Network coverage mode determination method and device, electronic equipment and storage medium
By calculating the distance between buildings with poor network coverage in residential communities and their boundaries and base stations, and combining signal frequency differences, network coverage methods are determined, the problem of lack of judgment basis in the prior art is solved, and judgment accuracy and network coverage effect are improved.
Patent Information
- Application Number
- CN202510258926.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-05
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2045-03-05
AI Technical Summary
The prior art lacks a unified judgment basis and standard when judging which network coverage method should be adopted in buildings with poor network coverage in residential communities, which makes it difficult to ensure the accuracy of judgment.
By obtaining the location of the target building, the boundary of the target residential area and the location of the target base station, the first and second distances are calculated, and based on these distances and signal frequency differences, it is determined whether the target building should adopt the internal network coverage equipment or the external base station.
It provides a unified judgment basis and standards, improves the accuracy of judgment results, ensures reasonable choice of network coverage methods, and thus improves network coverage effect.
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Figure CN119997063A_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the field of communications, and in particular to a method, device, electronic device and storage medium for determining a network coverage mode. Background Art
[0002] There are two common mobile network coverage methods for residential areas. One is to deploy network coverage equipment in the residential area, such as indoor distribution systems in buildings, beautification antennas in the community, and antennas between buildings. The other is to deploy base stations outside the residential area to achieve network coverage of buildings in the residential area.
[0003] In order to improve the quality of user networks, for buildings with poor network coverage in residential areas, it is of primary importance to determine which method to use for network coverage. Currently, manual experience is often used for judgment, but this judgment method is subjective, lacks judgment basis and judgment criteria, and its accuracy is difficult to guarantee. Summary of the invention
[0004] The present application provides a method, device, electronic device and storage medium for determining a network coverage mode, which can provide a judgment basis and judgment standard when determining the network coverage mode of a building with poor network coverage, thereby improving the accuracy of the judgment result.
[0005] In order to achieve the above objectives, this application adopts the following technical solutions:
[0006] In a first aspect, the present application provides a method for determining a network coverage mode, the method comprising: obtaining the location of a target building in a target residential area, the target building being a building whose network coverage does not meet the network coverage requirements; based on the location of the target building, the boundary of the target residential area, and the location of the target base station, determining the network coverage mode corresponding to the target building, the target base station being the base station closest to the target building among multiple base stations deployed outside the target residential area.
[0007] In combination with the first aspect, in a possible implementation, based on the location of the target building, the boundary of the target residential area, and the location of the target base station, determining the network coverage mode corresponding to the target building includes:
[0008] Based on the location of the target building and the boundary of the target residential area, a first distance is determined, and the first distance is the distance between the target building and the boundary of the target residential area; based on the location of the target building and the location of the target base station, a second distance is determined, and the second distance is the distance between the target building and the target base station; based on the first distance and the second distance, the network coverage mode corresponding to the target building is determined.
[0009] In combination with the first aspect, in a possible implementation manner, determining a network coverage mode corresponding to a target building based on the first distance and the second distance includes:
[0010] In response to the first distance being greater than the first distance threshold, the network coverage mode corresponding to the target building is determined to be the first coverage mode, and the first coverage mode indicates that network coverage equipment is deployed in the target residential area; in response to the first distance being less than or equal to the first distance threshold, the network coverage mode corresponding to the target building is determined based on the second distance.
[0011] In combination with the first aspect, in a possible implementation manner, the target base station includes a first base station and a second base station, and a signal frequency of the first base station is lower than a signal frequency of the second base station; based on the second distance, determining a network coverage mode corresponding to the target building includes:
[0012] In response to the second distance corresponding to the first base station being less than or equal to the second distance threshold, the network coverage mode corresponding to the target building is determined to be the first coverage mode; in response to the second distance corresponding to the first base station being greater than the second distance threshold, the network coverage mode corresponding to the target building is determined based on the second distance corresponding to the second base station and the second distance threshold.
[0013] In combination with the first aspect, in a possible implementation manner, determining a network coverage mode corresponding to the target building based on a second distance and a second distance threshold corresponding to the second base station includes:
[0014] In response to the second distance corresponding to the second base station being greater than the second distance threshold, the network coverage mode corresponding to the target building is determined to be the second coverage mode, and the second coverage mode indicates that the base station is deployed outside the target residential area; in response to the second distance corresponding to the second base station being less than or equal to the second distance threshold, based on the second distance corresponding to the first base station and the third distance threshold, the network coverage mode corresponding to the target building is determined, and the second distance threshold is less than the third distance threshold.
[0015] In combination with the first aspect, in a possible implementation manner, determining a network coverage mode corresponding to a target building based on a second distance and a third distance threshold corresponding to the first base station includes:
[0016] In response to the second distance corresponding to the first base station being less than or equal to the third distance threshold, the network coverage mode corresponding to the target building is determined to be the first coverage mode; in response to the second distance corresponding to the first base station being greater than the third distance threshold, the network coverage mode corresponding to the target building is determined based on the attribute information of the target residential area.
[0017] In combination with the first aspect, in a possible implementation, the attribute information is used to indicate the type or floor of the target residential area; and based on the attribute information of the target residential area, determining the network coverage mode corresponding to the target building includes:
[0018] In response to the attribute information of the target residential area indicating that the type is a non-preset type and the floor is greater than the preset floor, the network coverage mode corresponding to the target building is determined to be the first coverage mode; in response to the attribute information of the target residential area indicating that the type is a preset type, or the floor is less than or equal to the preset floor, the network coverage mode corresponding to the target building is determined to be the second coverage mode.
[0019] In the second aspect, the present application provides a device for determining a network coverage mode, which includes: an acquisition unit, used to acquire the position of a target building in a target residential area, the target building being a building whose network coverage does not meet the network coverage requirements; a determination unit, used to determine the network coverage mode corresponding to the target building based on the position of the target building, the boundary of the target residential area and the position of the target base station, the target base station being the base station closest to the target building among multiple base stations deployed outside the target residential area.
[0020] In conjunction with the second aspect, in a possible implementation manner, the determining unit is configured to:
[0021] Based on the location of the target building and the boundary of the target residential area, a first distance is determined, and the first distance is the distance between the target building and the boundary of the target residential area; based on the location of the target building and the location of the target base station, a second distance is determined, and the second distance is the distance between the target building and the target base station; based on the first distance and the second distance, the network coverage mode corresponding to the target building is determined.
[0022] In conjunction with the second aspect, in a possible implementation manner, the determining unit is configured to:
[0023] In response to the first distance being greater than the first distance threshold, the network coverage mode corresponding to the target building is determined to be the first coverage mode, and the first coverage mode indicates that network coverage equipment is deployed in the target residential area; in response to the first distance being less than or equal to the first distance threshold, the network coverage mode corresponding to the target building is determined based on the second distance.
[0024] In combination with the second aspect, in a possible implementation manner, the target base station includes a first base station and a second base station, and a signal frequency of the first base station is lower than a signal frequency of the second base station; and the determining unit is used to:
[0025] In response to the second distance corresponding to the first base station being less than or equal to the second distance threshold, the network coverage mode corresponding to the target building is determined to be the first coverage mode; in response to the second distance corresponding to the first base station being greater than the second distance threshold, the network coverage mode corresponding to the target building is determined based on the second distance corresponding to the second base station and the second distance threshold.
[0026] In conjunction with the second aspect, in a possible implementation manner, the determining unit is configured to:
[0027] In response to the second distance corresponding to the second base station being greater than the second distance threshold, the network coverage mode corresponding to the target building is determined to be the second coverage mode, and the second coverage mode indicates that the base station is deployed outside the target residential area; in response to the second distance corresponding to the second base station being less than or equal to the second distance threshold, based on the second distance corresponding to the first base station and the third distance threshold, the network coverage mode corresponding to the target building is determined, and the second distance threshold is less than the third distance threshold.
[0028] In conjunction with the second aspect, in a possible implementation manner, the determining unit is configured to:
[0029] In response to the second distance corresponding to the first base station being less than or equal to the third distance threshold, the network coverage mode corresponding to the target building is determined to be the first coverage mode; in response to the second distance corresponding to the first base station being greater than the third distance threshold, the network coverage mode corresponding to the target building is determined based on the attribute information of the target residential area.
[0030] In combination with the second aspect, in a possible implementation manner, the attribute information is used to indicate the type or floor of the target residential area; and the determining unit is used to:
[0031] In response to the attribute information of the target residential area indicating that the type is a non-preset type and the floor is greater than the preset floor, the network coverage mode corresponding to the target building is determined to be the first coverage mode; in response to the attribute information of the target residential area indicating that the type is a preset type, or the floor is less than or equal to the preset floor, the network coverage mode corresponding to the target building is determined to be the second coverage mode.
[0032] In a third aspect, the present application provides an electronic device comprising: a processor and a communication interface; the communication interface and the processor are coupled, and the processor is used to run a computer program or instructions to implement a method for determining a network coverage mode as described in the first aspect and any possible implementation method of the first aspect.
[0033] In a fourth aspect, the present application provides a computer-readable storage medium, which stores instructions. When the instructions are executed on an electronic device, the electronic device executes the network coverage determination method described in the first aspect and any possible implementation of the first aspect.
[0034] In a fifth aspect, the present application provides a computer program product comprising instructions, which, when executed on an electronic device, enables the electronic device to execute a method for determining a network coverage mode as described in the first aspect and any possible implementation of the first aspect.
[0035] In a sixth aspect, the present application provides a chip, the chip comprising a processor and a communication interface, the communication interface and the processor are coupled, and the processor is used to run a computer program or instructions to implement the network coverage mode determination method as described in the first aspect and any possible implementation method of the first aspect.
[0036] Specifically, the chip provided in the present application also includes a memory for storing computer programs or instructions.
[0037] It should be noted that the above computer instructions may be stored in whole or in part on a computer-readable storage medium, wherein the computer-readable storage medium may be packaged together with the processor of the device, or may be packaged separately from the processor of the device, which is not limited in this application.
[0038] The descriptions of the second to sixth aspects of the present application can refer to the detailed description of the first aspect; and the beneficial effects of the descriptions of the second to sixth aspects can refer to the beneficial effect analysis of the first aspect, which will not be repeated here.
[0039] In this application, the name of the above-mentioned network coverage mode determination device does not limit the device or functional module itself. In actual implementation, these devices or functional modules may appear with other names. As long as the functions of each device or functional module are similar to those of this application, they belong to the scope of the claims of this application and their equivalent technologies.
[0040] These and other aspects of the present application will become more apparent from the following description.
[0041] The above scheme brings at least the following beneficial effects: the network coverage mode determination method provided by the present application can provide a unified basis and standard for judgment when determining the network coverage mode of a building with poor network coverage, and can more accurately judge which building adopts which network coverage mode. And fully consider the location of the target building, the boundary of the target residential area, and the location of the target base station, which are factors that can directly affect the network coverage mode, so as to improve the accuracy of the network coverage mode corresponding to the determined target building, and then improve the network coverage effect of the target building. In addition, the network coverage mode determination method provided by the present application provides a method for automatically determining the network coverage mode of a building, without relying on manual judgment, which improves the efficiency of judgment and thus improves work efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0042] Figure 1 A schematic diagram of a network coverage determination system provided in an embodiment of the present application;
[0043] Figure 2 A schematic diagram of the hardware structure of an electronic device provided in an embodiment of the present application;
[0044] Figure 3 A flowchart of a method for determining a network coverage mode provided in an embodiment of the present application;
[0045] Figure 4 A flowchart of another method for determining network coverage provided in an embodiment of the present application;
[0046] Figure 5 A flowchart of another method for determining a network coverage mode provided in an embodiment of the present application;
[0047] Figure 6 A flowchart of a method for determining a network coverage mode when a first distance is less than or equal to a first distance threshold provided in an embodiment of the present application;
[0048] Figure 7 A flowchart of a method for determining a network coverage mode when a second distance corresponding to a first base station is greater than a second distance threshold provided in an embodiment of the present application;
[0049] Figure 8 A flowchart of a method for determining a network coverage mode when a second distance corresponding to a second base station is less than or equal to a second distance threshold provided in an embodiment of the present application;
[0050] Fig. 9 A flowchart of a method for determining a network coverage mode when a second distance corresponding to a first base station is greater than a third distance threshold provided in an embodiment of the present application;
[0051] Fig.10 A flowchart of another method for determining network coverage provided in an embodiment of the present application;
[0052] Fig.11 A schematic diagram of the structure of a network coverage mode determination device provided in an embodiment of the present application. DETAILED DESCRIPTION
[0053] The following will be combined with the drawings in the embodiments of the present application to clearly and completely describe the technical solutions in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, not all of the embodiments. Based on the embodiments in the present application, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of this application.
[0054] The term "and / or" in this article is merely a description of the association relationship of associated objects, indicating that three relationships may exist. For example, A and / or B can mean: A exists alone, A and B exist at the same time, and B exists alone.
[0055] The terms "first" and "second" and the like in the specification and drawings of this application are used to distinguish different objects, or to distinguish different processing of the same object, rather than to describe a specific order of objects.
[0056] In addition, the terms "including" and "having" and any variations thereof mentioned in the description of the present application are intended to cover non-exclusive inclusions. For example, a process, method, system, product or device comprising a series of steps or units is not limited to the listed steps or units, but may optionally include other steps or units that are not listed, or may optionally include other steps or units that are inherent to these processes, methods, products or devices.
[0057] It should be noted that, in the embodiments of the present application, words such as "exemplary" or "for example" are used to indicate examples, illustrations or descriptions. Any embodiment or design described as "exemplary" or "for example" in the embodiments of the present application should not be interpreted as being more preferred or more advantageous than other embodiments or designs. Specifically, the use of words such as "exemplary" or "for example" is intended to present related concepts in a specific way.
[0058] In the description of the present application, unless otherwise specified, “plurality” means two or more.
[0059] With the launch of the "signal upgrade" special action by the Ministry of Industry and Information Technology and 11 other departments, domestic telecom operators are accelerating the promotion of deep mobile network coverage to improve network quality, optimize user perception, and continuously meet the people's growing needs for a better life. Among them, residential areas have always been a difficult point for network coverage. The special action requires that "key points in new residential areas should basically achieve full mobile network coverage to support applications such as smart homes and smart communities. By 2025, more than 70% of residential areas will achieve mobile network signal coverage and application experience improvement", which puts forward higher challenges and requirements for operators' fourth generation mobile communication technology (4G) network and fifth generation mobile communication technology (5G) network deployment.
[0060] The commonly used network coverage methods for residential areas can be divided into two types according to whether they enter residential areas: one is to deploy base stations outside residential areas, that is, to achieve network coverage of buildings in residential areas by setting up base stations outside residential areas; the other is to deploy network coverage equipment in residential areas, for example, by laying out indoor distribution systems in buildings, beautifying antennas in communities, and inter-building antennas, etc., to achieve network coverage of buildings in residential areas. Deploying network coverage equipment in residential areas is an important application scenario of 5G networks, and it is also the focus and difficulty of network coverage of telecom operators. It often faces great construction resistance because it needs to enter residential areas for construction.
[0061] In order to improve the quality of user networks, solving the problem of poor network coverage in residential areas has become the primary task. Solving the problem of poor network coverage in residential areas actually means solving the problem of poor network coverage in buildings in the residential areas. For buildings with poor network coverage, how to determine which of the above methods to use for network coverage has become the primary task. Among them, residential areas with poor network coverage can be called weak coverage areas, and buildings with poor network coverage can also be called weak coverage buildings.
[0062] There are many types of residential communities, and the network coverage methods vary. In the existing technologies, most of the research focuses on how to deploy base stations to solve the network coverage problems of residential communities or buildings, or how to improve the capabilities of base stations, or how to deploy network coverage equipment in residential communities to solve the network coverage of buildings. There is no research on the situations in which base stations are deployed and the situations in which network coverage equipment is deployed in residential communities. At present, the method of network coverage for buildings with weak coverage is mostly determined by manual experience. This judgment method is subjective and lacks basis and judgment criteria, that is, there is no indoor and outdoor collaborative judgment standard. There is no clear judgment standard for which building's network coverage problem can be solved by base stations and which building's network coverage problem needs to be solved by deploying network coverage equipment in residential communities. The accuracy is difficult to guarantee, and the efficiency of manual judgment is low. In addition, the sizes of different residential communities and the shapes of various buildings are not completely consistent, and the existing network coverage method judgment does not take these factors into account.
[0063] The distance between a building with weak coverage and the boundary of the residential area where it is located, as well as the distance between a building with weak coverage and the surrounding base stations, will directly affect the choice of network coverage mode. However, the current judgment method does not combine the weak coverage building with the boundary of the residential area where it is located and the base stations outside the residential area for analysis.
[0064] In addition, the current communication networks of operators are all multi-frequency networks. For example, in 3G, 4G, 5G and other networks, medium and low frequencies often coexist, and base stations with different signal frequencies have different coverage radiuses. At present, when judging network coverage, the difference in coverage capabilities of different signal frequencies is not taken into account. For example, the coverage radius of medium-frequency base stations and low-frequency base stations is quite different. Taking China Unicom's 5G network as an example, the signal frequency of the medium-frequency base station is 3.5GHz; the signal frequency of the low-frequency base station is 900MHz. The difference between the coverage radius of the medium-frequency base station and the coverage radius of the low-frequency base station is greater than 300m. Since the wall penetration ability of the low-frequency signal is higher than that of the medium-frequency signal, that is, for the network coverage of the building, the low-frequency base station penetrates at least one more wall than the medium-frequency base station. Therefore, in building coverage, it is necessary to consider the difference in coverage capabilities of base stations with different signal frequencies and reasonably arrange the layout of medium-frequency base stations and low-frequency base stations. Among them, the medium-frequency base station is the signal frequency of the base station is the medium-frequency frequency, and the low-frequency base station is the signal frequency of the base station is the low-frequency frequency.
[0065] The network coverage mode determination method provided by the present application can provide a unified basis and standard for judgment when determining the network coverage mode of a building with poor network coverage, and can more accurately determine which building adopts which network coverage mode. And fully consider the location of the target building, the boundary of the target residential area, and the location of the target base station, which are factors that can directly affect the network coverage mode, so as to improve the accuracy of the network coverage mode corresponding to the determined target building, and then improve the network coverage effect of the target building. In addition, the network coverage mode determination method provided by the present application provides a method for automatically determining the network coverage mode of a building, without relying on manual judgment, improving the efficiency of judgment, and thus improving work efficiency.
[0066] The implementation of the embodiments of the present application will be described in detail below in conjunction with the accompanying drawings.
[0067] Figure 1 A schematic diagram of a network coverage determination system provided in an embodiment of the present application. Figure 1 As shown, the network coverage mode determination system includes: a target building 101, a target base station 102 and an electronic device 103.
[0068] The target building 101 is a building located in the target residential area. The target building 101 may be a building whose network coverage does not meet the network coverage requirements, such as a building with poor network coverage. The target building 101 may also be called a weak coverage building. In some embodiments, the network coverage mode corresponding to the target building 101 can be determined by the location of the target building 101.
[0069] It should be noted that the number of target buildings 101 may be one or more, and this application does not impose any limitation on this.
[0070] The target base station 102 can be a base station or an evolutionary base station (eNB or eNodeB) in long term evolution (LTE), long term evolution advanced (LTEA), a base station device in a 5G network, or a base station in a future communication system, etc. The base station can include various macro base stations, micro base stations, home base stations, wireless remote stations, repeaters, reconfigurable intelligent surfaces (RIS), wireless fidelity (WIFI) devices and other network side devices, which are not limited in the embodiments of the present disclosure. The signal frequency of the target base station 102 can be a low frequency, an intermediate frequency, or a high frequency, etc., which is not limited in the present application.
[0071] In some embodiments, the target base station 102 is a base station closest to the target building 101 among multiple base stations deployed outside the target residential area.
[0072] In some embodiments, the network coverage mode corresponding to the target building 101 can be determined by the location of the target base station 102 and in combination with the location of the target building 101 .
[0073] The electronic device 103 may be at least one of a mobile phone, a tablet computer (pad), a computer with wireless transceiver function, a virtual reality (VR) terminal, an augmented reality (AR) terminal, a wireless terminal, a computer, an independent physical server or a server cluster composed of multiple physical servers, etc., and the embodiments of the present application are not limited to this.
[0074] In some embodiments, the electronic device 103 may be provided with a storage function. For example, the electronic device 103 may store the boundary line of the target residential area, the location of the target building 101, and the location of the target base station 102. By storing the boundary line of the target residential area, the location of the target building 101, and the location of the target base station 102, they can be flexibly used in the subsequent process of determining the network coverage mode corresponding to the target building 101.
[0075] In other embodiments, the electronic device 103 may be provided with a computing function. For example, the electronic device 103 determines a first distance based on the location of the target building 101 and the boundary of the target residential area, and determines a second distance based on the location of the target building 101 and the location of the target base station 102. For another example, the electronic device 103 determines the network coverage mode corresponding to the target building 101 based on the first distance and the second distance.
[0076] In an embodiment of the present application, the process of determining the network coverage mode may be: after the electronic device 102 obtains the location of the target building 101 in the target residential area, the electronic device 102 determines the network coverage mode corresponding to the target building 101 based on the location of the target building 101, the boundary of the target residential area and the location of the target base station 102.
[0077] When implemented by hardware, the electronic device may be provided as follows Figure 2 The hardware structure shown, specifically, Figure 2 The hardware structure diagram of an electronic device provided in an embodiment of the present application is shown in FIG. Figure 2 As shown, the electronic device includes at least one processor 201, a communication line 202, and at least one communication interface 204, and may also include a memory 203. The processor 201, the memory 203 and the communication interface 204 may be connected via the communication line 202.
[0078] The processor 201 may be a central processing unit (CPU), an application specific integrated circuit (ASIC), or one or more integrated circuits configured to implement the embodiments of the present application, such as one or more digital signal processors (DSP), or one or more field programmable gate arrays (FPGA).
[0079] The communication line 202 is used to transmit information between the above components.
[0080] The communication interface 204 is used to communicate with other devices or communication networks, and can use any transceiver-like device, such as Ethernet, radio access network (RAN), wireless local area network (WLAN), etc.
[0081] The memory 203 may be a read-only memory (ROM) or other types of static storage devices that can store static information and instructions, a random access memory (RAM) or other types of dynamic storage devices that can store information and instructions, or an electrically erasable programmable read-only memory (EEPROM), a compact disc read-only memory (CD-ROM) or other optical disc storage, an optical disc storage (including compressed optical discs, laser discs, optical discs, digital versatile discs, Blu-ray discs, etc.), a magnetic disk storage medium or other magnetic storage device, or any other medium that can be used to include or store desired program code in the form of instructions or data structures and can be accessed by a computer, but is not limited to these.
[0082] In one possible design, the memory 203 can exist independently of the processor 201, that is, the memory 203 can be a memory outside the processor 201. In this case, the memory 203 can be connected to the processor 201 through the communication line 202, and is used to store execution instructions or application code, and the processor 201 controls the execution to implement the network coverage mode determination method provided in the following embodiment of the present application. In another possible design, the memory 203 can also be integrated with the processor 201, that is, the memory 203 can be the internal memory of the processor 201, for example, the memory 203 is a high-speed cache, which can be used to temporarily store some data and instruction information.
[0083] As a possible implementation, the processor 201 may include one or more CPUs, for example Figure 2 As another possible implementation, the electronic device may include multiple processors, such as Figure 2 As another possible implementation, the electronic device may further include an output device 205 and an input device 206.
[0084] It should be pointed out that the various embodiments of the present application can refer to each other, for example, the same or similar steps, method embodiments, system embodiments and device embodiments can refer to each other without limitation.
[0085] Figure 3 A flowchart of a method for determining a network coverage mode provided in an embodiment of the present application, which method can be applied to Figure 2 In the electronic device shown. Figure 3 As shown, the method comprises the following steps:
[0086] S301. The electronic device obtains the location of a target building in a target residential area.
[0087] The target residential area is used to refer to the residential area that needs to be covered by the network.
[0088] In a possible implementation, the target building is a building whose network coverage does not meet the network coverage requirements, that is, the target building can also be understood as a building with poor network coverage, such as a weak coverage building.
[0089] For example, the target building may be determined based on user feedback on the network coverage effect of the building, or the target building may be determined based on the network coverage effect evaluation according to measurement report (MR) data, or the target building may be determined based on actual road test data of on-site staff, or the target building may be obtained by simulation calculation of the building network coverage, etc. The embodiment of the present application does not limit the process of how to determine the target building.
[0090] In a possible implementation, the location of the target building may be the longitude and latitude corresponding to the geometric center point of the target building. Exemplarily, the electronic device stores a general architectural plan of the target building, draws a frame of the target building according to the general architectural plan of the target building, obtains a closed frame of the target building, and uses the longitude and latitude corresponding to the geometric center point of the target building as the location of the target building.
[0091] In this way, a data basis can be provided for the subsequent determination of the network coverage mode corresponding to the target building, making it easier to determine the network coverage mode corresponding to the target building based on the location of the target building.
[0092] S302: The electronic device determines the network coverage mode corresponding to the target building based on the location of the target building, the boundary of the target residential area and the location of the target base station.
[0093] In a possible implementation manner, the target base station is a base station closest to the target building among multiple base stations deployed outside the target residential area.
[0094] Exemplarily, the location of the target building is used as the starting point, and the base station closest to the target building is determined within a preset range as the target base station. For example, in conventional computer-aided calculations, the preset range is set to a coverage range with a radius of 5 km, and the target base station is determined based on the location of the target building and the location of the base stations within the preset range.
[0095] In a possible implementation, the location of the target base station can be obtained through base station engineering parameters. Exemplarily, the base station engineering parameters include information such as base station number, base station configuration, base station longitude and latitude, antenna height, antenna azimuth, etc. By querying the base station number corresponding to the target base station, the longitude and latitude of the target base station are obtained, and the longitude and latitude of the target base station are used as the location of the target base station.
[0096] The network coverage mode corresponding to the target building includes a first coverage mode and a second coverage mode, wherein the first coverage mode indicates that the network coverage equipment is deployed in the target residential area, and the second coverage mode indicates that the base station is deployed outside the target residential area.
[0097] In this way, it is possible to provide a basis and criteria for determining the network coverage method corresponding to the target building, and fully consider the location of the target building, the boundary of the target residential area, and the location of the target base station, which are factors that can directly affect the network coverage method, thereby improving the accuracy of the determined network coverage method corresponding to the target building.
[0098] The network coverage mode determination method provided by the present application can provide a unified basis and standard for judgment when determining the network coverage mode of a building with poor network coverage, and can more accurately determine which building adopts which network coverage mode. And fully consider the location of the target building, the boundary of the target residential area, and the location of the target base station, which are factors that can directly affect the network coverage mode, so as to improve the accuracy of the network coverage mode corresponding to the determined target building, and then improve the network coverage effect of the target building. In addition, the network coverage mode determination method provided by the present application provides a method for automatically determining the network coverage mode of a building, without relying on manual judgment, improving the efficiency of judgment, and thus improving work efficiency.
[0099] As a possible embodiment of the present application, Figure 4 A flowchart of another method for determining network coverage provided in an embodiment of the present application. Figure 3 ,like Figure 4 As shown, the above S302 can also be implemented through the following S401-S403.
[0100] S401. The electronic device determines a first distance based on the location of a target building and a boundary of a target residential area, where the first distance is the distance between the target building and the boundary of the target residential area.
[0101] In one possible implementation, the first distance can be: starting from the location of the target building, drawing a perpendicular line to the nearest boundary of the target residential area, obtaining the intersection with the boundary of the target residential area, and taking the distance between the intersection and the location of the target building as the distance between the target building and the boundary of the target residential area, that is, the first distance.
[0102] Exemplarily, the electronic device may store a set U = {u 1 , u 2 ,... u n} of multiple target buildings in the same target residential community. Among them, u i is the i-th target building, 0 < i ≤ n, where n is the number of target buildings and n is a positive integer.
[0103] Among the multiple target buildings, the set composed of the geometric center points corresponding to each target building is A = {a 1 , a 2 ,... a n}. Among them, a i is the geometric center point corresponding to the i-th target building, 0 < i ≤ n, where n is the number of target buildings and n is a positive integer.
[0104] Taking the positions of the multiple target buildings as starting points respectively, and making perpendicular lines to the nearest boundary of the corresponding target residential community, the set B = {b 1 , b 2 ,... b n} composed of the intersection points of the multiple target buildings and the boundaries of the corresponding target residential communities is obtained. Among them, b i is the intersection point of the i-th target building and the boundary of the corresponding target residential community, 0 < i ≤ n, where n is the number of target buildings and n is a positive integer.
[0105] It should be understood that the distance between a i and b i is also the length of the line segment . The length of this line segment is the distance between the i-th target building and the boundary of the corresponding target residential community. Based on the following expression (1), among the distances between the multiple target buildings and the boundaries of the corresponding target residential communities, the minimum value is taken as the first distance.
[0106]
[0107] By introducing the first distance, the distance between the target building and the boundary of the target residential community can be better determined, that is, the depth of the target building in the target residential community can be defined, which is beneficial to determining the network coverage mode corresponding to the target building based on the first distance later.
[0108] S402. The electronic device determines a second distance based on the position of the target building and the position of the target base station, and the second distance is the distance between the target building and the target base station.
[0109] In a possible implementation, the second distance may be the length of the line segment formed between the location of the target building and the location of the target base station, that is, the second distance.
[0110] Exemplarily, in multiple target buildings, the set C formed by each target building corresponding to a target base station is C = {c 1 , c 2 ,... c n}. Wherein, c i is the i-th target base station, 0 < i ≤ n, n is the number of target base stations, and n is a positive integer.
[0111] It should be understood that the distance between a i and c i is also the length of the line segment . The length of this line segment is the distance between the i-th target building and the corresponding target base station. Based on the following expression (2), among the distances between multiple target buildings and their corresponding target base stations, the minimum value is taken as the second distance.
[0112]
[0113] S403. The electronic device determines the network coverage mode corresponding to the target building based on the first distance and the second distance.
[0114] In this way, factors that can affect the judgment of the network coverage mode can be fully considered, that is, the distance between the target building and the boundary of the target residential community, and the distance between the target building and the target base station. The network coverage mode corresponding to the target building can be determined through the first distance and the second distance, providing a judgment basis for the network coverage mode corresponding to the target building.
[0115] As a possible embodiment of the present application, Figure 5 is a flowchart of another network coverage mode determination method provided by the embodiments of the present application. As Figure 5 shown, the above S403 can also be implemented through the following S501 - S503.
[0116] S501. The electronic device determines whether the first distance is greater than the first distance threshold. If so, execute S502; if not, execute S503.
[0117] The first distance threshold is used to determine whether the network coverage problem of the target building can be solved by establishing a base station. Exemplarily, ω dis _ b0undIt should be understood that if the first distance is greater than the first distance threshold, it means that the distance between the target building and the boundary of the target residential area is far, which means that the network coverage problem of the target building cannot be solved by establishing a base station.
[0118] S502: In response to the first distance being greater than a first distance threshold, the electronic device determines that the network coverage mode corresponding to the target building is a first coverage mode, and the first coverage mode indicates that a network coverage device is deployed in the target residential area.
[0119] Exemplarily, based on the following expression (3), it is determined that the network coverage mode corresponding to the target building is the first coverage mode.
[0120]
[0121] In this way, by setting the first distance threshold, when the first distance is greater than the first distance threshold, it means that the network coverage problem of the target building cannot be solved by establishing a base station outside the target residential area. For example, the target building is located in the center of the target residential area. In this case, it is necessary to deploy network coverage equipment in the target residential area to solve the network coverage problem of the target building.
[0122] S503: In response to the first distance being less than or equal to the first distance threshold, the electronic device determines a network coverage mode corresponding to the target building based on the second distance.
[0123] As a possible embodiment of the present application, Figure 6 A flowchart of a method for determining a network coverage mode when a first distance is less than or equal to a first distance threshold is provided in an embodiment of the present application. Figure 6 As shown, the above S503 can also be implemented through the following S601-S603.
[0124] S601: When the first distance is less than or equal to the first distance threshold, the electronic device determines whether the second distance corresponding to the first base station is less than or equal to the second distance threshold. If yes, execute S602; if no, execute S603.
[0125] In a possible implementation manner, the target base station includes a first base station and a second base station, and a signal frequency of the first base station is lower than a signal frequency of the second base station.
[0126] Exemplarily, the first base station may be a low frequency base station, that is, the signal frequency of the base station is a low frequency, such as 700 MHz, 800 MHz, 900 MHz, etc. The second base station may be a medium frequency base station, that is, the signal frequency of the base station is a medium frequency, for example, the signal frequency of the base station is greater than 1800 MHz.
[0127] Exemplarily, among multiple target buildings, each target building corresponds to a set D = {d 1 , d 2 ,... d n} of first base stations. Wherein, d i is the first base station corresponding to the i-th target building, 0 < i ≤ n, n is the number of target buildings, and n is a positive integer.
[0128] It should be understood that the distance between a i and d i is also the length of line segment . The length of this line segment is the distance between the i-th target building and the corresponding first base station. Based on the following expression (4), among the distances between multiple target buildings and the corresponding first base stations, the minimum value is used as the second distance corresponding to the first base station.
[0129]
[0130] Among multiple target buildings, each target building corresponds to a set Z = {z 1 , z 2 ,... z n} of second base stations. Wherein, z i is the second base station corresponding to the i-th target building, 0 < i ≤ n, n is the number of target buildings, and n is a positive integer.
[0131] It should be understood that the distance between a i and z i is also the length of line segment . The length of this line segment is the distance between the i-th target building and the corresponding second base station. Based on the following expression (5), among the distances between multiple target buildings and the corresponding second base stations, the minimum value is used as the second distance corresponding to the second base station.
[0132]
[0133] The second distance threshold is used to determine whether there is a base station covering the target building within a short distance. Exemplarily, the second distance threshold can be the coverage radius of an intermediate-frequency base station, such as 300 m. Exemplarily, let δ dis _ Mband represent the second distance threshold.
[0134] S602. The electronic device determines that the network coverage mode corresponding to the target building is the first coverage mode in response to the second distance corresponding to the first base station being less than or equal to the second distance threshold.
[0135] Exemplarily, based on the following expression (6), it is determined that the network coverage mode corresponding to the target building is the first coverage mode.
[0136]
[0137] This means that a low-frequency base station has been built outside the target residential area where the target building is located within a short distance, that is, the target building is already within the coverage range of the low-frequency base station, but there is still a network coverage problem, that is, the network coverage of the target building is poor, that is, the target building needs to deploy network coverage equipment in the target residential area to solve the network coverage problem.
[0138] S603: In response to the second distance corresponding to the first base station being greater than the second distance threshold, the electronic device determines the network coverage mode corresponding to the target building based on the second distance corresponding to the second base station and the second distance threshold.
[0139] It should be noted that the embodiment of the present application can first obtain the position of the first base station and then obtain the position of the second base station; or, the positions of the first base station and the second base station can be obtained at the same time; or, the position of the first base station can be obtained first, and when the second distance corresponding to the first base station is greater than the second distance threshold, the position of the second base station can be obtained. The present application does not limit this.
[0140] As a possible embodiment of the present application, Figure 7 A flowchart of a method for determining a network coverage mode when a second distance corresponding to a first base station is greater than a second distance threshold provided in an embodiment of the present application. Figure 7 As shown, the above S603 can also be implemented through the following S701-S703.
[0141] S701: When the second distance corresponding to the first base station is greater than the second distance threshold, the electronic device determines whether the second distance corresponding to the second base station is greater than the second distance threshold. If yes, execute S702; if no, execute S703.
[0142] S702: In response to the second distance corresponding to the second base station being greater than the second distance threshold, the electronic device determines that the network coverage mode corresponding to the target building is the second coverage mode, and the second coverage mode indicates that the base station is deployed outside the target residential area.
[0143] Exemplarily, based on the following expression (7), it is determined that the network coverage mode corresponding to the target building is the second coverage mode.
[0144]
[0145] This means that there is no base station outside the target residential area where the target building is located within a short distance. Since the cost of deploying network coverage equipment in the target residential area is high, the network coverage problem of the target building can be solved by deploying base stations outside the target residential area.
[0146] In addition, in the 5G network, considering the requirements for base station coverage and network capacity during actual use, it is more suitable to deploy medium-frequency base stations outside the target residential area to solve the network coverage problem of the target building.
[0147] S703. In response to the second distance corresponding to the second base station being less than or equal to the second distance threshold, the electronic device determines the network coverage mode corresponding to the target building based on the second distance corresponding to the first base station and the third distance threshold, and the second distance threshold is less than the third distance threshold.
[0148] The third distance threshold is used to determine whether there is a low-frequency base station within a relatively long distance. Exemplarily, the third distance threshold may be the coverage radius of the low-frequency base station, such as 500m. Exemplarily, δ dis _ Lband Indicates the third distance threshold.
[0149] As a possible embodiment of the present application, Figure 8 A flowchart of a method for determining a network coverage mode when a second distance corresponding to a second base station is less than or equal to a second distance threshold provided in an embodiment of the present application. Figure 8 As shown, the above S703 can also be implemented through the following S801-S803.
[0150] S801: When the second distance corresponding to the second base station is less than or equal to the second distance threshold, the electronic device determines whether the second distance corresponding to the first base station is less than or equal to the third distance threshold. If yes, execute S802; if not, execute S803.
[0151] S802: In response to the second distance corresponding to the first base station being less than or equal to the third distance threshold, the electronic device determines that the network coverage mode corresponding to the target building is the first coverage mode.
[0152] Exemplarily, based on the following expression (8), it is determined that the network coverage mode corresponding to the target building is the first coverage mode.
[0153]
[0154] This means that within a short distance, there is a medium-frequency base station but no low-frequency base station deployed outside the target residential area where the target building is located. The low-frequency base station is located at a farther distance. Although the target building is still within the coverage range of the low-frequency base station, there is still a network coverage problem. In this case, it is necessary to deploy network coverage equipment in the target residential area to solve the network coverage problem of the target building.
[0155] S803: In response to the second distance corresponding to the first base station being greater than the third distance threshold, the electronic device determines the network coverage mode corresponding to the target building based on the attribute information of the target residential area.
[0156] The attribute information of the target residential area is used to indicate the type or floor of the target residential area.
[0157] For example, the type of the target residential area is a village in the city type, a city center type, a suburban type, etc. The type of the target residential area can also be called a scene of the target residential area.
[0158] For example, the floor of the target residential community may be the average floor of the target residential community.
[0159] Exemplarily, the electronic device stores a list of target residential communities and a list of buildings in the target residential communities. The list of target residential communities includes the target residential community number and the type of the target residential community; the list of buildings in the target residential community includes the floors of the buildings, and the average floor of the target residential community can be determined based on the list of buildings in the target residential community.
[0160] In addition, the attribute information of the target residential area can also be used to indicate the building height, floor height, facade information, etc. of the target residential area, and this application does not limit this.
[0161] In this way, when the second distance corresponding to the first base station is greater than the third distance threshold, the impact of the environment of the target residential area and floor information on the network coverage mode is fully considered to facilitate better judgment of the network coverage mode corresponding to the target building.
[0162] As a possible embodiment of the present application, Fig. 9 A flowchart of a method for determining a network coverage mode when a second distance corresponding to a first base station is greater than a third distance threshold provided in an embodiment of the present application. Fig. 9 As shown, the above S803 can also be implemented through the following S901-S903.
[0163] S901, the electronic device determines whether the attribute information of the target residential area is a preset type, or whether the attribute information of the target residential area is greater than a preset floor, when the second distance corresponding to the first base station is greater than the third distance threshold. If not, execute S902; if yes, execute S903.
[0164] S902: In response to the attribute information of the target residential area indicating that the type is a non-preset type and the floor is greater than the preset floor, the electronic device determines that the network coverage mode corresponding to the target building is the first coverage mode.
[0165] Exemplarily, when the attribute information of the target residential quarter indicates that the type is a non-preset type and the number of floors is greater than the preset number of floors, the corresponding set of target buildings can be expressed by the following expression (9).
[0166] U y = {u y1 ,u y2 ,...u yn} (9)
[0167] Understandably, the set U y is a subset of set U. We can also transform set U y It is understood as a target building that is not affected by the attribute information of the target residential area.
[0168] For example, the preset type is a village in the city type, and the preset floor is 6. When the attribute information of the target residential area indicates that the type is not a village in the city type, and the floor is greater than 6, the set U y It is understood that the target residential area has a high residential density.
[0169] Exemplarily, based on the following expression (10), it is determined that the network coverage mode corresponding to the target building is the first coverage mode.
[0170]
[0171] Among them, u x Indicates the building for which the network coverage method is to be determined.
[0172] For residential areas with high population density, the ideal network coverage method is to deploy medium-frequency base stations outside the residential areas due to the large network bandwidth provided by medium-frequency base stations. However, medium-frequency base stations have been deployed in the short distance outside the target residential area where the target building is located, but there are no low-frequency base stations. In addition, due to the high population density of the target residential area, users may experience lag when deploying low-frequency base stations. In order to provide users with a better network coverage experience, it is not suitable to deploy low-frequency base stations outside the target residential area. It is necessary to deploy network coverage equipment in the target residential area to solve the network coverage problem of the target building.
[0173] S903: In response to the attribute information of the target residential area indicating that the type is a preset type, or the floor is less than or equal to the preset floor, the electronic device determines that the network coverage mode corresponding to the target building is the second coverage mode.
[0174] Exemplarily, when the attribute information of the target residential quarter indicates that the type is a preset type, or the floor is less than or equal to the preset floor, the corresponding set of target buildings can be expressed by the following expression (11).
[0175]
[0176] Understandably, the set U z is a subset of set U. We can also transform set U z It is understood as the target building affected by the attribute information of the target residential area.
[0177] For example, the preset type is the urban village type, and the preset floor is 6. When the attribute information of the target residential area indicates that the type is the urban village type, or the floor is less than or equal to 6, the set U z It is understood that the residential density of the target residential area is low.
[0178] Exemplarily, based on the following expression (12), it is determined that the network coverage mode corresponding to the target building is the second coverage mode.
[0179]
[0180] Among them, u x Indicates the building for which the network coverage method is to be determined.
[0181] This means that a medium-frequency base station has been deployed in a short distance outside the target residential area where the target building is located, but there is no low-frequency base station. Moreover, since the population density in the target residential area is low, the network coverage problem of the target building can be solved by deploying a base station outside the target residential area.
[0182] In addition, considering the low population density of the target residential area, the bandwidth provided by the low-frequency base station can already meet user needs. Considering the construction cost issue, the low-frequency base station can be deployed outside the target residential area to solve the network coverage problem of the target building.
[0183] In addition, the network coverage method corresponding to the target building can be determined according to the requirements of the local network coverage guidelines.
[0184] Fig.10 A flowchart of another method for determining network coverage provided in an embodiment of the present application. Fig.10 As shown, the method comprises the following steps:
[0185] S1001. The electronic device determines a target building in a target residential area.
[0186] S1002. The electronic device obtains the location of a target building in a target residential area.
[0187] S1003. The electronic device determines a first distance based on the location of the target building and the boundary of the target residential area. The first distance is the distance between the target building and the boundary of the target residential area.
[0188] S1004. The electronic device determines a second distance based on the location of the target building and the location of the target base station, where the second distance is the distance between the target building and the target base station.
[0189] S1005: The electronic device determines whether the first distance is greater than a first distance threshold. If yes, execute S1006; if no, execute S1007.
[0190] It should be noted that in the embodiments of the present application, S1004 may be executed first and then S1005; S1005 may be executed first and then S1004; or S1004 and S1005 may be executed simultaneously, and the present application does not limit this.
[0191] S1006. In response to the first distance being greater than a first distance threshold, the electronic device determines that the network coverage mode corresponding to the target building is a first coverage mode, and the first coverage mode indicates that a network coverage device is deployed in the target residential area.
[0192] S1007: When the first distance is less than or equal to the first distance threshold, the electronic device determines whether the second distance corresponding to the first base station is less than or equal to the second distance threshold. If yes, execute S1008; if no, execute S1009.
[0193] S1008. In response to the second distance corresponding to the first base station being less than or equal to the second distance threshold, the electronic device determines that the network coverage mode corresponding to the target building is the first coverage mode.
[0194] S1009: When the second distance corresponding to the first base station is greater than the second distance threshold, the electronic device determines whether the second distance corresponding to the second base station is greater than the second distance threshold. If yes, execute S1010; if no, execute S1011.
[0195] S1010. In response to a second distance corresponding to the second base station being greater than a second distance threshold, the electronic device determines that the network coverage mode corresponding to the target building is a second coverage mode, and the second coverage mode indicates that a base station is deployed outside the target residential area.
[0196] S1011: When the second distance corresponding to the second base station is less than or equal to the second distance threshold, the electronic device determines whether the second distance corresponding to the first base station is less than or equal to the third distance threshold. If yes, execute S1012; if no, execute S1013.
[0197] S1012: In response to the second distance corresponding to the first base station being less than or equal to the third distance threshold, the electronic device determines that the network coverage mode corresponding to the target building is the first coverage mode.
[0198] S1013: When the second distance corresponding to the first base station is greater than the third distance threshold, the electronic device determines whether the attribute information of the target residential area is of a preset type or whether the attribute information of the target residential area is greater than a preset floor. If not, execute S1014; if yes, execute S1015.
[0199] S1014. In response to the attribute information indicating that the type of the target residential area is a non-preset type and the floor is greater than the preset floor, the electronic device determines that the network coverage mode corresponding to the target building is the first coverage mode.
[0200] S1015. In response to the attribute information of the target residential area indicating that the type is a preset type, or the floor is less than or equal to the preset floor, the electronic device determines that the network coverage mode corresponding to the target building is the second coverage mode.
[0201] Specifically, the specific implementation process of the above S1001 to S1015 can refer to the specific implementation process of the aforementioned embodiment, which will not be repeated here.
[0202] In the embodiment of the present application, the network coverage effect of the target building can be improved by the network coverage determination method, and then the network coverage effect of the entire target residential area can be improved; the attribute information of the target residential area, the location of the target building, the boundary of the target residential area, and the location of the target base station can be used as references, and the network coverage method corresponding to the target building can be determined based on this information, and the network coverage method suitable for the target building can be comprehensively analyzed and judged, and the accuracy of the network coverage method determination can be improved. On the other hand, through standardized judgment basis and judgment criteria, network operators can be guided to quickly and accurately judge the network coverage method, and the network coverage method corresponding to the target building can also be output in batches, which greatly improves the work efficiency of front-line staff, and then realizes the digitalization and intelligent management and control of residential areas. Based on the current status of the communication network where medium-frequency base stations and low-frequency base stations coexist, through the setting of different distance thresholds, the network coverage resources that have been deployed around the target residential area can be accurately analyzed, and the basis for the determination of the subsequent network coverage method can be provided. The attribute information of the target residential area is introduced, and the judgment basis is further improved in the selection of the network coverage method corresponding to the target building. In the case of different types or different floors of the target residential area, a more suitable network coverage method can be provided to avoid the inaccuracy caused by relying solely on distance judgment. Moreover, during the network planning stage, this network coverage determination method can help front-line planners quickly generate solutions to network coverage problems in residential areas and match the overall scale and investment of the residential areas. During the construction and optimization stage, the problem buildings in residential areas can be used as a starting point to accurately locate network coverage problems and improve the efficiency of network coverage problem analysis and optimization.
[0203] It should be noted that determining the network coverage mode corresponding to the target building is to determine the network coverage mode corresponding to the target residential area where the target building is located. Exemplarily, the network coverage modes corresponding to 415 target residential areas in HZ District, G City are determined. Based on the above network coverage mode determination method, 119 target residential areas adopt the second coverage mode and deploy medium-frequency base stations; 35 target residential areas adopt the second coverage mode and deploy low-frequency base stations; and 261 residential areas adopt the first coverage mode.
[0204] The embodiment of the present application can divide the network coverage mode determination device into functional modules or functional units according to the above method example. For example, each functional module or functional unit can be divided corresponding to each function, or two or more functions can be integrated into one processing module. The above integrated module can be implemented in the form of hardware or in the form of software functional modules or functional units. Among them, the division of modules or units in the embodiment of the present application is schematic, which is only a logical function division, and there may be other division methods in actual implementation.
[0205] Fig.11 A schematic diagram of the structure of a network coverage mode determination device 110 provided in an embodiment of the present application, wherein the network coverage mode determination device 110 includes:
[0206] The acquisition unit 1101 is used to obtain the position of the target building in the target residential area, and the target building is a building whose network coverage does not meet the network coverage requirements; the determination unit 1102 is used to determine the network coverage mode corresponding to the target building based on the position of the target building, the boundary of the target residential area and the position of the target base station, and the target base station is the base station closest to the target building among multiple base stations deployed outside the target residential area.
[0207] In a possible implementation manner, the determining unit 1102 is configured to:
[0208] Based on the location of the target building and the boundary of the target residential area, a first distance is determined, and the first distance is the distance between the target building and the boundary of the target residential area; based on the location of the target building and the location of the target base station, a second distance is determined, and the second distance is the distance between the target building and the target base station; based on the first distance and the second distance, the network coverage mode corresponding to the target building is determined.
[0209] In a possible implementation manner, the determining unit 1102 is configured to:
[0210] In response to the first distance being greater than the first distance threshold, the network coverage mode corresponding to the target building is determined to be the first coverage mode, and the first coverage mode indicates that network coverage equipment is deployed in the target residential area; in response to the first distance being less than or equal to the first distance threshold, the network coverage mode corresponding to the target building is determined based on the second distance.
[0211] In a possible implementation manner, the target base station includes a first base station and a second base station, and a signal frequency of the first base station is lower than a signal frequency of the second base station; the determining unit 1102 is configured to:
[0212] In response to the second distance corresponding to the first base station being less than or equal to the second distance threshold, the network coverage mode corresponding to the target building is determined to be the first coverage mode; in response to the second distance corresponding to the first base station being greater than the second distance threshold, the network coverage mode corresponding to the target building is determined based on the second distance corresponding to the second base station and the second distance threshold.
[0213] In a possible implementation manner, the determining unit 1102 is configured to:
[0214] In response to the second distance corresponding to the second base station being greater than the second distance threshold, the network coverage mode corresponding to the target building is determined to be the second coverage mode, and the second coverage mode indicates that the base station is deployed outside the target residential area; in response to the second distance corresponding to the second base station being less than or equal to the second distance threshold, based on the second distance corresponding to the first base station and the third distance threshold, the network coverage mode corresponding to the target building is determined, and the second distance threshold is less than the third distance threshold.
[0215] In a possible implementation manner, the determining unit 1102 is configured to:
[0216] In response to the second distance corresponding to the first base station being less than or equal to the third distance threshold, the network coverage mode corresponding to the target building is determined to be the first coverage mode; in response to the second distance corresponding to the first base station being greater than the third distance threshold, the network coverage mode corresponding to the target building is determined based on the attribute information of the target residential area.
[0217] In a possible implementation, the attribute information is used to indicate the type or floor of the target residential area; and the determining unit 1102 is used to:
[0218] In response to the attribute information of the target residential area indicating that the type is a non-preset type and the floor is greater than the preset floor, the network coverage mode corresponding to the target building is determined to be the first coverage mode; in response to the attribute information of the target residential area indicating that the type is a preset type, or the floor is less than or equal to the preset floor, the network coverage mode corresponding to the target building is determined to be the second coverage mode.
[0219] In a possible implementation, the network coverage mode determining device 110 may further include a storage unit 1103 ( Fig.11 The storage unit 1103 stores a program or instruction. When the acquisition unit 1101 or the determination unit 1102 executes the program or instruction, the network coverage mode determination device 110 can execute the network coverage mode determination method in the above method embodiment.
[0220] Through the description of the above implementation methods, technicians in the relevant field can clearly understand that for the convenience and simplicity of description, only the division of the above functional modules is used as an example. In actual applications, the above functions can be assigned to different functional modules as needed, that is, the internal structure of the device is divided into different functional modules to complete all or part of the functions described above. The specific working process of the system, device and unit described above can refer to the corresponding process in the aforementioned method embodiment, and will not be repeated here.
[0221] An embodiment of the present application provides a computer program product including instructions. When the computer program product is executed on an electronic device, the electronic device executes the network coverage mode determination method in the above method embodiment.
[0222] An embodiment of the present application also provides a computer-readable storage medium, in which instructions are stored. When the instructions are executed on an electronic device, the electronic device executes the network coverage mode determination method in the method flow shown in the above method embodiment.
[0223] Among them, the computer-readable storage medium can be, for example, but not limited to, an electrical, magnetic, optical, electromagnetic, infrared, or semiconductor system, device or device, or any combination of the above. More specific examples of computer-readable storage media (a non-exhaustive list) include: an electrical connection with one or more wires, a portable computer disk, a hard disk, a random access memory (RAM), a read-only memory (ROM), an erasable programmable read only memory (EPROM), a register, a hard disk, an optical fiber, a portable compact disk read-only memory (CD-ROM), an optical storage device, a magnetic storage device, or any suitable combination of the above, or any other form of computer-readable storage medium known in the art. An exemplary storage medium is coupled to a processor so that the processor can read information from the storage medium and write information to the storage medium. Of course, the storage medium can also be a component of the processor. The processor and the storage medium can be located in an application specific integrated circuit (ASIC). In the embodiments of the present application, a computer-readable storage medium may be any tangible medium that contains or stores a program, which may be used by or in conjunction with an instruction execution system, apparatus, or device.
[0224] Since the network coverage mode determination device, computer-readable storage medium, and computer program product in the embodiments of the present application can be applied to the above method, the technical effects that can be obtained can also refer to the above method embodiments, and the embodiments of the present application will not be repeated here.
[0225] In the several embodiments provided in the present application, it should be understood that the disclosed systems, devices and methods can be implemented in other ways. For example, the device embodiments described above are only schematic. For example, the division of the units is only a logical function division. There may be other division methods in actual implementation, such as multiple units or components can be combined or integrated into another system, or some features can be ignored or not executed. Another point is that the mutual coupling or direct coupling or communication connection shown or discussed can be through some interfaces, indirect coupling or communication connection of devices or units, which can be electrical, mechanical or other forms.
[0226] The units described as separate components may or may not be physically separated, and the components shown as units may or may not be physical units, that is, they may be located in one place or distributed on multiple network units. Some or all of the units may be selected according to actual needs to achieve the purpose of the solution of this embodiment.
[0227] In addition, each functional unit in each embodiment of the present application may be integrated into one processing unit, or each unit may exist physically separately, or two or more units may be integrated into one unit.
[0228] The above are only specific implementations of the present application, but the protection scope of the present application is not limited thereto. Any changes or substitutions within the technical scope disclosed in the present application should be included in the protection scope of the present application. Therefore, the protection scope of the present application should be based on the protection scope of the claims.
Claims
1. A method for determining a network coverage mode, characterized in that: The method comprises: Obtaining a location of a target building in a target residential area, wherein the target building is a building whose network coverage does not meet the network coverage requirements; Based on the location of the target building, the boundary of the target residential area and the location of the target base station, the network coverage mode corresponding to the target building is determined, and the target base station is the base station closest to the target building among multiple base stations deployed outside the target residential area.
2. The method according to claim 1, characterized in that The determining, based on the location of the target building, the boundary of the target residential area, and the location of the target base station, a network coverage mode corresponding to the target building includes: Determining a first distance based on the location of the target building and the boundary of the target residential area, the first distance being the distance between the target building and the boundary of the target residential area; Determine a second distance based on the location of the target building and the location of the target base station, where the second distance is the distance between the target building and the target base station; Based on the first distance and the second distance, a network coverage mode corresponding to the target building is determined.
3. The method according to claim 2, characterized in that The determining, based on the first distance and the second distance, a network coverage mode corresponding to the target building includes: In response to the first distance being greater than a first distance threshold, determining that the network coverage mode corresponding to the target building is a first coverage mode, the first coverage mode indicating that network coverage equipment is deployed in the target residential area; In response to the first distance being less than or equal to the first distance threshold, a network coverage mode corresponding to the target building is determined based on the second distance.
4. The method according to claim 3, characterized in that The target base station includes a first base station and a second base station, and a signal frequency of the first base station is lower than a signal frequency of the second base station; The determining, based on the second distance, a network coverage mode corresponding to the target building includes: In response to a second distance corresponding to the first base station being less than or equal to a second distance threshold, determining that the network coverage mode corresponding to the target building is the first coverage mode; In response to the second distance corresponding to the first base station being greater than the second distance threshold, a network coverage mode corresponding to the target building is determined based on the second distance corresponding to the second base station and the second distance threshold.
5. The method according to claim 4, characterized in that The determining, based on the second distance corresponding to the second base station and the second distance threshold, a network coverage mode corresponding to the target building includes: In response to a second distance corresponding to the second base station being greater than the second distance threshold, determining that the network coverage mode corresponding to the target building is a second coverage mode, the second coverage mode indicating that a base station is deployed outside the target residential area; In response to the second distance corresponding to the second base station being less than or equal to the second distance threshold, the network coverage mode corresponding to the target building is determined based on the second distance corresponding to the first base station and a third distance threshold, and the second distance threshold is less than the third distance threshold.
6. The method according to claim 5, characterized in that The determining, based on the second distance and the third distance threshold corresponding to the first base station, the network coverage mode corresponding to the target building includes: In response to the second distance corresponding to the first base station being less than or equal to the third distance threshold, determining that the network coverage mode corresponding to the target building is the first coverage mode; In response to the second distance corresponding to the first base station being greater than the third distance threshold, a network coverage mode corresponding to the target building is determined based on the attribute information of the target residential area.
7. The method according to claim 6, characterized in that The attribute information is used to indicate the type or floor of the target residential area; The determining, based on the attribute information of the target residential area, a network coverage mode corresponding to the target building includes: In response to the attribute information indicating that the type of the target residential area is a non-preset type and the floor is greater than the preset floor, determining that the network coverage mode corresponding to the target building is the first coverage mode; In response to the attribute information of the target residential area indicating that the type is a preset type, or the floor is less than or equal to the preset floor, it is determined that the network coverage mode corresponding to the target building is the second coverage mode.
8. A network coverage mode determination device, characterized in that: The device comprises: An acquisition unit, used to acquire a location of a target building in a target residential area, wherein the target building is a building whose network coverage does not meet the network coverage requirement; A determination unit is used to determine the network coverage mode corresponding to the target building based on the location of the target building, the boundary of the target residential area and the location of the target base station, and the target base station is the base station closest to the target building among multiple base stations deployed outside the target residential area.
9. An electronic device, characterized in that: include: A processor and a communication interface; the communication interface is coupled to the processor, and the processor is used to run a computer program or instruction to implement the method for determining a network coverage mode as described in any one of claims 1-7.
10. A computer-readable storage medium, characterized in that: The computer-readable storage medium stores instructions. When the electronic device executes the instructions, the electronic device executes the network coverage mode determination method according to any one of claims 1 to 7.
11. A computer program product, characterized in that The computer program product includes computer instructions, and when the computer instructions are executed on an electronic device, the electronic device executes the method for determining a network coverage mode according to any one of claims 1 to 7.
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