP根据所述基本信息,向每个本地接入设备获取相应的特性数据,以达到与故障APP出现故障之前的状态。
- 一种频谱资源共享的装置,包括:确认模块,设置为根据接入设备发送的频谱资源信息,确定所述接入设备的制式种类和所述频谱资源信息类型;处理模块,设置为当所述频谱资源信息为频谱资源释放请求,将所述接入设备的空闲频谱资源定义为所述接入设备的对应制式共享频谱资源,供所述接入设备所在地理区域的频谱资源紧张的其他制式接入设备使用。
- 根据权利要求13所述的频谱资源共享的装置,其中,所述处理模块,还设置为当所述频谱资源信息为频谱资源申请,将所述接入设备所在地理区域的其他制式共享频谱资源共享给所述接入设备。
- 根据权利要求13或14所述的频谱资源共享的装置,还包括:创建模块,设置为划分地理区域,针对每一地理区域,创建多种APP模块,以及APP模块种类选择策略。
- 根据权利要求15所述的频谱资源共享的装置,其中,所述确认模块,设置为根据接入设备发送的频谱资源信息,确定所述接入设备的制式种类和所述频谱资源信息类型,根据所述APP模块种类选择策略,从所述多种APP模块中选择一个APP模块;所述处理模块,设置为调用所选APP模块执行当所述频谱资源信息为频谱资源释放请求,将所述接入设备的空闲频谱资源定义为所述接入设备的对应制式共享频谱资源,供所述接入设备所在地理区域的频谱资源紧张的其他制式接入设备使用;当所述频谱资源信息为频谱资源申请,将所述接入设备所在地理区域的其他制式共享频谱资源共享给所述接入设备的操作。
- 根据权利要求16所述的频谱资源共享的装置,其中,所述频谱资源释放请求为以下至少之一:频段资源释放请求、频点资源释放请求;所述频谱资源申请为以下至少之一:频段资源申请、频点资源申请;所述共享频谱资源为 以下至少之一:共享频段、共享频点。
- 根据权利要求17所述的频谱资源共享的装置,其中,所述APP模块包括以下至少之一:带宽级共享类APP单元、频点级共享类APP单元、动态频点分配类APP单元。
- 根据权利要求18所述的频谱资源共享的装置,其中,当所选APP模块为带宽级共享类APP单元,所述频谱资源信息为频段资源申请,所选带宽级共享类APP单元,设置为根据所述频段资源申请,定义所述接入设备为本地接入设备;实时监测所述接入设备所在地理区域是否存在其他制式本地接入设备对应的制式共享频段;当监测到所述接入设备所在地理区域存在其他制式本地接入设备对应的制式共享频段,则从所述接入设备所在地理区域选择一其他制式本地接入设备对应的制式共享频段共享给所述接入设备。
- 根据权利要求18所述的频谱资源共享的装置,其中,当所选APP模块为频点级共享类APP单元,所述频谱资源信息为频点资源申请,所选频点级共享类APP单元,设置为根据所述频段资源申请,定义所述接入设备为本地接入设备;实时监测所述接入设备所在地理区域是否存在其他制式本地接入设备对应的制式共享频点;当监测到所述接入设备所在地理区域存在其他制式本地接入设备对应的制式共享频点,则从所述接入设备所在地理区域选择一其他制式本地接入设备对应的制式共享频点共享给所述接入设备。
- 根据权利要求18所述的频谱资源共享的装置,其中,所述动态频点分配类APP单元,设置为预先为每一制式接入设备创建对应制式的频点池;当所选APP模块为动态频点分配类APP单元,所述频谱资源信息为频点资源申请;则所选动态频点分配类APP单元,设置为根据所述频段资源申请,定义所述接入设备为本地接入设备;并定义所述接入设备的空闲频点为所述接入设备的对应制式共享频点,将所述共享频点纳入对应制式的频点池内。
- 根据权利要求18所述的频谱资源共享的装置,其中,当所选APP模块为动态频点分配类APP单元,所述频谱资源信息为频点资源申请;所选动态频点分配类APP单元,设置为根据所述频段资源申请,定义所述接入设备为本地接入设备;实时监测所述接入设备所在地理区域其他制式本地接入设备对应制式的频点池M中是否存在共享频点;当监测到所述频点池M存在共享频点,则计算所述频点池M中的每个共享频点的对应制式本地接入设备所在小区与所述接入设备所在小区间的干扰值;将最小干扰值对应的共享频点分配给所述接入设备。
- 根据权利要求13至22任一项所述的频谱资源共享的装置,还包括:负荷监测模块,设置为实时监测每一个APP模块的负荷情况,当某一APP模块的负荷值达到该类APP模块的最大负荷量,则调用创建模块创建一个该类型的APP模块,供后续根据接入设备发送的频谱资源信息和所述APP模块种类选择策略进行选择。
- 根据权利要求13至22任一项所述的频谱资源共享的装置,还包括:运行状态监测模块,设置为实时监测每一个APP模块的运行状态;当某一APP模块出现故障,调用创建模块创建一个该类型的新APP模块,并向该新APP模块反馈故障APP模块的本地接入设备的基本信息;所述新APP模块,设置为于根据所述基本信息,向每个本地接入设备获取相应的特性数据,以达到与故障APP模块出现故障之前的状态。
- 一种非暂态存储介质,存储有计算机可执行指令,所述计算机可执行指令设置为执行权利要求1-12任一项所述的频谱资源共享的方法。
- 一种计算机程序产品,所述计算机程序产品包括存储在非暂态计算机可读存储介质上的计算机程序,所述计算机程序包括程序指令,当所述程序指令被计算机执行时,使所述计算机执行权利要求1-12任一项所述的频谱资源共享的方法。
- 一种电子设备,包括至少一个处理器和与所述至少一个处理器通信连接的存储器,所述存储器用于存储可被所述至少一个处理器执行的指令,所述指令被所述至少一个处理器执行时,使所述至少一个处理器执行权利要求1-12任一项所述的频谱资源共享的方法。
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| WO2010091713A1 (en) * | 2009-02-10 | 2010-08-19 | Nokia Siemens Networks Oy | Radio resource allocation for geran-lte co-existence and co-location |
| US20130142129A1 (en) * | 2011-12-06 | 2013-06-06 | Nokia Corporation | Method, apparatus, and computer program product for coexistence management |
| CN103404188A (zh) * | 2012-12-27 | 2013-11-20 | 华为技术有限公司 | 频谱资源共享方法及基站 |
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| WO2010091713A1 (en) * | 2009-02-10 | 2010-08-19 | Nokia Siemens Networks Oy | Radio resource allocation for geran-lte co-existence and co-location |
| US20130142129A1 (en) * | 2011-12-06 | 2013-06-06 | Nokia Corporation | Method, apparatus, and computer program product for coexistence management |
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