Method, device and equipment for determining broadband address idle region and storage medium

By calculating broadband coverage and idle value, and determining the idle broadband address area according to preset conditions, the problem of not being able to accurately determine idle addresses in existing technologies is solved, thus achieving efficient utilization of resources.

CN115915155BActive Publication Date: 2025-11-04CHINA MOBILE GROUP ANHUI +1
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Patent Information

Application Number
CN202110984417.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-08-25
Publication Date
2025-11-04
Estimated Expiration
2041-08-25

AI Technical Summary

Technical Problem

Existing methods cannot accurately determine whether a broadband address user has actually moved in, thus failing to accurately identify the area where idle broadband addresses are located, resulting in a significant waste of address resources within the system.

Method used

By obtaining the number of broadband-reaching users and broadband addresses in the region and sub-region, the broadband coverage rate and idle value are calculated. Idle areas are determined according to preset conditions, including calculating the ratio and reduction amount, and the address information of idle areas is output.

Benefits of technology

This enables accurate identification of the regions where idle broadband addresses are located, reducing address resource waste within the system and improving address resource utilization efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a method, device, equipment and storage medium for determining a wideband address idle region. The method comprises the following steps: acquiring a region wideband arrived user number and a region wideband address number, and acquiring a sub-region wideband arrived user number and a sub-region wideband address number; determining a wideband address idle value of the operation region or the sub-region according to at least one of the region wideband arrived user number, the region wideband address number, the sub-region wideband arrived user number or the sub-region wideband address number; and determining that the operation region or the sub-region is a wideband address idle region when the wideband address idle value meets a preset condition. The method provided by the embodiment of the application can accurately determine the region where the idle wideband address is located.
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Description

TECHNICAL FIELD

[0001] The application belongs to the technical field of wired broadband, and particularly relates to a method and device for determining a broadband address idle area, equipment and a storage medium. BACKGROUND

[0002] In order to meet the use demand of users on home broadband, operators open a large number of installation addresses for users to install home broadband in a resource coverage area. However, as time goes by, a large number of idle broadband addresses are generated due to user flow and other reasons, causing a large amount of address resource waste in the system.

[0003] In the existing method, the idle condition of the broadband address in the area is determined according to the user residence building address and other information reported when the broadband is installed for the user.

[0004] The existing method cannot determine whether the user of the broadband address is truly moved in, so that the area where the idle broadband address is located cannot be accurately determined. SUMMARY

[0005] The embodiments of the application provide a method and device for determining a broadband address idle area, equipment and a storage medium, which can accurately determine the area where the idle broadband address is located.

[0006] In a first aspect, the embodiments of the application provide a method for determining a broadband address idle area, which comprises:

[0007] Obtaining a number of users reached by a regional broadband and a number of regional broadband addresses, and obtaining a number of users reached by a sub-regional broadband and a number of sub-regional broadband addresses; wherein the number of users reached by the regional broadband represents a number of users staying at night in an operation area, the number of regional broadband addresses represents a number of broadband addresses in the operation area, the operation area comprises at least one sub-area, the number of users reached by the sub-regional broadband represents a number of users staying at night in the sub-area, and the number of sub-regional broadband addresses represents a number of broadband addresses in the sub-area;

[0008] Determining a broadband address idle value of the operation area or the sub-area according to at least one of the number of users reached by the regional broadband, the number of regional broadband addresses, the number of users reached by the sub-regional broadband or the number of sub-regional broadband addresses, wherein the broadband address idle value represents how many idle broadband addresses in the operation area or the sub-area;

[0009] When the broadband address idle value meets a preset condition, the operation area or the sub-area is determined as a broadband address idle area.

[0010] In a possible implementation, the operation area includes at least one cell, the sub-area is a building in the cell, the area broadband user quantity includes a cell broadband user quantity, the area broadband address quantity includes a cell broadband address quantity, the sub-area broadband user quantity includes a building broadband user quantity, and the sub-area broadband address quantity includes a building broadband address quantity.

[0011] The broadband address idle value of the sub-area is determined according to at least one of the area broadband user quantity, the area broadband address quantity, the sub-area broadband user quantity, or the sub-area broadband address quantity, including:

[0012] A ratio of the cell broadband user quantity and the cell broadband address quantity is calculated to obtain a cell broadband coverage rate.

[0013] A ratio of the building broadband user quantity and the building broadband address quantity is calculated to obtain a building broadband coverage rate of each building.

[0014] A difference between the cell broadband coverage rate and the building broadband coverage rate of each building is calculated to obtain a broadband address idle value of each building.

[0015] In a possible implementation, the preset condition includes that the broadband address idle value is a broadband address idle value in a top N broadband address idle value in a descending order.

[0016] The N is an integer greater than 0.

[0017] In a possible implementation, the operation area includes a signal coverage area of at least one base station, the sub-area is a cell covered by a signal of each base station, the area broadband user quantity includes a first broadband user quantity of the operation area at a first preset time and a second broadband user quantity at a second preset time, the sub-area broadband address quantity includes a first broadband address quantity of the cell at the first preset time and a second broadband address quantity of the cell at the second preset time, and the first preset time is after the second preset time.

[0018] The broadband address idle value of the sub-area is determined according to at least one of the area broadband user quantity, the area broadband address quantity, the sub-area broadband user quantity, or the sub-area broadband address quantity, including:

[0019] A first reduction amount of the first broadband user quantity compared with the second broadband user quantity is calculated.

[0020] When the first reduction amount is greater than or equal to a first preset threshold, a third broadband user quantity of each base station in the operation area at the first preset time and a fourth broadband user quantity at the second preset time are obtained.

[0021] calculating a second reduction amount of the third wideband address quantity compared to the fourth wideband address quantity;

[0022] when the second reduction amount is greater than or equal to a second preset threshold, calculating a difference between the second wideband address quantity and the first wideband address quantity as the reduction amount of the wideband address quantity of the cell;

[0023] for each cell, calculating a ratio of the reduction amount of the wideband address quantity of the cell to the second preset time wideband address quantity as the wideband address idle value of each cell.

[0024] In a possible implementation, the preset condition includes that the wideband address idle value is greater than or equal to a third preset threshold.

[0025] In a possible implementation, the operation area includes a cell, the sub-area is a building in the cell, the area wideband access user quantity includes a fifth wideband access user quantity of the cell at a first preset time and a sixth wideband access user quantity of the cell at a second preset time, the sub-area wideband address quantity includes a third wideband address quantity of all buildings in the cell at the first preset time and a fourth wideband address quantity of all buildings in the cell at the second preset time, and the first preset time is after the second preset time.

[0026] determining the wideband address idle value of the operation area according to at least one of the area wideband access user quantity, the area wideband address quantity, the sub-area wideband access user quantity, or the sub-area wideband address quantity, includes:

[0027] calculating a third reduction amount or a first increase amount of the fifth wideband access user quantity compared to the sixth wideband access user quantity;

[0028] when the third reduction amount or the first increase amount is less than or equal to a fourth preset threshold, obtaining a first wideband binding number quantity of the cell added between the first preset time and the second preset time, and obtaining a second wideband binding number quantity of the cell added between the second preset time and a third preset time, the second preset time being after the third preset time;

[0029] calculating a second increase amount of the first wideband binding number quantity compared to the second wideband binding number quantity;

[0030] when the second increase amount is less than or equal to a fifth preset threshold, calculating a third increase amount of the third wideband address quantity compared to the fourth wideband address quantity;

[0031] when the third increase amount is greater than or equal to a sixth preset threshold, obtaining a quantity of abandoned wideband addresses added between the first preset time and the second preset time in the cell as the wideband address idle value of the cell.

[0032] In a possible implementation, the preset condition comprises that the wideband address idle value is less than or equal to a seventh preset threshold.

[0033] In a possible implementation, the method further comprises:

[0034] when the wideband address idle region is a building, outputting address information of the building and address information of a cell where the building is located;

[0035] when the wideband address idle region is a cell, outputting address information of the cell and address information of a building in the cell.

[0036] In a second aspect, an embodiment of the present application provides a device for determining a wideband address idle region, and the device comprises:

[0037] The obtaining module is configured to obtain a number of wideband users reached in a region and a number of wideband addresses in the region, and obtain a number of wideband users reached in a sub-region and a number of wideband addresses in the sub-region; wherein the number of wideband users reached in the region represents a number of users staying in the region at night, the number of wideband addresses in the region represents a number of wideband addresses in the region, the region comprises at least one sub-region, the number of wideband users reached in the sub-region represents a number of users staying in the sub-region at night, and the number of wideband addresses in the sub-region represents a number of wideband addresses in the sub-region.

[0038] The determining module is configured to determine a wideband address idle value of the region or the sub-region according to at least one of the number of wideband users reached in the region, the number of wideband addresses in the region, the number of wideband users reached in the sub-region, or the number of wideband addresses in the sub-region, wherein the wideband address idle value represents how many wideband addresses are idle in the region or the sub-region; and determine that the region or the sub-region is a wideband address idle region when the wideband address idle value satisfies a preset condition.

[0039] In a third aspect, an embodiment of the present application provides an electronic device, which comprises a processor and a memory storing computer program instructions; and the processor implements the method in the first aspect or any possible implementation manner of the first aspect when executing the computer program instructions.

[0040] In a fourth aspect, an embodiment of the present application provides a computer readable storage medium, which stores computer program instructions, and the computer program instructions are executed by a processor to implement the method in the first aspect or any possible implementation manner of the first aspect.

[0041] The technical scheme provided by the embodiment of the present application at least brings the following beneficial effects:

[0042] The embodiment of the present application determines the real number of users of the broadband address by acquiring the number of users reached by the regional broadband and the number of regional broadband addresses, and acquiring the number of users reached by the sub-regional broadband and the number of sub-regional broadband addresses. Then, the idle value of the broadband address of the operation region or sub-region is determined according to at least one of the number of users reached by the regional broadband, the number of regional broadband addresses, the number of users reached by the sub-regional broadband or the number of sub-regional broadband addresses. The idle value of the broadband address represents how many broadband addresses are idle in the operation region or sub-region. Thus, the number of idle broadband addresses in the operation region or sub-region can be intuitively represented by the idle value of the broadband address. When the idle value of the broadband address meets a preset condition, the operation region or sub-region is determined as an idle broadband address region, thereby accurately determining the region where the idle broadband address is located. BRIEF DESCRIPTION OF DRAWINGS

[0043] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the drawings required to be used in the embodiments of the present application will be briefly introduced. For those skilled in the art, other drawings can also be obtained without creative labor on the premise of not paying the creative labor.

[0044] Figure 1 is a flow diagram of a method for determining an idle broadband address region provided by the embodiments of the present application;

[0045] Figure 2 is a structural schematic diagram of a device for determining an idle broadband address region provided by the embodiments of the present application;

[0046] Figure 3 is a hardware structural schematic diagram of an electronic device provided by the embodiments of the present application. DETAILED DESCRIPTION

[0047] The features and exemplary embodiments of various aspects of the present application will be described in detail below. In order to make the purpose, technical solutions and advantages of the present application more clear and apparent, the present application will be further described in detail below in combination with the drawings and specific embodiments. It should be understood that the specific embodiments described herein are only configured to explain the present application, and are not configured to limit the present application. The present application can be implemented without some of the specific details for those skilled in the art. The following description of the embodiments is only to provide a better understanding of the present application by showing examples of the present application.

[0048] It is to be noted that, in the present document, relational terms such as first and second and the like can be used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Moreover, the terms "comprises", "comprising", or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but can include other elements not expressly listed or inherent to such process, method, article, or apparatus. An element proceeded by "comprises... a" does not, without more constraints, exclude the presence of additional identical elements in the process, method, article, or apparatus that comprises the element.

[0049] The existing determination of the idle broadband address region is based on the user's registered building address and other information reported when installing the broadband for the user to judge the idle condition of the broadband address in the region. However, due to the flow of users and other reasons, the user of the broadband address may not be the real resident, so that the idle broadband address region cannot be accurately determined.

[0050] Based on the above problems, the embodiment of the present application provides a method for determining the idle region of the broadband address. The number of users staying overnight in the operation region or sub-region is taken as the number of user arrivals to reflect the number of real users. At least one of the number of broadband addresses in the region, the number of broadband arrivals in the region, the number of broadband addresses in the sub-region, or the number of broadband arrivals in the sub-region is used to accurately determine the idle region of the broadband address.

[0051] The execution subject of the method provided by the embodiment of the present application can be a server or other device with data transmission and processing capabilities.

[0052] The method provided by the embodiment of the present application will be described in detail below. Figure 1 The method for determining the idle region of the broadband address provided by the embodiment of the present application will be described in detail.

[0053] As shown in the method, the method can include steps S110-S130. Figure 1

[0054] S110, obtaining the number of broadband arrivals in the region and the number of broadband addresses in the region, and obtaining the number of broadband arrivals in the sub-region and the number of broadband addresses in the sub-region.

[0055] The number of broadband arrivals in the region represents the number of users staying overnight in the operation region, the number of broadband addresses in the region represents the number of broadband addresses in the operation region, the operation region includes at least one sub-region, the number of broadband arrivals in the sub-region represents the number of users staying overnight in the sub-region, and the number of broadband addresses in the sub-region represents the number of broadband addresses in the sub-region. ​

[0056] The operation area refers to an area divided by an operator for marketing, which can be an area including at least one base station, an area including at least one cell, or the like.

[0057] The sub-area refers to an area in the operation area, which can be a cell within the signal coverage of one base station, or an area such as a building in a cell.

[0058] The server obtains the number of users staying overnight in the operation area from the database as the number of broadband-reached users in the area, obtains the number of broadband addresses in the operation area from the system of the operator as the number of broadband addresses in the area, obtains the number of users staying overnight in the sub-area from the database as the number of broadband-reached users in the sub-domain, and obtains the number of broadband addresses in the sub-area from the system of the operator as the number of broadband addresses in the sub-area.

[0059] In one example, the database is a Greenplum database, and the system is a Product Business Support System (PBOSS). The server obtains the number of users staying overnight in the operation area from the Greenplum database as the number of broadband-reached users in the area, obtains the number of broadband addresses in the operation area from the PBOSS system of the operator as the number of broadband addresses in the area, obtains the number of users staying overnight in the sub-area from the Greenplum database as the number of broadband-reached users in the sub-domain, and obtains the number of broadband addresses in the sub-area from the PBOSS system of the operator as the number of broadband addresses in the sub-area.

[0060] The number of users staying overnight in the operation area and the number of users staying overnight in the sub-area obtained in S110 can reflect the actual number of users living in the area where the broadband addresses are located.

[0061] S120, determining the broadband address idle value of the operation area or the sub-area according to at least one of the number of broadband-reached users in the area, the number of broadband addresses in the area, the number of broadband-reached users in the sub-domain, or the number of broadband addresses in the sub-area.

[0062] The broadband address idle value represents how many broadband addresses are idle in the operation area or the sub-area.

[0063] The broadband address idle value is an evaluation value of the number of idle broadband addresses in the operation area or the sub-area. The larger the broadband address idle value is, the more broadband addresses are idle in the area. The smaller the broadband address idle value is, the fewer broadband addresses are idle in the area.

[0064] S130, determining that the operation area or the sub-area is an idle broadband address area when the broadband address idle value meets a preset condition.

[0065] The preset condition can be greater than a preset threshold value, etc.

[0066] The greater the broadband address idle value is, the more broadband addresses are idle in the region. When the number of idle broadband addresses reaches a certain number, the broadband address idle value satisfies the preset condition, and the region is determined as a broadband address idle region.

[0067] The method provided by the embodiments of the present application determines the number of real users of broadband addresses by obtaining the number of users reached by broadband in a region and the number of broadband addresses in the region, and obtaining the number of users reached by broadband in a sub-region and the number of broadband addresses in the sub-region. Then, the broadband address idle value of the operation region or the sub-region is determined according to at least one of the number of users reached by broadband in the region, the number of broadband addresses in the region, the number of users reached by broadband in the sub-region, or the number of broadband addresses in the sub-region. The broadband address idle value represents how many broadband addresses are idle in the operation region or the sub-region. Thus, the number of broadband addresses idle in the operation region or the sub-region can be directly represented by the broadband address idle value. When the broadband address idle value satisfies the preset condition, the operation region or the sub-region is determined as a broadband address idle region, and the region in which the broadband addresses are idle is accurately determined.

[0068] In some embodiments, the operation region includes at least one cell, the sub-region is a building in the cell, the number of users reached by broadband in the region includes the number of users reached by broadband in the cell, the number of broadband addresses in the region includes the number of broadband addresses in the cell, the number of users reached by broadband in the sub-region includes the number of users reached by broadband in the building, and the number of broadband addresses in the sub-region includes the number of broadband addresses in the building.

[0069] The broadband address idle value of the sub-region is determined according to at least one of the number of users reached by broadband in the region, the number of broadband addresses in the region, the number of users reached by broadband in the sub-region, or the number of broadband addresses in the sub-region, including the following steps:

[0070] First, the ratio of the number of users reached by broadband in the cell to the number of broadband addresses in the cell is calculated to obtain the cell broadband coverage rate.

[0071] Then, the ratio of the number of users reached by broadband in the building to the number of broadband addresses in the building is calculated to obtain the building broadband coverage rate of each building.

[0072] Finally, the difference between the cell broadband coverage rate and the building broadband coverage rate of each building is calculated to obtain the broadband address idle value of each building.

[0073] The broadband address idle value of each building represents how many broadband addresses are idle in each building. The greater the broadband address idle value, the more broadband addresses are idle in the building. The smaller the broadband address idle value, the fewer broadband addresses are idle in the building.

[0074] The embodiment of the present application calculates the cell broadband coverage rate according to the number of users reached by the cell broadband and the number of broadband addresses of the cell, calculates the building broadband coverage rate of each building according to the ratio of the number of users reached by the building broadband and the number of broadband addresses of the building, and then calculates the difference between the cell broadband coverage rate and the building broadband coverage rate of each building to determine how many broadband addresses are idle in each building. Therefore, which buildings are broadband address idle areas can be determined according to how many broadband addresses are idle in each building.

[0075] In some embodiments, the preset condition includes that the broadband address idle value is a broadband address idle value in the first N broadband address idle values in descending order.

[0076] The N is an integer greater than 0.

[0077] The broadband address idle values of the plurality of buildings in the cell are sorted in descending order,

[0078] The buildings corresponding to the first N broadband address idle values are arranged as broadband address idle areas.

[0079] The method provided by the embodiment of the present application sorts the broadband address idle values of the buildings in descending order, determines that the buildings corresponding to the broadband address idle values in the first N broadband address idle values are broadband address idle values, and accurately determines the area where the idle broadband addresses are located.

[0080] In some embodiments, the operation area includes a signal coverage area of at least one base station, the sub-area is a cell covered by the signal of each base station, the number of broadband users reached in the area includes a first number of broadband users reached in the operation area at a first preset time and a second number of broadband users reached at a second preset time, the number of broadband addresses in the sub-area includes a first number of broadband addresses in the cell at the first preset time and a second number of broadband addresses in the cell at the second preset time, and the first preset time is after the second preset time.

[0081] In some examples, some operation areas are demolition plots. The broadband addresses in these demolition plots are not discarded. The population in these demolition plots will significantly decrease in about one year, and the number of broadband users actually reached will sharply decrease, resulting in the generation of broadband address idle areas.

[0082] The broadband address idle value of the sub-region is determined according to at least one of the number of broadband users in the sub-region, the number of broadband addresses in the sub-region, the number of broadband users in the sub-area, or the number of broadband addresses in the sub-area, and comprises the following steps.

[0083] First, a first reduction amount of the first number of broadband users compared to the second number of broadband users is calculated.

[0084] The first reduction amount can be a difference between the second number of broadband users and the first number of broadband users in the signal coverage area of the at least one base station, or a percentage of the reduction of the first number of broadband users compared to the second number of broadband users.

[0085] That is, the first reduction amount = the second number of broadband users - the first number of broadband users, or the first reduction amount = (the second number of broadband users - the first number of broadband users) / the second number of broadband users.

[0086] In one example, the first preset time is the current date, such as January 1, 2023, and the second preset time is the date one year ago, such as January 1, 2022. Then, the first reduction amount = the second number of broadband users in 2022 - the first number of broadband users in 2023, or the first reduction amount = (the number of broadband users in 2022 - the number of broadband users in 2023) / the second number of broadband users in 2022.

[0087] Then, when the first reduction amount is greater than or equal to a first preset threshold, the third number of broadband users at the first preset time and the fourth number of broadband users at the second preset time of each base station in the operation area are obtained.

[0088] When the first reduction amount is greater than or equal to the first preset threshold, it indicates that the number of broadband users in the operation area has decreased sharply, and the operation area is likely to be a demolition plot.

[0089] In one example, when the first reduction amount is a difference between the second number of broadband users and the first number of broadband users in the signal coverage area of the at least one base station, the first preset threshold is 200. When the first reduction amount is greater than or equal to 200, the third number of broadband users at the first preset time and the fourth number of broadband users at the second preset time of each base station in the operation area are obtained.

[0090] In one example, when the first reduction amount is a percentage of the reduction of the first number of broadband users compared to the second number of broadband users, the first preset threshold is 20%. When the first reduction amount is greater than or equal to 20%, the third number of broadband users at the first preset time and the fourth number of broadband users at the second preset time of each base station in the operation area are obtained.

[0091] Then, a second reduction amount of the third broadband arriving user number compared to the fourth broadband arriving user number is calculated.

[0092] The second reduction amount can be a difference between the fourth broadband arriving user number and the third broadband arriving user number within the signal coverage area of the same base station, or a percentage of reduction of the third broadband arriving user number compared to the fourth broadband arriving user number.

[0093] That is, the second reduction amount = the fourth broadband arriving user number - the third broadband arriving user number, or the second reduction amount = (the fourth broadband arriving user number - the third broadband arriving user number) / the fourth broadband arriving user number.

[0094] In one example, the first preset time is the current date, and the second preset time is the date one year ago. Then, the third broadband arriving user number of each base station in the operation area at the first preset time is the broadband arriving user number of each base station this year, and the fourth broadband arriving user number at the second preset time is the broadband arriving user number of each base station last year. Then, the second reduction amount = the broadband arriving user number last year - the broadband arriving user number this year, or the second reduction amount = (the broadband arriving user number last year - the broadband arriving user number this year) / the broadband arriving user number last year.

[0095] Then, when the second reduction amount is greater than or equal to a second preset threshold value, a difference between the second broadband address number and the first broadband address number is calculated to obtain a reduction amount of the broadband address number of the cell.

[0096] In one example, when the second reduction amount is a difference between the fourth broadband arriving user number and the third broadband arriving user number within the signal coverage area of the same base station, the second preset threshold value is 50. When the second reduction amount is greater than or equal to 50, a difference between the second broadband address number and the first broadband address number is calculated to obtain a reduction amount of the broadband address number of the cell.

[0097] In one example, when the second reduction amount is a percentage of reduction of the third broadband arriving user number compared to the fourth broadband arriving user number, the first preset threshold value is 60%. When the second reduction amount is greater than or equal to 60%, a difference between the second broadband address number and the first broadband address number is calculated to obtain a reduction amount of the broadband address number of the cell.

[0098] In one example, the first preset time is the current date, and the second preset time is the date one year ago. Then, a difference between the broadband address number last year and the broadband address number this year in each cell is calculated to obtain a reduction amount of the broadband address number of the cell.

[0099] In one example, the reduction amount of the broadband address quantity of the cell can include the number of broadband off-line users and the number of broadband moving users in the cell in the time from last year to this year.

[0100] Finally, for each cell, a ratio of the reduction amount of the broadband address quantity of the cell to the broadband address quantity in the second preset time is calculated as the broadband address idle value of each cell.

[0101] In one example, for each cell, a ratio of a sum of the number of broadband off-line users and the number of broadband moving users in the cell in the time from last year to this year to the broadband address quantity in the cell last year is calculated as the broadband address idle value of the cell.

[0102] The broadband address idle value of the cell represents how many broadband addresses are idle in the cell.

[0103] The method provided by the embodiments of the present application calculates how many broadband addresses are idle in each cell, so that which cells are broadband address idle areas can be determined according to how many broadband addresses are idle in each cell.

[0104] In some embodiments, the preset condition includes that the broadband address idle value is greater than or equal to a third preset threshold.

[0105] In one example, the third preset threshold is 40%, and when the broadband address idle value of the cell is greater than or equal to 40%, the cell is a broadband address idle area.

[0106] When the number of idle broadband addresses of the cell is greater than the third preset threshold, the cell is a broadband address idle area, that is, the cell is a demolition plot.

[0107] The method provided by the embodiments of the present application determines the cell as a broadband address idle area when the broadband address idle value of the cell is greater than or equal to the third preset threshold, and accurately determines the area where the idle broadband addresses are located.

[0108] In some embodiments, the operation area includes a cell, the sub-area is a building in the cell, the area broadband arrival user quantity includes a fifth broadband arrival user quantity of the cell in a first preset time and a sixth broadband arrival user quantity of the cell in a second preset time, the sub-area broadband address quantity includes a third broadband address quantity of all buildings in the cell in the first preset time and a fourth broadband address quantity of all buildings in the cell in the second preset time, and the first preset time is after the second preset time.

[0109] In one example, part of the broadband addresses in some cells are built and shared in the early stage, and are replaced by self-built in the later stage of construction, but the broadband addresses built and shared are not discarded in time, resulting in idle broadband addresses.

[0110] The broadband address idle value of the operation area is determined according to at least one of the number of broadband users in the area, the number of broadband addresses in the area, the number of broadband users in the sub-area, or the number of broadband addresses in the sub-area, including the following steps.

[0111] First, a third reduction or a first increase of the fifth broadband user number compared to the sixth broadband user number is calculated.

[0112] The third reduction can be the percentage of the reduction of the fifth broadband user number compared to the sixth broadband user number.

[0113] The first increase can be the percentage of the increase of the fifth broadband user number compared to the sixth broadband user number.

[0114] Then, when the third reduction or the first increase is less than or equal to a fourth preset threshold, the number of first broadband binding numbers newly added by the cell between a first preset time and a second preset time is obtained, and the number of second broadband binding numbers newly added by the cell between the second preset time and a third preset time is obtained.

[0115] The second preset time is after the third preset time.

[0116] The number of first broadband binding numbers can be the number of broadband user binding numbers newly added between the first preset time and the second preset time.

[0117] The number of second broadband binding numbers can be the number of broadband user binding numbers newly added between the second preset time and the third preset time.

[0118] In one example, the fourth preset threshold is 5%, the first preset time is the current date, the second preset time is the date one year ago, and the third preset time is the date of the previous year.

[0119] When the percentage of the reduction of the fifth broadband user number compared to the sixth broadband user number is less than or equal to 5%, the number of first broadband binding numbers newly added by the cell between this year and last year is obtained, and the number of second broadband binding numbers newly added by the cell between last year and the previous year is obtained.

[0120] Then, a second increase of the number of first broadband binding numbers compared to the number of second broadband binding numbers is calculated.

[0121] The second increase can be a percentage of increase of the first wideband binding number quantity compared to the second wideband binding number quantity, the second increase = (the first wideband binding number quantity - the second wideband binding number quantity) / the second wideband binding number quantity.

[0122] Then, when the second increase is less than or equal to the fifth preset threshold, a third increase of the third wideband address quantity compared to the fourth wideband address quantity is calculated.

[0123] The third increase can be a percentage of increase of the third wideband binding number quantity compared to the fourth wideband binding number quantity, the third increase = (the third wideband binding number quantity - the fourth wideband binding number quantity) / the third wideband binding number quantity.

[0124] In some examples, the fifth preset threshold is 10%, the third wideband address quantity represents the wideband address quantity of all buildings in the cell in this year, and the fourth wideband address quantity represents the wideband address quantity of all buildings in the cell in last year. When the percentage of increase of the first wideband binding number quantity compared to the second wideband binding number quantity is less than or equal to 10%, the percentage of increase of the wideband address quantity of all buildings in the cell in this year compared to the wideband address quantity of all buildings in the cell in last year is calculated.

[0125] Then, when the third increase is greater than or equal to the sixth preset threshold, the number of abandoned wideband addresses newly added in the cell between the first preset time and the second preset time is obtained as the wideband address idle value of the cell.

[0126] The number of abandoned wideband addresses represents the number of wideband addresses that have been abandoned and recycled in the cell.

[0127] In one example, the number of abandoned wideband addresses newly added in the cell between the first preset time and the second preset time can be the number of abandoned wideband addresses newly added in the cell between this year and last year. The sixth preset threshold is 20%, and when the percentage of increase of the wideband address quantity of all buildings in the cell in this year compared to the wideband address quantity of all buildings in the cell in last year is greater than or equal to 20%, the number of abandoned wideband addresses newly added in the cell between this year and last year is obtained as the wideband address idle value of the cell.

[0128] The method provided by the embodiments of the present application can determine which buildings are the wideband address idle area according to the amount of idle wideband addresses in each building.

[0129] In some embodiments, the preset condition includes that the wideband address idle value is less than or equal to a seventh preset threshold.

[0130] In one example, the seventh preset threshold is 20, and when the broadband address idle value of the building is less than or equal to 20, the building is determined as the broadband address idle area.

[0131] The method provided by the embodiments of the present application determines the building as the broadband address idle area when the broadband address idle value of the building is greater than or equal to the seventh preset threshold, and accurately determines the area where the idle broadband address is located.

[0132] In some embodiments, when the broadband address idle area is a building, the address information of the building and the address information of the cell where the building is located are output.

[0133] When the broadband address idle area is a cell, the address information of the cell and the address information of the building in the cell are output.

[0134] The method provided by the embodiments of the present application outputs the address information of the cell of the broadband idle area and the address information of the building in the cell, so that the technical personnel can generate a construction order according to the address information of the cell and the address information of the building in the cell, discard the idle broadband address, and reduce the number of idle broadband addresses.

[0135] The embodiments of the present application also provide a device for determining a broadband address idle area, as shown in Figure 2 The device can include an acquisition module 210 and a determination module 220.

[0136] The acquisition module 210 is configured to acquire the number of users reached by the regional broadband and the number of broadband addresses in the region, and acquire the number of users reached by the sub-regional broadband and the number of broadband addresses in the sub-region.

[0137] The number of users reached by the regional broadband represents the number of users staying at night in the operation region, the number of broadband addresses in the region represents the number of broadband addresses in the operation region, the operation region includes at least one sub-region, the number of users reached by the sub-regional broadband represents the number of users staying at night in the sub-region, and the number of broadband addresses in the sub-region represents the number of broadband addresses in the sub-region.

[0138] The determination module 220 is configured to determine the broadband address idle value of the operation region or the sub-region according to at least one of the number of users reached by the regional broadband, the number of broadband addresses in the region, the number of users reached by the sub-regional broadband, or the number of broadband addresses in the sub-region, the broadband address idle value representing how many broadband addresses are idle in the operation region or the sub-region; and when the broadband address idle value meets a preset condition, determine the operation region or the sub-region as the broadband address idle area.

[0139] The device provided by the embodiments of the present application determines the number of real users of the broadband address by obtaining the number of broadband users in a region and the number of broadband addresses in the region, and obtaining the number of broadband users in a sub-region and the number of broadband addresses in the sub-region. Then, the idle value of the broadband address in the operation region or the sub-region is determined according to at least one of the number of broadband users in the region, the number of broadband addresses in the region, the number of broadband users in the sub-region, or the number of broadband addresses in the sub-region. The idle value of the broadband address represents the number of idle broadband addresses in the operation region or the sub-region. Therefore, the number of idle broadband addresses in the operation region or the sub-region can be intuitively represented by the idle value of the broadband address. When the idle value of the broadband address meets a preset condition, the operation region or the sub-region is determined as an idle broadband address region, and the region in which the idle broadband address is located is accurately determined.

[0140] In some embodiments, the operation region includes at least one cell, the sub-region is a building in the cell, the number of broadband users in the region includes the number of broadband users in the cell, the number of broadband addresses in the region includes the number of broadband addresses in the cell, the number of broadband users in the sub-region includes the number of broadband users in the building, and the number of broadband addresses in the sub-region includes the number of broadband addresses in the building.

[0141] The determining module 220 can include a calculating unit.

[0142] The calculating unit is configured to calculate the ratio of the number of broadband users in the cell to the number of broadband addresses in the cell to obtain the broadband coverage rate of the cell, calculate the ratio of the number of broadband users in the building to the number of broadband addresses in the building to obtain the broadband coverage rate of each building, and calculate the difference between the broadband coverage rate of the cell and the broadband coverage rate of each building to obtain the idle value of the broadband address of each building.

[0143] The preset condition includes the idle value of the broadband address in the first N idle values of the broadband address in the descending order.

[0144] N is an integer greater than 0.

[0145] The device provided by the embodiments of the present application calculates the broadband coverage rate of the cell according to the number of broadband users in the cell and the number of broadband addresses in the cell, calculates the broadband coverage rate of each building according to the number of broadband users in the building and the number of broadband addresses in the building, and then calculates the difference between the broadband coverage rate of the cell and the broadband coverage rate of each building to determine the number of idle broadband addresses in each building. The broadband address idle values of the buildings are sorted in descending order, and the buildings corresponding to the broadband address idle values in the first N broadband address idle values are determined as the idle values of the broadband address. The region in which the idle broadband address is located is accurately determined.

[0146] In some embodiments, the operation area includes a signal coverage area of at least one base station, the sub-area is a cell of the signal coverage of each base station, the area wideband arrived user quantity includes a first wideband arrived user quantity of the operation area at a first preset time and a second wideband arrived user quantity at a second preset time, the sub-area wideband address quantity includes a first wideband address quantity of the cell at the first preset time and a second wideband address quantity of the cell at the second preset time, and the first preset time is after the second preset time.

[0147] The determining module 220 can include a calculating unit and an obtaining unit.

[0148] The calculating unit is configured to calculate a first reduction amount of the first wideband arrived user quantity compared with the second wideband arrived user quantity.

[0149] The obtaining unit is configured to, when the first reduction amount is greater than or equal to a first preset threshold, obtain a third wideband arrived user quantity of each base station in the operation area at the first preset time and a fourth wideband arrived user quantity at the second preset time.

[0150] The calculating unit is further configured to calculate a second reduction amount of the third wideband arrived user quantity compared with the fourth wideband arrived user quantity, and calculate a difference between the second wideband address quantity and the first wideband address quantity as a reduction amount of the wideband address quantity of the cell when the second reduction amount is greater than or equal to a second preset threshold, and calculate, for each cell, a ratio of the reduction amount of the wideband address quantity of the cell to the wideband address quantity at the second preset time as a wideband address idle value of each cell.

[0151] The preset condition includes that the wideband address idle value is greater than or equal to a third preset threshold.

[0152] The device provided by the embodiments of the present application calculates the wideband address idle value of each cell, and determines the cell as a wideband address idle area when the wideband address idle value of the cell is greater than or equal to a third preset threshold, thereby accurately determining the area where the idle wideband address is located.

[0153] In some embodiments, the operation area includes a cell, the sub-area is a building in the cell, the area wideband arrived user quantity includes a fifth wideband arrived user quantity of the cell at a first preset time and a sixth wideband arrived user quantity at a second preset time, the sub-area wideband address quantity includes a third wideband address quantity of all buildings in the cell at the first preset time and a fourth wideband address quantity of all buildings in the cell at the second preset time, and the first preset time is after the second preset time.

[0154] The determining unit 220 can include a calculating unit and an obtaining unit.

[0155] The computing unit is configured to calculate a third decrease amount or a first increase amount of the fifth wideband arriving user quantity compared with the sixth wideband arriving user quantity.

[0156] The obtaining unit is configured to obtain a first wideband bound number quantity newly added by the cell between the first preset time and the second preset time when the third decrease amount or the first increase amount is less than or equal to the fourth preset threshold, and obtain a second wideband bound number quantity newly added by the cell between the second preset time and the third preset time, the second preset time being after the third preset time.

[0157] The computing unit is further configured to calculate a second increase amount of the first wideband bound number quantity compared with the second wideband bound number quantity, and calculate a third increase amount of the third wideband address quantity compared with the fourth wideband address quantity when the second increase amount is less than or equal to a fifth preset threshold.

[0158] The obtaining unit is further configured to obtain a quantity of abandoned wideband addresses newly added by the cell between the first preset time and the second preset time as the wideband address idle value of the cell when the third increase amount is greater than or equal to a sixth preset threshold.

[0159] The preset condition includes that the wideband address idle value is less than or equal to a seventh preset threshold.

[0160] The device provided by the embodiment of the present application obtains the wideband address idle value of each building by calculation, and determines the building as the wideband address idle area when the wideband address idle value of the building is greater than or equal to the seventh preset threshold, thereby accurately determining the area where the idle wideband address is located.

[0161] In some embodiments, the device provided by the embodiment of the present application can further include an output module 230.

[0162] The output module 230 is configured to output address information of the building and address information of the cell where the building is located when the wideband address idle area is the building, and output address information of the cell and address information of the building in the cell when the wideband address idle area is the cell.

[0163] The device provided by the embodiment of the present application outputs the address information of the cell of the wideband idle area and the address information of the building in the cell, so that the technical personnel can generate a construction order according to the address information of the cell and the address information of the building in the cell, discard the idle wideband, and reduce the quantity of the idle wideband address.

[0164] The device for determining the wideband address idle area provided by the embodiment of the present application executes each step in the method shown in the Figure 1 The device for determining the wideband address idle area provided by the embodiment of the present application executes each step in the method shown in the

[0165] Figure 3 A hardware structure schematic diagram of an electronic device provided by an embodiment of the present application is shown.

[0166] The electronic device can include a processor 301 and a memory 302 storing computer program instructions.

[0167] Specifically, the processor 301 can include a central processing unit (CPU), or an application specific integrated circuit (ASIC), or one or more integrated circuits configured to implement one or more embodiments of the present application.

[0168] The memory 302 can include a mass storage for data or instructions. By way of example and not limitation, the memory 302 can include a hard disk drive (HDD), a floppy disk drive, a flash memory, an optical disk, a magneto-optical disk, a magnetic tape, or a universal serial bus (USB) drive or a combination of two or more of these. Where appropriate, the memory 302 can include removable or non-removable (or fixed) media. Where appropriate, the memory 302 can be internal or external to the integrated gateway disaster recovery device. In certain embodiments, the memory 302 is non-volatile solid-state memory. In certain embodiments, the memory 302 includes read-only memory (ROM). Where appropriate, this ROM can be mask-programmed ROM, programmable ROM (PROM), erasable PROM (EPROM), electrically erasable PROM (EEPROM), electrically alterable ROM (EAROM), or flash memory, or a combination of two or more of these.

[0169] The processor 301 reads and executes the computer program instructions stored in the memory 302 to implement Figure 1 any one of the methods for determining a wideband address idle region in the illustrated embodiments.

[0170] In one example, the electronic device can further include a communication interface 303 and a bus 310. Wherein, as Figure 3 shown, the processor 301, the memory 302, and the communication interface 303 are connected through the bus 310 and complete communication with each other.

[0171] The communication interface 303 is mainly used to realize the communication between the modules, devices, units and / or equipment in the embodiments of the present application.

[0172] Bus 310 includes hardware, software, or both, to couple electronic devices to each other in a manner that allows information to be passed between or among them. The bus can include an Accelerated Graphics Port (AGP) or other graphics bus, an Enhanced Industry Standard Architecture (EISA) bus, a Front Side Bus (FSB), a HyperTransport (HT) interconnect, an Industry Standard Architecture (ISA) bus, an InfiniBand (IB) interconnect, a Low Pin Count (LPC) bus, a memory bus, a Micro Channel Architecture (MCA) bus, a Peripheral Component Interconnect (PCI) bus, a PCI-Express (PCI-X) bus, a Serial Advanced Technology Attachment (SATA) bus, a Video Electronics Standards Association local (VLB) bus, or another suitable bus or a combination of two or more of these. Where appropriate, bus 310 can include one or more buses. Although the present embodiments describe and show a particular bus, the present embodiments contemplate any suitable bus or interconnect.

[0173] The electronic device can execute the method for determining a wideband address idle region in the embodiments of the present application, thereby achieving the method for determining a wideband address idle region in combination with Figure 1 The method for determining a wideband address idle region is described.

[0174] In addition, in combination with the method for determining a wideband address idle region in the above embodiments, the embodiments of the present application can provide a computer readable storage medium to implement. The computer readable storage medium has computer program instructions stored thereon; the computer program instructions are executed by a processor to implement any one of the methods for determining a wideband address idle region in the above embodiments.

[0175] It needs to be clear that the present application is not limited to the specific configurations and processes described above and shown in the drawings. For the sake of brevity, detailed descriptions of well-known methods are omitted here. In the above embodiments, several specific steps are described and shown as examples. However, the method process of the present application is not limited to the specific steps described and shown, and those skilled in the art can make various changes, modifications and additions, or change the order between steps, after understanding the spirit of the present application.

[0176] The functional blocks shown in the structural block diagrams described above can be implemented as hardware, software, firmware, or a combination thereof. When implemented in hardware, they can be, for example, electronic circuits, application specific integrated circuits (ASICs), appropriate firmware, plug-ins, functional cards, and the like. When implemented in software, the elements of the present application are program or code segments that are used to perform the required tasks. The program or code segments can be stored in a machine-readable medium or transmitted through a data signal carried in a carrier wave over a transmission medium or communication link. A "machine-readable medium" includes any medium that can store or transport information. Examples of machine-readable media include electronic circuits, semiconductor memory devices, ROM, flash memory, erasable ROM (EROM), floppy disks, CD-ROMs, optical disks, hard disks, optical fiber media, radio frequency (RF) links, and the like. The code segments can be downloaded via computer networks such as the Internet, intranets, and the like.

[0177] It should also be noted that the exemplary embodiments mentioned in the present application describe some methods or systems based on a series of steps or devices. However, the present application is not limited to the order of the above steps, that is, the steps can be performed in the order mentioned in the embodiments, or in an order different from that in the embodiments, or several steps can be performed simultaneously.

[0178] The above description is merely a specific implementation of the present application. Those skilled in the art can clearly understand the specific working processes of the above-described system, modules and units for the convenience and brevity of description, which can refer to the corresponding processes in the foregoing method embodiments, which will not be described here. It should be understood that the protection scope of the present application is not limited thereto, and any person skilled in the art can easily think of various equivalent modifications or replacements within the technical scope disclosed in the present application, and these modifications or replacements should be covered within the protection scope of the present application.

Claims

1. A method of determining a broadband address idle region, characterized by, The method comprises: obtaining a regional broadband arrived user quantity and a regional broadband address quantity, and obtaining a sub-regional broadband arrived user quantity and a sub-regional broadband address quantity; wherein the regional broadband arrived user quantity represents a quantity of users camping at night in an operation region, the regional broadband address quantity represents a quantity of broadband addresses in the operation region, the operation region comprises at least one sub-region, the sub-regional broadband arrived user quantity represents a quantity of users camping at night in the sub-region, and the sub-regional broadband address quantity represents a quantity of broadband addresses in the sub-region; the operation region comprises at least one cell, the sub-region is a building in the cell, the regional broadband arrived user quantity comprises a cell broadband arrived user quantity, the regional broadband address quantity comprises a cell broadband address quantity, the sub-regional broadband arrived user quantity comprises a building broadband arrived user quantity, and the sub-regional broadband address quantity comprises a building broadband address quantity; a ratio of the cell broadband arrived user quantity to the cell broadband address quantity is calculated to obtain a cell broadband coverage rate; a ratio of the building broadband arrived user quantity to the building broadband address quantity is calculated to obtain a building broadband coverage rate of each building; and a difference between the cell broadband coverage rate and the building broadband coverage rate of each building is calculated to obtain a broadband address idle value of each building; alternatively, a broadband address idle value of the sub-region is determined according to the regional broadband arrived user quantity and the sub-regional broadband address quantity; a broadband address idle value of the operation region is determined according to the regional broadband arrived user quantity and the sub-regional broadband address quantity, and the broadband address idle value represents how many broadband addresses are idle in the operation region or the sub-region; when the broadband address idle value satisfies a preset condition, the operation region or the sub-region is determined as a broadband address idle region.

2. The method of claim 1, wherein, the preset condition comprises that the broadband address idle value is a broadband address limit value in a top N broadband address idle value in a descending order; wherein N is an integer greater than 0.

3. The method of claim 1, wherein, the operation region comprises a signal coverage region of at least one base station, the sub-region is a cell covered by a signal of each base station, the regional broadband arrived user quantity comprises a first broadband arrived user quantity at a first preset time and a second broadband arrived user quantity at a second preset time in the operation region, the sub-regional broadband address quantity comprises a first broadband address quantity at the first preset time in the cell and a second broadband address quantity at the second preset time in the cell, and the first preset time is after the second preset time; the determination of the broadband address idle value of the sub-region according to the regional broadband arrived user quantity and the sub-regional broadband address quantity comprises: calculating a first reduction amount of the first broadband arrived user quantity compared with the second broadband arrived user quantity; when the first reduction amount is greater than or equal to a first preset threshold, obtaining a third broadband arriving user number of each base station in the operation area at the first preset time and a fourth broadband arriving user number at the second preset time; calculating a second reduction amount of the third broadband arriving user number compared to the fourth broadband arriving user number; when the second reduction amount is greater than or equal to a second preset threshold, calculating a difference between the second broadband address number and the first broadband address number to obtain a reduction amount of the broadband address number of the cell; for each cell, calculating a ratio of the reduction amount of the broadband address number of the cell to the broadband address number at the second preset time as the broadband address idle value of each cell.

4. The method of claim 3, wherein, The preset condition includes that the broadband address idle value is greater than or equal to a third preset threshold.

5. The method of claim 1, wherein, The operation area includes cells, the sub-area is a building in the cells, the area broadband arriving user number includes a fifth broadband arriving user number of the cells at a first preset time and a sixth broadband arriving user number at a second preset time, the sub-area broadband address number includes a third broadband address number of all the buildings in the cells at the first preset time and a fourth broadband address number of all the buildings in the cells at the second preset time, and the first preset time is after the second preset time. The determination of the broadband address idle value of the operation area according to the area broadband arriving user number and the sub-area broadband address number includes: calculating a third reduction amount or a first increase amount of the fifth broadband arriving user number compared to the sixth broadband arriving user number; when the third reduction amount or the first increase amount is less than or equal to a fourth preset threshold, obtaining a first broadband binding number of the cells added between the first preset time and the second preset time and a second broadband binding number of the cells added between the second preset time and a third preset time, the second preset time being after the third preset time; calculating a second increase amount of the first broadband binding number compared to the second broadband binding number; when the second increase amount is less than or equal to a fifth preset threshold, calculating a third increase amount of the third broadband address number compared to the fourth broadband address number; when the third increase amount is greater than or equal to a sixth preset threshold, obtaining a number of abandoned broadband addresses of the cells added between the first preset time and the second preset time as the broadband address idle value of the cells.

6. The method of claim 5, wherein, The preset condition includes that the broadband address idle value is greater than or equal to a seventh preset threshold.

7. The method according to any one of claims 1 to 6, characterized in that, The method further includes: when the broadband address idle area is a building, outputting address information of the building and address information of a cell where the building is located; when the broadband address idle area is a cell, outputting address information of the cell and address information of a building in the cell.

8. Apparatus for determining a broadband address free region, characterized in that The device includes: The acquisition module is configured to acquire a regional broadband arrived user quantity and a regional broadband address quantity, and acquire a sub-regional broadband arrived user quantity and a sub-regional broadband address quantity; wherein the regional broadband arrived user quantity represents a quantity of users camping at night in an operation region, the regional broadband address quantity represents a quantity of broadband addresses in the operation region, the operation region comprises at least one sub-region, the sub-regional broadband arrived user quantity represents a quantity of users camping at night in the sub-region, and the sub-regional broadband address quantity represents a quantity of broadband addresses in the sub-region; The determination module is configured to determine that the operation region comprises at least one cell, the sub-region is a building in the cell, the regional broadband arrived user quantity comprises a cell broadband arrived user quantity, the regional broadband address quantity comprises a cell broadband address quantity, the sub-regional broadband arrived user quantity comprises a building broadband arrived user quantity, and the sub-regional broadband address quantity comprises a building broadband address quantity; calculate a ratio of the cell broadband arrived user quantity to the cell broadband address quantity to obtain a cell broadband coverage rate; calculate a ratio of the building broadband arrived user quantity to the building broadband address quantity to obtain a building broadband coverage rate of each building; and calculate a difference between the cell broadband coverage rate and the building broadband coverage rate of each building to obtain a broadband address idle value of each building. Alternatively, the broadband address idle value of the sub-region is determined according to the regional broadband arrived user quantity and the sub-regional broadband address quantity. The broadband address idle value of the operation region is determined according to the regional broadband arrived user quantity and the sub-regional broadband address quantity, the broadband address idle value represents how many broadband addresses are idle in the operation region or the sub-region; and when the broadband address idle value satisfies a preset condition, the operation region or the sub-region is determined as a broadband address idle region.

9. An electronic device, comprising: The device comprises a processor and a memory storing computer program instructions; The processor reads and executes the computer program instructions to implement the method for determining a broadband address idle region according to any one of claims 1 to 7.

10. A computer-readable storage medium, characterized in that, The computer readable storage medium stores computer program instructions, and the computer program instructions are executed by the processor to implement the method for determining a broadband address idle region according to any one of claims 1 to 7.

Citation Information

Patent Citations

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    CN112866425A