Site planning processing method, device, equipment and storage medium

By collecting wireless network indicator parameters and locations, combining them with full site planning information, and determining the site planning method, the problems of low efficiency and poor accuracy in existing technologies are solved, and efficient and accurate site planning is achieved.

CN116347457BActive Publication Date: 2025-09-30CHINA UNITED NETWORK COMM GRP CO LTD
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Patent Information

Application Number
CN202111604594.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-12-24
Publication Date
2025-09-30
Estimated Expiration
2041-12-24

AI Technical Summary

Technical Problem

Existing site planning methods are inefficient and inaccurate, and are unable to obtain site planning results efficiently and accurately.

Method used

By collecting the wireless network indicator parameter values ​​and locations of the test points and combining them with pre-stored site planning information, it is determined whether site planning is needed, and the planning results are optimized based on the abnormal causes and regional site information.

Benefits of technology

It improves the accuracy and efficiency of site planning, reduces the possibility of blind planning, and ensures the accuracy and immediacy of site planning results.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application provides a site planning processing method, device, equipment and storage medium. The method includes: collecting wireless network indicator parameter values ​​of a test point and the location of the test point; determining whether to perform site planning on the test point based on the wireless network indicator parameter values ​​of the test point; if it is determined that site planning is to be performed on the test point, determining the site planning result of the test point based on the location of the test point and pre-stored site planning information; the site planning information includes site information of built sites in the area where the test point is located, site information of sites under construction, and site information of sites to be built; the site planning result is used to indicate a site planning method for optimizing the wireless network signal of the test point; and outputting the site planning result of the test point. The method of the present application can accurately perform site planning on the test point and improve the accuracy of the site planning result of the test point.
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Description

Technical Field

[0001] The present application relates to network communication technology, and in particular to a site planning processing method, apparatus, device and storage medium. Background Art

[0002] Site planning is the process of planning and deploying base stations based on communication needs and the surrounding environment. Correct and reasonable site planning is crucial for improving network quality and user experience, and for enabling the rapid growth of the mobile internet and the Internet of Things.

[0003] Currently, site planning primarily involves offline calculations based on collected network parameters such as signal-to-noise ratio (SNR). Neural network algorithms are then used to calculate the probability of required base stations. This results in the next step of site planning, providing a basis for subsequent site construction and planning. However, obtaining these site planning results suffers from low efficiency and poor accuracy.

[0004] Therefore, how to obtain site planning results efficiently and accurately is an urgent problem to be solved. Summary of the Invention

[0005] The present application provides a site planning processing method, apparatus, device and storage medium to solve the problem of how to intelligently analyze site planning results after obtaining wireless network indicator parameters.

[0006] In a first aspect, the present application provides a site planning processing method, the method comprising:

[0007] Collecting wireless network indicator parameter values ​​of test points and the locations of the test points;

[0008] Determining whether to perform site planning for the test point according to the wireless network indicator parameter value of the test point;

[0009] If it is determined that site planning is to be performed for the test point, determining a site planning result for the test point based on the location of the test point and pre-stored site planning information; the site planning information includes site information of existing sites, site information of sites under construction, and site information of sites to be built in the area where the test point is located; the site planning result is used to indicate a site planning method for optimizing the wireless network signal at the test point;

[0010] Output the site planning results of the test point.

[0011] Optionally, determining whether to perform site planning for the test point according to the wireless network indicator parameter value of the test point includes:

[0012] determining, based on the wireless network indicator parameter value of the test point and a threshold value corresponding to the wireless network indicator parameter value, whether a signal quality of the wireless network represented by the wireless network indicator parameter value of the test point is abnormal;

[0013] If the signal quality of the wireless network represented by the wireless network indicator parameter value of the test point is abnormal, determining whether to perform site planning for the test point is performed based on the cause of the abnormal signal quality of the wireless network represented by the wireless network indicator parameter value of the test point.

[0014] Optionally, the determining whether to perform site planning for the test point according to a cause of abnormal signal quality of the wireless network represented by the wireless network indicator parameter value of the test point includes:

[0015] If the abnormal signal quality of the wireless network is caused by weak coverage of the wireless network and / or insufficient capacity of the wireless network, determining to perform site planning for the test point;

[0016] If the reason why the signal quality of the wireless network is abnormal is that there is interference in the signal of the wireless network, it is determined that there is no need to perform site planning for the test point.

[0017] Optionally, determining the site planning result of the test point according to the location of the test point and pre-stored site planning information includes:

[0018] Determining whether there is a site within a preset range of the test point according to the location of the test point and the location of each site in the site planning information;

[0019] A site planning result of the test point is determined according to whether there is a site within a preset range of the test point.

[0020] Optionally, determining the site planning result of the test point according to whether a site exists within a preset range of the test point includes:

[0021] If there is no site within the preset range of the test point, determining that the site planning result of the test point is a new site;

[0022] Alternatively, if there is a first site within the preset range of the test point, the site planning result of the test point is determined based on the construction status of the first site in the site planning information and the cause of the abnormal signal quality of the wireless network represented by the wireless network indicator parameter value of the test point; wherein the construction status includes any one of the following: built status, under construction status, and to be built status.

[0023] Optionally, determining the site planning result of the test point based on the construction status of the first site in the site planning information and a cause of abnormal signal quality of the wireless network represented by a wireless network indicator parameter value of the test point includes:

[0024] If the construction status of the first site is in the constructed state, and the reason for the abnormal signal quality of the wireless network is weak coverage of the wireless network, determining the site planning result of the test point as follows: adjusting the antenna feeder of the first site;

[0025] Alternatively, if the construction status of the first site is already constructed, and the reason for the abnormal signal quality of the wireless network is insufficient capacity of the wireless network, determining the site planning result of the test point as follows: expanding the capacity of the first site;

[0026] Alternatively, if the construction status of the first site is in the constructed state, and the reason for the abnormal signal quality of the wireless network is weak coverage of the wireless network and insufficient capacity of the wireless network, determining the site planning result of the test point as follows: adjusting the antenna feed of the first site and / or expanding the capacity of the first site;

[0027] Alternatively, if the construction status of the first site is under construction or to be built, and the reason for the abnormal signal quality of the wireless network is weak coverage of the wireless network and / or insufficient capacity of the wireless network, then the site planning result of the test point is determined to be: speed up the construction of the first site.

[0028] Optionally, if the abnormal signal quality of the wireless network is caused by interference in the signal of the wireless network, the method further includes:

[0029] Information indicating that interference exists in a signal of the wireless network is output.

[0030] Optionally, before collecting the wireless network indicator parameter value of the test point and the location of the test point, the method further includes: receiving complaint information regarding the signal quality of the test point.

[0031] Optionally, the method further includes:

[0032] receiving update information for the site planning information;

[0033] The site planning information is updated according to the update information.

[0034] In a second aspect, the present application provides a site planning processing device, the device comprising:

[0035] A data collection module, configured to collect wireless network indicator parameter values ​​of a test point and the location of the test point;

[0036] A data processing module is configured to determine whether to perform site planning for the test point based on the wireless network indicator parameter value of the test point; if it is determined that site planning is to be performed for the test point, determining a site planning result for the test point based on the location of the test point and site planning information pre-stored in the site library management module; wherein the site planning information includes site information of existing sites, sites under construction, and sites to be constructed in the area where the test point is located; and the site planning result is used to indicate a site planning method for optimizing the wireless network signal at the test point;

[0037] The planning result output module is used to output the site planning result of the test point.

[0038] Optionally, the data processing module is specifically used to determine whether the signal quality of the wireless network represented by the wireless network indicator parameter value of the test point is abnormal based on the wireless network indicator parameter value of the test point and the threshold value corresponding to the wireless network indicator parameter value; if the signal quality of the wireless network represented by the wireless network indicator parameter value of the test point is abnormal, then according to the cause of the abnormal signal quality of the wireless network represented by the wireless network indicator parameter value of the test point, determine whether to perform site planning for the test point.

[0039] Optionally, the data processing module is specifically used to determine that site planning is to be performed on the test point if the reason for the abnormal signal quality of the wireless network is weak coverage of the wireless network and / or insufficient capacity of the wireless network; if the reason for the abnormal signal quality of the wireless network is interference with the signal of the wireless network, determine that site planning is not required for the test point.

[0040] Optionally, the data processing module is specifically used to determine whether there is a site within a preset range of the test point based on the location of the test point and the location of each site in the site planning information; and determine the site planning result of the test point based on whether there is a site within the preset range of the test point.

[0041] Optionally, the data processing module is specifically used to determine that the site planning result of the test point is a new site when there is no site within the preset range of the test point; or, when there is a first site within the preset range of the test point, determine the site planning result of the test point based on the construction status of the first site in the site planning information and the cause of the abnormal signal quality of the wireless network represented by the wireless network indicator parameter value of the test point; wherein the construction status includes any one of the following: built status, under construction status, and to be built status.

[0042] Optionally, the data processing module is specifically configured to: if the construction status of the first site is in the constructed state and the cause of the abnormal signal quality of the wireless network is weak coverage of the wireless network, determine the site planning result of the test point as: adjusting the antenna feed of the first site; or, if the construction status of the first site is in the constructed state and the cause of the abnormal signal quality of the wireless network is insufficient capacity of the wireless network, determine the site planning result of the test point as: expanding the capacity of the first site; or, if the construction status of the first site is in the constructed state and the cause of the abnormal signal quality of the wireless network is weak coverage of the wireless network and insufficient capacity of the wireless network, determine the site planning result of the test point as: adjusting the antenna feed of the first site and / or expanding the capacity of the first site; or, if the construction status of the first site is in the under-construction state or the to-be-constructed state and the cause of the abnormal signal quality of the wireless network is weak coverage of the wireless network and / or insufficient capacity of the wireless network, determine the site planning result of the test point as: accelerating the construction of the first site.

[0043] Optionally, the data processing module is further configured to output information indicating that interference exists in the signal of the wireless network through the planning result output module when the abnormal signal quality of the wireless network is caused by interference in the signal of the wireless network.

[0044] Optionally, the data processing module is further configured to receive complaint information regarding the signal quality of the test point before the data collection module collects the wireless network indicator parameter value of the test point and the location of the test point.

[0045] Optionally, the data processing module is further configured to receive update information for the site planning information; and update the site planning information in the site library management module according to the update information.

[0046] In a third aspect, an embodiment of the present application provides an electronic device, the electronic device comprising:

[0047] The collecting device collects the wireless network indicator parameter value of the test point and the location of the test point;

[0048] Memory stores computer-executable instructions;

[0049] The processor executes the computer-executable instructions stored in the memory to implement any of the above method steps.

[0050] In a fourth aspect, an embodiment of the present application provides a computer-readable storage medium, in which computer-executable instructions are stored. When the computer-executable instructions are executed by a processor, they are used to implement any of the above method steps.

[0051] The site planning processing method provided by the present application can collect data from the test point by the device responsible for collecting data, and determine whether site planning is needed for the test point based on the collected data. When it is determined that site planning is needed for the test point, the site planning result of the test point can be obtained by further combining the full amount of site planning information of the area to which the test point belongs. Since the full amount of site planning information includes all sites that have been planned in the area, that is, information including built sites, sites under construction, and sites to be built, the site planning of the test point can be accurately performed based on the full amount of site planning information, thereby improving the accuracy of the site planning result of the test point. In addition, the collection and site planning of the present application are performed by the same device, that is, the site planning result of the test point can be immediately obtained after the data is collected at the test point. Compared with the method of offline analysis after data collection, the method of the present application can improve the efficiency of site planning. BRIEF DESCRIPTION OF THE DRAWINGS

[0052] The accompanying drawings, which are incorporated in and constitute a part of this specification, illustrate embodiments consistent with the present application and, together with the description, serve to explain the principles of the present application.

[0053] Figure 1 A schematic diagram of an application scenario provided in an embodiment of the present application;

[0054] Figure 2 A flow chart of a site planning method provided in an embodiment of the present application;

[0055] Figure 3 A flowchart of another site planning method provided in an embodiment of the present application;

[0056] Figure 4 A schematic diagram of the structure of a site planning processing device provided in an embodiment of the present application;

[0057] Figure 5 A schematic diagram of the structure of an electronic device provided in an embodiment of the present application.

[0058] The above drawings illustrate specific embodiments of the present application, which will be described in more detail below. These drawings and the textual description are not intended to limit the scope of the present application in any way, but rather to illustrate the concepts of the present application to those skilled in the art by reference to specific embodiments. DETAILED DESCRIPTION

[0059] Exemplary embodiments will be described in detail herein, with examples illustrated in the accompanying drawings. In the following description, when referring to the drawings, identical numerals in different figures represent identical or similar elements, unless otherwise indicated. The embodiments described in the following exemplary embodiments are not intended to represent all embodiments consistent with the present application. Rather, they are merely examples of apparatus and methods consistent with certain aspects of the present application, as detailed in the appended claims.

[0060] The present application provides a site planning processing method. When performing site planning on a test point, not only can data used for site planning be directly collected, but also the site planning results of the test point can be accurately obtained based on the collected data and the full amount of site planning information of the area to which the test point belongs, thereby improving the efficiency and accuracy of site planning.

[0061] It should be understood that the site involved in this application refers to a wireless access network device that can provide a wireless network, that is, the wireless access network device is an access device that a terminal device uses to access the mobile communication system wirelessly, and can be a base station NodeB, an evolved base station eNodeB, a base station in a 5G mobile communication system or a new generation wireless (New Radio, NR) communication system, a base station in a future mobile communication system, an access node in a WiFi system, etc. The embodiments of this application do not limit the specific technology and specific device form adopted by the wireless access network device. In this application, the concepts of site, wireless access network device, and base station are equivalent, and this application does not distinguish between them.

[0062] Figure 1 A schematic diagram of an application scenario provided for this application, such as Figure 1 As shown, in this application scenario, the electronic device can be located at a test point, collect wireless network indicator parameter values ​​of the test point, and the location of the test point, and obtain the site planning results of the test point based on the collected wireless network indicator parameter values ​​of the test point, the location of the test point, and the pre-stored site planning information.

[0063] The electronic device of the present application may have collection functions, processing functions, and output functions, etc. For example, the electronic device may be provided with a wireless network card and a GPS, wherein the wireless network card is used to collect wireless network indicator parameter values ​​of the test point, and the GPS is used to collect the location of the test point.

[0064] The following specific embodiments describe in detail the technical solution of the present application and how the technical solution of the present application solves the above-mentioned technical problems. The following specific embodiments can be combined with each other, and the same or similar concepts or processes may not be repeated in some embodiments. The embodiments of the present application will be described below in conjunction with the accompanying drawings.

[0065] Figure 2 This is a flow chart of a site planning method provided in this application. Figure 2 As shown, the method may include:

[0066] S201. Collect wireless network indicator parameter values ​​of a test point and the location of the test point.

[0067] The test point can be a location randomly selected by the tester, or it can be a test point determined based on received complaint information regarding signal quality. Optionally, if the test point is determined based on received complaint information regarding signal quality, before step S201, the process can further include: receiving complaint information regarding the signal quality of the test point. The complaint information can, for example, carry information that can uniquely identify the test point, such as the location of the test point.

[0068] The wireless network indicator parameters can characterize the communication quality of the wireless network. For example, the wireless network indicator parameters may include the uplink packet loss rate of the wireless network, the reference signal received power of the wireless network, and the uplink rate of the wireless network.

[0069] The location of the test point is location information that can uniquely characterize the test point, for example, it can be the longitude and latitude of the current test location, or it can be the relative position in the area of ​​the test point, or it can be the address information of the test point, etc.

[0070] Regarding how to collect the wireless network indicator parameter values ​​of the test points and the locations of the test points, please refer to the existing technology and will not be described in detail.

[0071] The wireless network mentioned above refers to a communication network covering the test point, which may be, for example, a 5G communication network, a 4G communication network, etc.

[0072] S202: Determine whether to perform site planning for the test point based on the wireless network indicator parameter value of the test point.

[0073] In one possible implementation, a preset mapping relationship between wireless network indicator parameter values ​​and site planning may be used to determine whether to perform site planning for a test point based on the wireless network indicator parameter values ​​of the test point.

[0074] Another possible implementation method is to use a pre-trained model to determine whether to perform site planning for the test point based on the wireless network indicator parameter values ​​of the test point.

[0075] In another possible implementation, whether the signal quality of the wireless network represented by the wireless network indicator parameter value at the test point is abnormal may be determined based on the wireless network indicator parameter value at the test point and the threshold corresponding to each wireless network indicator parameter value. When it is determined that the signal quality of the wireless network represented by the wireless network indicator parameter value at the test point is abnormal, a determination is made as to whether site planning should be performed for the test point based on the cause of the abnormal signal quality of the wireless network represented by the wireless network indicator parameter value at the test point.

[0076] When it is determined that site planning is to be performed on the test point, it indicates that the wireless network of the test point cannot meet the requirements of actual use and needs to be optimized, and step S203 is executed.

[0077] Optionally, if it is determined that site planning is not required for the test point, indicating that the wireless network of the test point does not need to be optimized, indication information indicating that “site planning is not required” may be output.

[0078] S203: Determine a site planning result for the test point based on the location of the test point and pre-stored site planning information; the site planning result is used to indicate a site planning method for optimizing the wireless network signal of the test point.

[0079] The pre-stored site planning information is the complete site planning information of the area where the test point is located, including site information of built sites, site information of sites under construction, and site information of sites to be built in the area where the test point is located.

[0080] Site information may include: site status, site area, site location, and information about the wireless network provided by the site. Site status may include "built," "under construction," or "to be built." If the site is in the "built" state, it indicates that the site is already built and operational. If the site is in the "under construction" state, it indicates that the site is under construction, meaning it is already under construction. If the site is in the "to be built" state, it indicates that the site is planned but construction has not yet begun.

[0081] The area where the site is located may be the area involved in the site planning. The area may be consistent with the administrative area or may be different, depending on the scope defined by the site planning.

[0082] The location of the site is represented in the same manner as the location of the test point collected in the above step S201, for example, it can be longitude and latitude.

[0083] The wireless network information provided by a site may include, for example, the network type and / or the frequency band of the wireless network. The network type refers to the mobile communication technology supported by the wireless network, such as 4G or 5G. The frequency band of the site corresponds to the network type and represents the signal frequency band that the wireless network can provide.

[0084] The pre-stored site planning information may be pre-stored or sent to the electronic device by other devices.

[0085] As a possible implementation method, it is possible to determine whether there is a site within the preset range of the test point based on the location of the test point and the location of each site in the site planning information; and determine the site planning result of the test point based on whether there is a site within the preset range of the test point.

[0086] As another possible implementation, the site information of the site planning information may further include the area covered by each site, and the site planning result of the test point may be determined based on whether the location of the test point falls within the area covered by a certain site.

[0087] Optionally, the site planning information can be updated in the following manner, for example, based on user input or site planning information update information sent by other devices. The update information referred to herein can be content that has changed in the site planning information, or it can be new site planning information. When the update information is content that has changed in the site planning information, the stored site planning information can be processed based on the changed content, for example, adding site information for one or more sites, deleting site information for one or more sites, replacing site information for one or more sites, etc. When the update information is new site planning information, the new site planning information can be used to replace the originally stored site planning information.

[0088] By updating the site planning information, the accuracy of the site planning information stored in the electronic device can be ensured, so that the site planning results of the test points can be accurately obtained based on the accurate site planning information, further improving the accuracy of the site planning results of the test points.

[0089] S204: Output the site planning result of the test point.

[0090] For example, if the electronic device includes an output component, such as a display screen or a speaker, the site planning results of the test points can be output via the output component. When the electronic device displays the site planning results of the test points on a display screen, the site planning results of the test points can be converted into a file in a preset format and then displayed.

[0091] The electronic device may also transmit the site planning results of the test point to other electronic devices. Such other electronic devices may be terminals held by testers or backend servers used for data storage or analysis. When transmitting the site planning results of the test point to other electronic devices, the electronic device may convert the site planning results of the test point to a file in a pre-set format and then transmit the file in the pre-set format to the other electronic devices.

[0092] Optionally, the electronic device may also store the site planning results for the test point. When subsequent personnel need to use the site planning results for the test point, the site planning results for the test point may be exported from the electronic device. When the electronic device stores the site planning results for the test point, the site planning results for the test point may be converted into a file in a preset format and then stored in the file in the preset format.

[0093] For example, when the tester needs to conduct a secondary analysis of the site planning of the test point, the site planning result of the test point can be exported from the electronic device as a basis for the secondary analysis. It should be understood that the secondary analysis means that after a period of time after obtaining the site planning result of the test point and making corresponding processing based on it, the site information in the file exported from the electronic device is used again. Figure 2 The method flow shown performs site planning processing on the test point to determine whether the wireless network of the test point needs secondary site planning.

[0094] The site planning processing method provided by the present application can collect data from the test point by the device responsible for collecting data, and determine whether site planning is needed for the test point based on the collected data. When it is determined that site planning is needed for the test point, the site planning result of the test point can be obtained by further combining the full amount of site planning information of the area to which the test point belongs. Since the full amount of site planning information includes all sites that have been planned in the area, that is, information including built sites, sites under construction, and sites to be built, the site planning of the test point can be accurately performed based on the full amount of site planning information, thereby improving the accuracy of the site planning result of the test point. In addition, the collection and site planning of the present application are performed by the same device, that is, the site planning result of the test point can be immediately obtained after the data is collected at the test point. Compared with the method of offline analysis after data collection, the method of the present application can improve the efficiency of site planning.

[0095] The following describes how to determine whether the signal quality of the wireless network represented by the wireless network indicator parameter value of the test point is abnormal based on the wireless network indicator parameter value of the test point and the threshold value corresponding to the wireless network indicator parameter value, and how to determine whether to perform site planning for the test point based on the cause of the abnormal signal quality of the wireless network represented by the wireless network indicator parameter value of the test point when the signal quality of the wireless network represented by the wireless network indicator parameter value of the test point is abnormal, taking the wireless network indicator parameter value of the test point as an example.

[0096] The uplink packet loss rate can be compared with the packet loss rate threshold corresponding to the uplink packet loss rate to determine whether the uplink packet loss rate is abnormal. For example, when the uplink packet loss rate is greater than the packet loss rate threshold corresponding to the uplink packet loss rate, it indicates that the test point may be affected by weak signal coverage or a large number of user connections, that is, the uplink packet loss rate is determined to be abnormal. When the uplink packet loss rate is less than or equal to the packet loss rate threshold corresponding to the uplink packet loss rate, it indicates that the test point is not affected by weak signal coverage or a large number of user connections, that is, the uplink packet loss rate is determined to be normal.

[0097] The reference signal received power can be compared with the power threshold corresponding to the reference signal received power to determine whether the reference signal received power is abnormal. For example, when the reference signal received power is less than the power threshold corresponding to the reference signal received power, it indicates that the test point may be affected by weak signal coverage, that is, the reference signal received power is determined to be abnormal. When the reference signal received power is greater than or equal to the power threshold corresponding to the reference signal received power, it indicates that the test point is not affected by weak signal coverage, that is, the reference signal received power is determined to be normal.

[0098] The uplink rate can be compared with the rate threshold corresponding to the uplink rate to determine whether the uplink rate is abnormal. For example, when the uplink rate is less than the rate threshold corresponding to the uplink rate, it indicates that the test point may be affected by weak signal coverage, a large number of user connections, or interference, that is, the uplink rate is determined to be abnormal. When the uplink rate is greater than or equal to the rate threshold corresponding to the uplink rate, it indicates that the test point is not affected by weak signal coverage, a large number of user connections, or interference, that is, the uplink rate is determined to be normal.

[0099] Then, based on these results, it is determined whether the signal quality of the wireless network represented by the wireless network indicator parameter value of the test point is abnormal. For example, the following table 1 may be included:

[0100] Table 1

[0101]

[0102] It should be understood that the above-mentioned abnormal and normal are relative concepts, which are specifically related to the thresholds used to judge wireless network indicator parameters, or whether they are related to the conditions for site planning, which can be determined according to the user's needs for site planning.

[0103] If the signal quality of the wireless network represented by the wireless network indicator parameter value at the test point is normal, i.e., there is no abnormality, it can be determined that site planning is not necessary for the test point. If the signal quality of the wireless network represented by the wireless network indicator parameter value at the test point is abnormal, it can be further determined whether site planning is to be performed for the test point based on the cause of the abnormal signal quality of the wireless network represented by the wireless network indicator parameter value at the test point.

[0104] For example, if the reason for the abnormal signal quality of the wireless network is weak coverage of the wireless network and / or insufficient capacity of the wireless network, it is determined that site planning is required for the test point; if the reason for the abnormal signal quality of the wireless network is interference with the signal of the wireless network, it is determined that there is no need to perform site planning for the test point.

[0105] Optionally, if interference is determined to be present in the wireless network signal based on the wireless network signal quality, this indicates that the signal quality issue at the test point is not caused by weak signal coverage or a large number of user connections. In this case, interference needs to be eliminated to resolve the communication issue. In this scenario, for example, information indicating interference may be output.

[0106] Referring to Table 1 above, taking the wireless network indicator parameters of uplink packet loss rate, reference signal received power, and uplink rate as an example, when the uplink packet loss rate and uplink rate are both abnormal, and the reference signal received power is normal, it can be concluded that the test point may be due to a large number of user connections, that is, insufficient wireless network capacity, resulting in the need for site planning; when the reference signal received power and uplink rate are both abnormal, and the uplink packet loss rate is normal, it can be concluded that the test point may be due to weak signal coverage, resulting in the need for site planning; when the uplink packet loss rate, reference signal received power, and uplink rate are all abnormal, it can be concluded that the test point wireless network capacity is insufficient and weak coverage exists, resulting in the need for site planning; when the uplink packet loss rate and reference signal received power are normal but the uplink rate is abnormal, it can be concluded that the test point may be due to interference, resulting in abnormal communication signal quality, but no site planning is required. It should be understood that the cause of abnormal wireless network signal quality can be determined based on the above-mentioned wireless network indicator parameters, and will not be elaborated here.

[0107] The site planning method provided in this application can determine whether the signal quality of the wireless network at a test point is adequate by collecting wireless network indicator parameter values. If an anomaly is present, the method can determine whether site planning is necessary for the test point based on the cause of the anomaly. When determining that site planning is necessary for the test point, the method can further combine the full amount of site planning information for the area to which the test point belongs to obtain a site planning result for the test point. This reduces the possibility of blindly planning new sites and improves the accuracy of the site planning results for the test point.

[0108] The following describes how to determine the site planning result for a test point by taking as an example the following steps of determining whether a site exists within a preset range of the test point based on the location of the test point and the location of each site in the site planning information; and determining the site planning result for the test point based on whether a site exists within the preset range of the test point.

[0109] Figure 3 A flow chart of another site planning processing method provided for this application is as follows: Figure 3 As shown, the method includes the following steps:

[0110] S301: Determine whether there is a site within a preset range of the test point based on the location of the test point and the location of each site in the site planning information.

[0111] The preset range of the test point may be, for example, a range enclosed by the test point as the origin. The preset range may be, for example, a circular area or a rectangular area, etc., and may be specifically set according to actual needs.

[0112] For example, if the location of the test point and the locations of each site are both longitude and latitude, the distance between the two can be calculated based on the longitude and latitude of the test point and the longitude and latitude of each site in the pre-stored site planning information.

[0113] When it is determined based on the distance that a certain site (taking the first site as an example) is located within the preset range of the test point, it is determined that the site is located within the preset range of the test point, and step S302 is further executed.

[0114] When it is determined based on the distance that all sites in the site planning information are not located within the preset range of the test point, it is determined that no site is located within the preset range of the test point, and step S303 is further executed.

[0115] S302: Determine a site planning result of the test point based on the construction status of the first site in the site planning information and the cause of abnormal signal quality of the wireless network represented by the wireless network indicator parameter value of the test point.

[0116] When it is determined based on the distance that a certain site (taking the first site as an example) is located within the preset range of the test point, it indicates that there is a pre-planned first site near the test point. The site planning result of the test point can be determined based on the construction status of the first site and the cause of the abnormal signal quality of the wireless network represented by the wireless network indicator parameter value of the test point.

[0117] Exemplary examples include the following:

[0118] If the construction status of the first site is already constructed, and the reason for the abnormal signal quality of the wireless network is weak coverage of the wireless network, determining the site planning result of the test point is: adjusting the antenna feed of the first site.

[0119] Alternatively, if the construction status of the first site is already built, and the reason for the abnormal signal quality of the wireless network is insufficient capacity of the wireless network, the site planning result of the test point is determined as: expanding the capacity of the first site.

[0120] Alternatively, if the construction status of the first site is already built, and the reason for the abnormal signal quality of the wireless network is weak coverage of the wireless network and insufficient capacity of the wireless network, then the site planning result of the test point is determined as: adjusting the antenna feed of the first site and / or expanding the capacity of the first site.

[0121] Alternatively, if the construction status of the first site is under construction or to be built, and the reason for the abnormal signal quality of the wireless network is weak coverage of the wireless network and / or insufficient capacity of the wireless network, then the site planning result of the test point is determined to be: speed up the construction of the first site.

[0122] S303: Determine that the site planning result of the test point is a newly added site.

[0123] When it is determined based on the distance that all sites in the site planning information are not within the preset range of the test point, it indicates that there are no pre-planned sites near the test point, and it is necessary to add new sites to optimize the signal quality of the wireless network of the test point. The site planning result of the test point is determined to be a new site.

[0124] The location of the new site can be planned and processed offline, or it can be further determined by the electronic device in this application. For example, the electronic device can further combine the map data within the preset range of the test point to determine the surrounding environment within the preset range of the test point, and then determine the location of the new site based on the site selection conditions and the surrounding environment. Of course, other determination methods can also be used, and this application is not limited to this.

[0125] The site planning processing method provided by this application allows the device responsible for data collection to collect data at a test point and, based on the collected data, determine whether site planning is necessary for the test point. When it is determined that site planning is necessary for the test point, the method can further combine the full amount of site planning information for the area to which the test point belongs to obtain a site planning result for the test point. Therefore, this application can accurately perform site planning for the test point, improving the accuracy of the site planning results for the test point.

[0126] Based on the site planning processing method provided in the above embodiment, the embodiment of the present application further provides an embodiment of a device for implementing each step and method in the above method embodiment.

[0127] Figure 4 A schematic diagram of the structure of a site planning processing device provided in an embodiment of the present application is shown as follows: Figure 4 The device includes: a data collection module 401, a data processing module 402, a site library management module 403, and a planning result output module 404.

[0128] The data collection module 401 is used to collect the wireless network indicator parameter values ​​of the test point and the location of the test point;

[0129] Data processing module 402 is configured to determine whether to perform site planning for the test point based on the wireless network indicator parameter values ​​of the test point. If site planning is determined to be performed for the test point, a site planning result for the test point is determined based on the location of the test point and the site planning information pre-stored in site library management module 403. The site planning information includes site information of existing sites, sites under construction, and sites to be constructed in the area where the test point is located. The site planning result is used to indicate a site planning method for optimizing the wireless network signal at the test point.

[0130] The planning result output module 404 is used to output the site planning result of the test point.

[0131] Optionally, the data processing module 402 is specifically used to determine whether the signal quality of the wireless network represented by the wireless network indicator parameter value of the test point is abnormal based on the wireless network indicator parameter value of the test point and the threshold value corresponding to the wireless network indicator parameter value; if the signal quality of the wireless network represented by the wireless network indicator parameter value of the test point is abnormal, then determine whether to perform site planning for the test point based on the cause of the abnormal signal quality of the wireless network represented by the wireless network indicator parameter value of the test point.

[0132] For example, the data processing module 402 is specifically used to determine that site planning is to be performed on the test point if the reason for the abnormal signal quality of the wireless network is weak coverage of the wireless network and / or insufficient capacity of the wireless network; if the reason for the abnormal signal quality of the wireless network is interference with the signal of the wireless network, it is determined that there is no need to perform site planning on the test point.

[0133] In this implementation, a possible implementation is that the data processing module 402 is also used to output information indicating that there is interference in the signal of the wireless network through the planning result output module 404 when the reason for the abnormal signal quality of the wireless network is interference in the signal of the wireless network.

[0134] Optionally, the data processing module 402 is specifically used to determine whether there is a site within the preset range of the test point based on the location of the test point and the location of each site in the site planning information; and determine the site planning result of the test point based on whether there is a site within the preset range of the test point.

[0135] For example, the data processing module 402 is specifically used to determine that the site planning result of the test point is a new site when there is no site within the preset range of the test point; or, when there is a first site within the preset range of the test point, determine the site planning result of the test point based on the construction status of the first site in the site planning information and the reason for the abnormal signal quality of the wireless network represented by the wireless network indicator parameter value of the test point; wherein the construction status includes any one of the following: built state, under construction state, and to be built state.

[0136] Exemplarily, the data processing module 402 is specifically configured to, if the construction status of the first site is already constructed and the cause of the abnormal signal quality of the wireless network is weak coverage of the wireless network, determine the site planning result of the test point as follows: adjusting the antenna feed of the first site; or, if the construction status of the first site is already constructed and the cause of the abnormal signal quality of the wireless network is insufficient capacity of the wireless network, determine the site planning result of the test point as follows: expanding the capacity of the first site; or, if the construction status of the first site is already constructed and the cause of the abnormal signal quality of the wireless network is weak coverage of the wireless network and insufficient capacity of the wireless network, determine the site planning result of the test point as follows: adjusting the antenna feed of the first site and / or expanding the capacity of the first site; or, if the construction status of the first site is under construction or to be constructed and the cause of the abnormal signal quality of the wireless network is weak coverage of the wireless network and / or insufficient capacity of the wireless network, determine the site planning result of the test point as follows: accelerating the construction of the first site.

[0137] Optionally, the data processing module 402 is further configured to receive complaint information regarding the signal quality of the test point before the data collection module 401 collects the wireless network indicator parameter value of the test point and the location of the test point.

[0138] Optionally, the data processing module 402 is further configured to receive update information for the site planning information; and update the site planning information in the site library management module 403 according to the update information.

[0139] The device of the embodiment of the present application can be used to perform Figure 2-Figure 3 The technical solutions of the illustrated method embodiments have similar implementation principles and technical effects and are not further described here. For example, the above-mentioned apparatus can be implemented in software or hardware. Taking hardware as an example, the above-mentioned apparatus can be, for example, the aforementioned electronic device, or a chip in the electronic device, such as a processor.

[0140] Figure 5 This is a schematic diagram of the structure of an electronic device provided in this application. Figure 5 As shown, the electronic device may include: at least one acquisition device 501, a processor 502 and a memory 503.

[0141] The collecting device 501 is used to collect the wireless network indicator parameter values ​​of the test points and the locations of the test points. The collecting device 501 may include, for example: a wireless network card and a GPS.

[0142] The memory 503 is used to store programs. Specifically, the programs may include program codes, and the program codes include computer operation instructions.

[0143] The memory 503 may include a high-speed RAM memory, and may also include a non-volatile memory (NVM), such as at least one disk memory.

[0144] The processor 502 is configured to execute computer-executable instructions stored in the memory 503 to implement the data query method described in the aforementioned method embodiment. The processor 502 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.

[0145] Optionally, the electronic device may further include a display device 504 and a communication interface. The display device 504 is used to display the results of information processing. In a specific implementation, if the communication interface, display device 504, memory 503, processor 502, and acquisition device 501 are implemented independently, the communication interface, display device 504, memory 503, processor 502, and acquisition device 501 may be interconnected via a bus and communicate with each other. The bus may be an Industry Standard Architecture (ISA) bus, a Peripheral Component Interconnect (PCI) bus, or an Extended Industry Standard Architecture (EISA) bus. Buses can be categorized as address buses, data buses, control buses, etc., but this does not mean that there is only one bus or only one type of bus.

[0146] Optionally, in a specific implementation, if the communication interface, display device 504, memory 503, processor 502 and acquisition device 501 are integrated on a chip, the communication interface, display device 504, memory 503, processor 502 and acquisition device 501 can complete communication through an internal interface.

[0147] The present application also provides a computer-readable storage medium, which may include: a USB flash drive, a mobile hard disk, a read-only memory (ROM), a random access memory (RAM), a disk or an optical disk, and other media that can store program codes. Specifically, the computer-readable storage medium stores program instructions, and the program instructions are used for the methods in the above embodiments.

[0148] Those skilled in the art will readily appreciate other embodiments of the present application after considering the specification and practicing the invention disclosed herein. This application is intended to cover any variations, uses, or adaptations of the present application that follow the general principles of the present application and include common knowledge or customary techniques in the art not disclosed herein. The description and examples are to be considered as exemplary only, and the true scope and spirit of the present application are indicated by the following claims.

[0149] It should be understood that the present application is not limited to the exact structure described above and shown in the drawings, and that various modifications and changes may be made without departing from the scope thereof. The scope of the present application is limited only by the appended claims.

Claims

1. A site planning method, characterized in that: The method comprises: Collecting wireless network indicator parameter values ​​of test points and the locations of the test points; Determining a cause of abnormal signal quality of the wireless network based on multiple wireless network indicator parameter values ​​at the test point and thresholds corresponding to the wireless network indicator parameter values; wherein the cause of abnormal signal quality of the wireless network includes weak coverage of the wireless network, insufficient capacity of the wireless network, or interference with the signal of the wireless network; If the abnormal signal quality of the wireless network is caused by weak coverage of the wireless network and / or insufficient capacity of the wireless network, determining whether there is a site within a preset range of the test point based on the location of the test point and pre-stored full site planning information; the site planning information includes site information of existing sites, site information of sites under construction, and site information of sites to be built in the area where the test point is located; If there is no site within the preset range of the test point, determining that the site planning result of the test point is a new site; Alternatively, if a first site exists within a preset range of the test point, determining a site planning result for the test point based on the construction status of the first site in the site planning information and the cause of the abnormal signal quality of the wireless network represented by the wireless network indicator parameter value of the test point; wherein the construction status includes any one of the following: a constructed state, an under-construction state, and a to-be-constructed state; and the site planning result includes adjusting the antenna feed of the first site, expanding the capacity of the first site, or accelerating the construction of the first site; If the reason why the signal quality of the wireless network is abnormal is that there is interference in the signal of the wireless network, determining that there is no need to perform site planning for the test point; Output the site planning results of the test point.

2. The method according to claim 1, characterized in that The determining, based on the construction status of the first site in the site planning information and the cause of abnormal signal quality of the wireless network represented by the wireless network indicator parameter value of the test point, a site planning result of the test point includes: If the construction status of the first site is in the constructed state, and the reason for the abnormal signal quality of the wireless network is weak coverage of the wireless network, determining the site planning result of the test point as follows: adjusting the antenna feeder of the first site; Alternatively, if the construction status of the first site is already constructed, and the reason for the abnormal signal quality of the wireless network is insufficient capacity of the wireless network, determining the site planning result of the test point as follows: expanding the capacity of the first site; Alternatively, if the construction status of the first site is in the constructed state, and the reason for the abnormal signal quality of the wireless network is weak coverage of the wireless network and insufficient capacity of the wireless network, determining the site planning result of the test point as follows: adjusting the antenna feed of the first site and / or expanding the capacity of the first site; Alternatively, if the construction status of the first site is under construction or to be built, and the reason for the abnormal signal quality of the wireless network is weak coverage of the wireless network and / or insufficient capacity of the wireless network, then the site planning result of the test point is determined to be: speed up the construction of the first site.

3. The method according to claim 1, characterized in that If the abnormal signal quality of the wireless network is caused by interference in the signal of the wireless network, the method further includes: Information indicating that interference exists in a signal of the wireless network is output.

4. The method according to claim 1, wherein Before collecting the wireless network indicator parameter values ​​of the test points and the locations of the test points, the method further includes: Receive complaint information regarding signal quality of the test point.

5. The method according to claim 1, wherein The method further comprises: receiving update information for the site planning information; The site planning information is updated according to the update information.

6. A site planning processing device, characterized in that: The device comprises: A data collection module, configured to collect various wireless network indicator parameter values ​​of a test point, as well as the location of the test point; A data processing module, configured to determine a cause of abnormal signal quality of the wireless network based on the wireless network indicator parameter value of the test point and a threshold value corresponding to the wireless network indicator parameter value; wherein the cause of abnormal signal quality of the wireless network includes weak coverage of the wireless network, insufficient capacity of the wireless network, or interference in the signal of the wireless network; if the cause of abnormal signal quality of the wireless network is weak coverage of the wireless network and / or insufficient capacity of the wireless network, then determining a site planning result of the test point based on the location of the test point and the full site planning information pre-stored in the site library management module; wherein the site planning information includes site information of built sites, site information of sites under construction, and site information of sites to be built in the area where the test point is located; the site planning result is used to indicate a site planning method for optimizing the wireless network signal of the test point; A planning result output module, used to output the site planning result of the test point; The data processing module is specifically configured to determine whether there is a site within a preset range of the test point based on the location of the test point and the location of each site in the site planning information; and determine a site planning result for the test point based on whether there is a site within the preset range of the test point. The data processing module is specifically configured to determine, when no site is within a preset range of the test point, that the site planning result of the test point is a newly added site; or, when a first site exists within the preset range of the test point, determine the site planning result of the test point based on the construction status of the first site in the site planning information and the cause of the abnormal signal quality of the wireless network represented by the wireless network indicator parameter value of the test point; wherein the construction status includes any one of the following: constructed state, under construction state, and to-be-constructed state; and the site planning result includes adjusting the antenna feed of the first site, expanding the capacity of the first site, or accelerating the construction of the first site.

7. An electronic device, characterized in that: The electronic device includes: an acquisition device, a processor, and a memory communicatively connected to the processor; The collecting device collects the wireless network indicator parameter value of the test point and the location of the test point; The memory stores computer-executable instructions; The processor executes the computer-executable instructions stored in the memory to implement the method according to any one of claims 1 to 5.

8. A computer-readable storage medium, characterized in that The computer-readable storage medium stores computer-executable instructions, which are used to implement the site planning processing method according to any one of claims 1 to 5 when executed by a processor.

Citation Information

Patent Citations

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    CN111898787A