Communication base station intelligent shutdown control method and device, electronic equipment and storage medium

By acquiring the load connection status and geographical location of communication base stations, the channel output is adjusted to meet communication needs, solving the problems of base station energy waste and signal instability, and realizing flexible energy management and stable signal transmission.

CN116614868BActive Publication Date: 2026-01-09BOXIN COMM CO LTD
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Patent Information

Application Number
CN202310601087.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-05-25
Publication Date
2026-01-09
Estimated Expiration
2043-05-25

AI Technical Summary

Technical Problem

The existing signal output adjustment methods of communication base stations lack flexibility, resulting in high-demand areas being unable to meet communication needs and wasting energy. Furthermore, the existing channel shutdown does not take into account actual usage requirements, affecting network signal stability and increasing energy costs.

Method used

By acquiring the communication load connection status of communication base stations, the signal consumption is determined and compared with the output. Channels are adjusted according to geographical location and communication needs, and unnecessary channels are shut down to avoid waste and optimize energy consumption.

Benefits of technology

It enables flexible signal output adjustment, reduces energy consumption costs, ensures the stability of communication load and normal use within the coverage area, and extends the life of base stations.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The application relates to a communication base station intelligent shutdown control method and device, electronic equipment and a storage medium. The method comprises the following steps: acquiring a communication load connection condition of a communication base station; determining a signal consumption amount at a current time according to the communication load connection condition, comparing a current signal output amount of the communication base station with the signal consumption amount, and determining whether the current signal output amount is higher than the signal consumption amount; if the current signal output amount is higher than the signal consumption amount, acquiring a geographic position of the communication base station; determining a communication demand at the current time according to the geographic position; and sending a shutdown signal to a base station controller corresponding to the communication base station to shut down a plurality of channels according to the communication demand and the signal consumption amount.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of communication base stations, in particular to a communication base station intelligent shutdown control method and device, electronic equipment and storage medium. BACKGROUND

[0002] With the development of communication construction, each operator often needs to set up at least one communication base station in different areas to meet the communication demand. However, due to the vast territory, each operator may need to establish hundreds or thousands of base stations to achieve the purpose of communication construction. Such a large number of base stations also brings great challenges to base station maintenance and energy consumption control. On the one hand, it is necessary to ensure normal communication, and on the other hand, it is necessary to save energy and reduce consumption, and to compress the maintenance cost of the base station, so it is necessary to intelligently upgrade the base station maintenance and production link for fine management and precise control.

[0003] However, due to the use of base stations in many types such as factories, shopping malls, etc., the demand for base stations in different locations is quite different. At present, the base station signal output adjustment method is mostly to uniformly adjust all base stations, which may not meet the needs of some areas with high demand for communication base stations, which will affect the normal use of users in the area. SUMMARY

[0004] The present application provides a communication base station intelligent shutdown control method, device, electronic equipment and storage medium to solve the above technical problems.

[0005] In a first aspect, the present application provides a communication base station intelligent shutdown control method, comprising:

[0006] obtaining the communication load connection of the communication base station;

[0007] According to the communication load connection, determine the signal consumption at the current time, and compare the current signal output of the communication base station with the signal consumption to determine whether the current signal output is higher than the signal consumption;

[0008] If the current signal output is higher than the signal consumption, the geographic position of the communication base station is obtained;

[0009] According to the geographic position, determine the communication demand at the current time;

[0010] According to the communication demand and the signal consumption, send a shutdown signal to the base station controller corresponding to the communication base station to shut down some channels.

[0011] By the method provided in the application, the communication load connection of a communication base station can be acquired first, and the signal consumption at the current moment is determined according to the communication load connection. The current signal output of the communication base station is compared with the signal consumption. If the current signal output is higher than the signal consumption, it indicates that signal waste may exist at the current moment. At this time, the geographic position of the communication base station can be retrieved, and the communication demand of the communication base station at the current moment is determined according to the geographic position. Then, according to the communication demand and the signal consumption, a shutdown signal is sent to the base station controller corresponding to the communication base station to shut down some channels, so as to avoid excessive waste of wireless signals. At the same time, the energy consumption cost of the communication base station can also be reduced. In addition, considering that the geographic positions established by different communication base stations are different, the communication demands are also different. Therefore, the method of the application can also more flexibly adjust the shutdown mode, so as to ensure that the energy consumption cost can be effectively saved, and the normal use of the connected communication load in the coverage range corresponding to the communication base station can be ensured.

[0012] Optionally, the determining of the communication demand at the current moment according to the geographic position comprises:

[0013] According to the geographic position and a preset information base, the coverage range of the communication base station is acquired, and the use environment of the communication base station is determined according to the coverage range. The preset information base stores a plurality of communication base station related information. The related information comprises at least one of construction time, coverage range, geographic position, and load type.

[0014] According to the use environment, the load type and the load quantity connected to the communication base station are determined.

[0015] According to the load type and the load quantity, the ideal signal output value of the communication base station is determined, and the ideal signal output value is taken as the communication demand of the geographic position.

[0016] Optionally, the determining of the use environment of the communication base station according to the coverage range comprises:

[0017] The communication load connection of the communication base station in the historical period within the coverage range is acquired. The communication load connection comprises the number of load connections and the load type.

[0018] According to the number of load connections in each sub historical period, the load type is screened, and the use environment of the communication base station is determined according to the screening result.

[0019] Optionally, the method further comprises:

[0020] If the current signal output is lower than the signal consumption, the abnormal reason why the current signal output is lower than the signal consumption is analyzed according to the communication load connection.

[0021] if it is determined that the abnormality is irrelevant to the number of the loads connected to the communication base station, obtaining operation data of the communication base station;

[0022] inputting the operation data into a preset data processing model to enable the preset data processing model to detect whether the operation data is abnormal, and determining abnormal data according to a detection result;

[0023] determining an abnormal position in the communication base station where the abnormal data is generated according to the abnormal data.

[0024] Optionally, the method further comprises:

[0025] inputting the abnormal position and the abnormal data into a preset danger analysis model to determine a danger level of the abnormal position existing the abnormal data at a current time according to an analysis result;

[0026] adjusting a plurality of channels of the communication base station according to the danger level.

[0027] Optionally, the sending of the shutdown signal to the base station controller corresponding to the communication base station to shut down the plurality of channels according to the communication demand and the signal consumption amount comprises:

[0028] determining optimal signal output data of the communication base station at the current time according to the communication demand and the signal consumption amount;

[0029] determining a shutoff channel according to the optimal signal output data, and sending a shutdown signal to the base station controller to shut down the shutoff channel;

[0030] receiving a feedback signal of the base station controller to the shutdown signal, and determining whether the plurality of shutoff channels are completely shut down according to the feedback signal;

[0031] if there is a shutoff channel that is not shut down, determining a position of the shutoff channel that is not shut down, and sending a forced shutdown signal according to the position.

[0032] Optionally, the method further comprises:

[0033] receiving a shutdown adjustment request of the communication base station, determining request personnel information and a shutdown adjustment mode based on the shutdown adjustment request; the shutdown adjustment request is an adjustment request of the communication base station;

[0034] determining an adjustment authority of the request personnel according to the extracted request personnel information; the adjustment authority is an authority of the request personnel to adjust the communication base station;

[0035] According to the adjustment authority, it is determined whether to process the shutdown adjustment request.

[0036] In a second aspect, the application provides a communication base station intelligent shutdown control device, comprising:

[0037] A situation acquisition module is configured to acquire a communication load connection situation of the communication base station.

[0038] A data comparison module is configured to determine a signal consumption amount at a current time according to the communication load connection situation, and compare a current signal output amount of the communication base station with the signal consumption amount to determine whether the current signal output amount is higher than the signal consumption amount.

[0039] A position acquisition module is configured to acquire a geographic position of the communication base station if the current signal output amount is higher than the signal consumption amount.

[0040] A demand determination module is configured to determine a communication demand at the current time according to the geographic position.

[0041] A shutdown module is configured to send a shutdown signal to a base station controller corresponding to the communication base station to shut down a plurality of channels according to the communication demand and the signal consumption amount.

[0042] Optionally, the demand determination module is specifically configured to:

[0043] According to the geographic position and a preset information base, an overlay range of the communication base station is acquired, and a use environment of the communication base station is determined according to the overlay range; the preset information base stores a plurality of communication base station related information; the related information includes at least one of construction time, overlay range, geographic position, and load type.

[0044] According to the use environment, a load type and a load quantity connected to the communication base station are determined.

[0045] According to the load type and the load quantity, an ideal signal output value of the communication base station is determined, and the ideal signal output value is taken as a communication demand of the geographic position.

[0046] Optionally, the demand determination module is specifically further configured to:

[0047] A communication load connection situation of a communication base station in the overlay range in a historical period is acquired; the communication load connection situation includes a quantity of load connections and a load type.

[0048] According to the quantity of load connections in each sub historical period, the load type is screened, and according to a screening result, a use environment of the communication base station is determined.

[0049] Optionally, the communication base station intelligent shutdown control device further comprises an abnormal position determining module, configured to:

[0050] If the current signal output is lower than the signal consumption, according to the communication load connection condition, analyze the abnormal reason why the current signal output is lower than the signal consumption;

[0051] If it is determined that the abnormal reason is irrelevant to the number of loads connected, obtain the working data of the communication base station;

[0052] Input the working data into a preset data processing model, so that the preset data processing model detects whether the working data is abnormal, and according to the detection result, determines abnormal data;

[0053] According to the abnormal data, determine the abnormal position in the communication base station where the abnormal data is generated.

[0054] Optionally, the communication base station intelligent shutdown control device further comprises a channel adjusting module, configured to:

[0055] Input the abnormal position and the abnormal data into a preset danger analysis model, and according to the analysis result, determine the danger level of the abnormal position existing the abnormal data at the current time;

[0056] According to the danger level, adjust a plurality of channels of the communication base station.

[0057] Optionally, the shutdown module is specifically configured to:

[0058] According to the communication demand and the signal consumption, determine the best signal output data of the communication base station at the current time;

[0059] According to the best signal output data, determine the shutdown channel, and send a shutdown signal to the base station controller to shut down the shutdown channel;

[0060] Receive the feedback signal of the base station controller to the shutdown signal, and according to the feedback signal, determine whether the plurality of shutdown channels are completely shut down;

[0061] If there is a shutdown channel that has not been shut down, determine the position of the shutdown channel that has not been shut down, and according to the position, send a forced shutdown signal.

[0062] Optionally, the communication base station intelligent shutdown control device further comprises a request processing module, configured to:

[0063] Receive a shutdown adjustment request of the communication base station, determine the request personnel information and the shutdown adjustment mode based on the shutdown adjustment request; the shutdown adjustment request is an adjustment request of the communication base station;

[0064] According to the extracted request personnel information, determine the adjustment authority of the request personnel; the adjustment authority is the adjustment authority of the request personnel to the communication base station;

[0065] According to the adjustment authority, determine whether to process the shutdown adjustment request.

[0066] In a third aspect, the present application provides an electronic device, comprising: a memory and a processor, the memory stores a computer program capable of being loaded and executed by the processor to execute the method of the first aspect.

[0067] In a fourth aspect, the present application provides a computer readable storage medium, which stores a computer program capable of being loaded and executed by the processor to execute the method of the first aspect. BRIEF DESCRIPTION OF DRAWINGS

[0068] In order to more clearly illustrate the technical solutions of the embodiments of the present application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiment or prior art description. Obviously, the drawings in the following description are some embodiments of the present application, and those skilled in the art can obtain other drawings according to these drawings without creative labor.

[0069] Figure 1 An application scenario diagram is provided for the embodiments of the present application.

[0070] Figure 2 A flow chart of the communication base station intelligent shutdown control method is provided for the embodiments of the present application.

[0071] Figure 3 A structural diagram of the communication base station intelligent shutdown control device is provided for the embodiments of the present application.

[0072] Figure 4 A structural diagram of the electronic device is provided for the embodiments of the present application. DETAILED DESCRIPTION

[0073] In order to make the purpose, technical scheme and advantages of the embodiments of the present application more clear, the technical scheme of the embodiments of the present application will be described clearly and completely in the following with reference to the drawings of the embodiments of the present application. Obviously, the described embodiments are some embodiments of the present application, not all embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor are within the scope of protection of the present application.

[0074] In addition, the term "and / or" in this document merely describes an associated relationship between associated objects, which means that there can be three relationships, for example, A and / or B can represent the following three cases: A exists alone, A and B exist together, and B exists alone. In addition, the character " / " in this document generally represents an "or" relationship between the front and rear associated objects unless otherwise specified.

[0075] The embodiments of the present application will be further described in detail below with reference to the accompanying drawings.

[0076] Since the base station involves many types of use, such as factories, shopping malls, etc., the power demand of these areas is different, so a flexible power supply adjustment method for different areas is needed. At present, the output adjustment method of the base station signal is to adjust all the base stations uniformly, at this time the area with high demand may not be satisfied, which will affect the normal use of users in this area. Or in order to meet the power demand of different places, the continuous high energy output ensures that these places can be normally powered during the power peak period. However, this situation will cause waste of electric energy during the non-power peak period, which will also cause the increase of the energy consumption cost of the base station.

[0077] In addition, at present, some areas also selectively shut down the channel when adjusting the signal output, but when shutting down, only the current signal demand is considered, and the actual use demand of this area is not considered, so it may also cause that after shutting down some channels that are not currently used, the next moment cannot be used stably. Although it saves the energy consumption of the communication base station, it cannot well solve the use problem of the network signal.

[0078] Based on this, the present application provides a communication base station intelligent shutdown control method and device, electronic equipment and storage medium.

[0079] First, the communication load connection of the communication base station is obtained, and according to the communication load connection, the signal consumption at the current moment is determined. Compare the signal consumption with the current signal output of the communication base station, if the current signal output is higher than the signal consumption, the geographical position of the communication base station is obtained, and then the communication demand of the geographical position where the communication base station is located at the current moment is determined. According to the above determined communication demand and the signal consumption at the current moment, a shutdown signal is sent to the base station controller corresponding to the communication base station to shut down the corresponding channel, so as to avoid the signal waste caused by the continuous high signal output of the current signal output. At the same time, closing the useless channel can also make the communication signal of the communication load corresponding to the transmission channel more stable. It can also reduce the energy consumption cost of the communication base station, in addition, it can also avoid the base station loss caused by the continuous high energy consumption operation of the communication base station, and prolong the service life.

[0080] Figure 1This application provides an illustration of an application scenario. When it is necessary to control the energy consumption cost of a communication base station, the method provided in this application can be used to adjust the on / off state of the channel. The method can be implemented by a server or other electronic devices. This application focuses on the server. The signal output of the communication base station is determined based on the communication load requirements within the communication base station area. When changes occur, the server can adjust the on / off state of one or more communication base stations' corresponding devices or channels to ensure that the communication base station meets the communication load requirements under the server's adjustment. Figure 1 Taking a communication base station as an example, this paper explains how to operate the communication base station's channels by utilizing its communication load connection status and communication needs, thereby reducing the energy consumption cost of the communication base station.

[0081] For specific implementation details, please refer to the following examples.

[0082] Figure 2 This is a flowchart illustrating a smart shutdown control method for a communication base station according to an embodiment of this application. The method in this embodiment can be executed by the server in the above scenario. Figure 2 As shown, the method includes:

[0083] S201. Obtain the communication load connection status of the communication base station.

[0084] Communication load connection status can include whether a load connection exists, the number of communication loads connected to the communication base station, the type of load, and basic load information. After a communication base station is established, it enables wireless signal transmission between wired and wireless terminals. Communication loads within the coverage area of ​​this base station can communicate wirelessly. When a communication base station transmits its generated wireless signals through a channel, if a signal is received, it indicates that the channel is currently connected to a communication load.

[0085] After identifying which communication loads are connected to the communication base station, basic information about these connected loads can be obtained, such as their type, model, brand, and signal requirements. The type of communication load can include mobile devices such as iPads, smartwatches, and mobile phones; fixed devices can include smart home products and PCs. The model and brand of the communication load can be obtained from its production serial number. The signal requirements of the communication load can be determined based on its current operating conditions. For example, running a demanding game requires a very stable signal, resulting in high signal requirements; running a simple game does not require a very stable signal, resulting in low signal requirements.

[0086] S202, determine the signal consumption at the current time according to the communication load connection situation, and compare the current signal output of the communication base station with the signal consumption to determine whether the current signal output is higher than the signal consumption.

[0087] The signal consumption can be considered as the amount of wireless signal emitted by the communication base station, which can be obtained according to the signal demand of the load in the communication load connection situation. When obtaining the signal demand of each communication load, the geographic location of the communication load can also be obtained, so that the communication base station can determine which communication loads are connected to the communication base station according to the received signal demand, and then selectively receive the signal demand of the communication loads connected to the communication base station. In addition, the information of the communication base station connected to the communication load, such as location information, coverage, base station number, etc., can also be directly obtained, and then the obtained signal demand of the communication load is sent to the server of the corresponding communication base station according to the information.

[0088] The current signal output can be understood as the size of the wireless signal output per unit time of the communication base station.

[0089] Specifically, after obtaining the signal consumption of the communication base station at the current time according to the communication load connection situation, the signal consumption is compared with the current signal output of the communication base station to determine whether the current signal output is higher than the signal consumption. If it is high, it means that the signal demand at the current time is small, and at this time the communication base station will cause resource waste; if it is low, it means that the signal demand at the current time is large, and at this time the wireless signal output by the communication base station may not be able to support the use of the communication load, which may cause signal instability and the like.

[0090] S203, if the current signal output is higher than the signal consumption, obtain the geographic location of the communication base station.

[0091] The geographic location of the communication base station can be directly input into the corresponding server after the establishment is completed, and at this time, it can be directly called when it is determined that the current signal output is higher than the signal consumption.

[0092] If it is determined through the above step S202 that the current signal output at the current time is higher than the signal consumption, the location information of the communication base station is directly obtained.

[0093] In some implementations, because in many scenarios, the current signal output is higher than the signal consumption, the signal stability of the connected communication load in use can be better guaranteed, so a demand exceeding threshold can also be set, which can be used to determine the maximum excess of the current signal output over the signal consumption at the current time. When the current signal output is higher than the signal consumption, it can be determined whether the difference between the current signal output and the signal consumption is higher than the energy consumption exceeding threshold. If it is not higher than the energy consumption exceeding threshold, it can be considered that the current signal output size is adjusted to guarantee the use stability of the communication load. If it is higher than the energy consumption exceeding threshold, it means that the communication base station has signal waste at this time, and the current signal output needs to be adjusted, at which time the geographic location of the communication base station can be obtained.

[0094] S204, determine the communication demand at the current time according to the geographic location.

[0095] When the communication base station is set at different geographic locations, different coverage ranges will exist, and different communication demands may need to be met. For example, there are many communication loads in a shopping mall, so the communication base station needs to output a large amount of wireless signals. However, the shopping mall may close at ten o'clock at night, at which time there is no need for wireless signals. In addition, some factories may have concentrated use of wireless signals, such as from ten o'clock in the morning to ten o'clock at night; some factories need to use wireless signals all day long, and there is no idle time.

[0096] Specifically, after obtaining the geographic location of the communication base station according to the above steps, it is determined according to the geographic location when the coverage range of the communication base station is a signal demand peak period and when it is a signal demand trough period, and further determine the communication demand of the coverage range at different times. Then match according to the time of the current time to determine the communication demand at the current time.

[0097] S205, according to the communication demand and the signal consumption, send a shutdown signal to the base station controller corresponding to the communication base station to shut down a number of channels.

[0098] Specifically, according to the communication demand at the current time and the signal consumption at the current time determined above, a shutdown signal can be sent to the base station controller corresponding to the communication base station, so that the corresponding base station controller can shut down a number of channels after receiving the shutdown signal. In some implementations, the base station controller can determine whether there is signal output at one end of a number of channels. If some channels are connected to communication loads, regardless of the signal demand of the connected communication loads, the channel can be ignored. At this time, after receiving the shutdown signal, the channels not connected to the communication load can be determined and shut down.

[0099] Through the method provided in the present application, the communication load connection of the communication base station can be acquired first, and the signal consumption at the current moment is determined according to this, the current signal output of the communication base station is compared with the signal consumption, if the current signal output is higher than the signal consumption, it indicates that there may be signal waste at the current moment, at this time, the geographic position of the communication base station can be called, and the communication demand of the communication base station at the current moment is determined according to the geographic position, and then according to the communication demand and the signal consumption, a turn-off signal is sent to the base station controller corresponding to the communication base station to turn off some channels, so as to avoid the excessive waste of wireless signal. At the same time, the energy consumption cost of the communication base station can also be reduced. In addition, considering that the geographic positions established by different communication base stations are different, the communication demand is also different, therefore, the method of the present application can also more flexibly adjust the turn-off mode, so as to ensure that the energy consumption cost can be effectively saved, and the normal use of the communication load connected in the corresponding coverage range of the communication base station can be ensured.

[0100] In some embodiments, the coverage range of the communication base station can be acquired according to the geographic position and the preset information library, and the use environment of the communication base station is determined according to the coverage range; the preset information library stores a plurality of communication base station related information; the related information includes at least one of construction time, coverage range, geographic position, load type; according to the use environment, the load type and the load quantity connected to the communication base station are determined; according to the load type and the load quantity, the ideal signal output value of the communication base station is determined, and the ideal signal output value is taken as the communication demand of the geographic position.

[0101] The preset information library can be used to store a plurality of communication base station related information, such as the construction time, coverage range, geographic position, load type and the like of the communication base station. The coverage range determines the use environment of the communication base station, which will also affect the use demand of the communication base station. For example, the coverage range of a certain communication base station is a suburb of a city, the suburb has fewer residents and may not have any shopping malls and factories, so the use environment of the communication base station is relatively simple, and only the wireless network use of the residential residents is involved, at this time, the use demand of the communication base station will be weak, and a small amount of wireless signal output is enough to meet the network use of the suburb.

[0102] The load types connected to the communication base station are different in different use environments. For example, if the use environment of a communication base station is a shopping mall, the types connected to the communication base station are likely to be mobile devices such as mobile phones and the like, and fixed devices such as televisions, PCs and the like. If the use environment of a communication base station is a factory, the types connected to the communication base station are likely to be fixed devices for controlling equipment. The number of each type of communication load involved above can be determined by the use environment, that is, the number of loads connected to the communication base station can be determined by the use environment, and then the corresponding load type is determined according to the use of each communication load.

[0103] The ideal signal output value can be understood as the total amount of signal output that can stabilize the network signal of the communication load of different load types in the above use environment after the load type connected to the communication base station is determined.

[0104] Specifically, the coverage of the communication base station can be obtained by matching the geographic location of the communication base station with the related information in the preset information library. The use environment of the communication base station is determined according to the coverage. The number of communication loads connected to the communication base station in the coverage and the corresponding load types of the communication loads are determined according to the determined use environment. The ideal signal output value of the communication base station is obtained according to the number and corresponding types of the communication loads. The ideal signal output value is taken as the communication demand of the geographic location.

[0105] In the manner provided by the embodiment, the coverage of the communication base station can be determined by the geographic location of the communication base station and the preset information library, so as to obtain the use environment of the communication base station. The load type and the number of loads connected to the communication base station are determined according to the use environment, and then the ideal signal output value is determined as the communication demand. This way of determining the use environment by the coverage can avoid the problem of judgment error caused by human survey, and can reduce labor cost. In addition, taking the ideal signal output value of the communication base station as the communication demand of the geographic location can make the communication base station output wireless signals more accurately, avoid wasting signals, and save the power consumed by the communication base station when outputting wireless signals.

[0106] In some embodiments, the communication load connection situation of the communication base station in the corresponding coverage in a historical period can be obtained; the communication load connection situation includes the number of load connections and the load type; the load type is filtered according to the number of load connections in each sub-historical period, and the use environment of the communication base station is determined according to the filtering result.

[0107] The historical period can be one month, one week or one quarter. The sub-historical period can be one of the parts divided from the historical period. For example, the historical period is one month, and the historical period is divided into 30 parts according to the number of days, and each day can be considered as a sub-historical period. In actual application, the historical period can be planned according to the idea of the operator, and the embodiment of the present application does not limit it.

[0108] Specifically, the communication load connection of the communication base station with the same coverage range in the historical period can be obtained, and the type of the connected communication load of each communication base station in the historical period can be determined according to the communication load connection. The number of load connections per day in the historical period is determined, and then the load types in the historical period are filtered, for example, the connection number of each load type is sorted, and the load types are filtered according to the sorting result, for example, the load type that often appears can be the communication load that needs to communicate with the fixed connection in this communication base station, and if a load type appears only once, it can be explained that there is no such load type in this coverage range. The use environment of the communication base station is determined through the above filtering.

[0109] Through the above-mentioned manner, the load type can be determined through the communication load connection of the communication base station with the corresponding coverage range in the historical period, and then the use environment of the communication base station can be obtained by filtering the load types according to the number of load connections. By analyzing the load connection of multiple communication base stations with the same coverage range, the use environment of the communication base station can be more accurately determined, and the analysis error can be reduced.

[0110] In some embodiments, if it is found that the current signal output is lower than the signal consumption, the reason for the occurrence of this abnormality needs to be determined according to the communication load connection. If it is found through the communication load connection that the abnormal reason is irrelevant to the number of connections, the working data of the communication base station can be obtained, and the working data is input into the preset data processing model to determine the abnormal data, and the abnormal position of the abnormal data is determined according to the abnormal data. Specifically, if the current signal output is lower than the signal consumption, the reason for the abnormality that the current signal output is lower than the signal consumption is analyzed according to the communication load connection. If it is determined that the abnormal reason is irrelevant to the number of load connections, the working data of the communication base station is obtained. The working data is input into the preset data processing model to make the preset data processing model detect whether the working data is abnormal, and determine the abnormal data according to the detection result. The abnormal position of the abnormal data in the communication base station is determined according to the abnormal data.

[0111] The working data of the communication base station can include usage data generated by all devices and apparatuses of the communication base station during operation, and some log data and the like. The working data can be obtained in real time and stored in a database, and can be classified according to the devices generating the data or according to the types of the data during storage. The data is used to distinguish. In the embodiment, whether the communication base station is normal can be determined by the usage data of the operation of the devices and apparatuses.

[0112] The preset data processing model can be a deep learning model used to detect whether the working data is abnormal. First, a large amount of normal working data can be input as a sample into the preset data processing model, and the model is trained, so that the preset data processing model can determine whether the input working data is normal.

[0113] The number of communication loads that can be connected by each communication base station is basically limited. When the number of communication loads exceeds the upper limit of the number of communication loads that can be connected by the communication base station, that is, the wireless signal output by the communication base station is the maximum, although the wireless signal output is the most, due to the different operation conditions of each communication load, the communication base station can not be able to stably provide wireless signals for the loads. When the current signal output is lower than the signal consumption, it can be explained that the communication base station output has a problem or the number of connected loads is too large to cause overload, and the communication base station cannot maintain the stable operation of the communication loads even if the wireless signal output is the most. At this time, it is necessary to analyze the connection of the communication loads first to determine whether the number of connected loads exceeds the upper limit. If not, it indicates that the communication base station can have a functional damage. At this time, the working data generated by the communication base station during operation can be retrieved from the database and input into the above trained preset data processing model to determine whether the working data is normal. If there is abnormal data, it indicates that a device or apparatus of the communication base station can have a damage or other problems. At this time, the abnormal position of the device or apparatus generating the abnormal data, that is, the abnormal position, can be determined according to the retrieval position of the abnormal data.

[0114] In some implementations, after the abnormal position in the communication base station generating the abnormal data is determined, the abnormal position can be continuously detected to determine whether the abnormal position continuously generates abnormal data. If the abnormal data is only detected once during the continuous detection of the abnormal position and no abnormal data is detected at other times, it can be explained that the data acquisition is a mistake. If the abnormal data is often detected at the abnormal position during the continuous detection of the abnormal position, it indicates that the abnormal position can indeed have a problem and needs to be processed or repaired.

[0115] By the manner provided in this embodiment, when the current signal output is lower than the signal consumption, the cause of the problem can be analyzed. If it is overloading operation, it can be adjusted. But if it is not overloading operation, the working data of the communication base station needs to be processed in time to determine the abnormal data and the abnormal position where the abnormal data appears. In this way, the problem of the communication base station can be found in time to avoid hidden dangers. At the same time, when a device or equipment is detected to have a problem, it can also be found and repaired in time to avoid accidents.

[0116] In some embodiments, the abnormal position and the abnormal data are input into a preset danger analysis model, according to the analysis result, a danger level of the abnormal position existing abnormal data at the current time is determined; according to the danger level, a plurality of channels of the communication base station are adjusted.

[0117] The danger level can be divided by the deviation between the abnormal data and the normal data and the position where the abnormal data appears. The higher the danger level is, the more serious the harm is. The specific division requirements or division conditions can be adjusted according to the communication demand and the coverage range of the communication base station, which is not limited in this embodiment.

[0118] The preset danger analysis model in this embodiment can also be a deep learning model. After dividing the danger levels corresponding to different abnormal data, a large amount of abnormal data, corresponding abnormal positions and respective corresponding danger levels can be input into the preset danger analysis model just established as samples to train the model so that it can determine the corresponding danger level through the abnormal data and the corresponding abnormal position. Therefore, after the abnormal data and the corresponding abnormal position are determined through the above-mentioned manner, the abnormal data and the corresponding abnormal position can be input into the trained preset danger analysis model to determine the danger level corresponding to the abnormal data. Since different danger levels can bring different influences on the communication base station and the environment or people in the coverage range, after the danger level is determined, the channel or other equipment can be adjusted in time to ensure that the normal use of the load is not affected and no harm is caused.

[0119] By the manner provided in this embodiment, the abnormal position and the corresponding abnormal data can be input into the trained preset danger analysis model to determine the danger level caused by the abnormal data. Through the determined danger level, a plurality of channels of the communication base station can be adjusted in time to ensure that the abnormal position can stop working in time and the normal use of the load is not affected.

[0120] In some embodiments, the best signal output data of the communication base station at the current time can be determined according to the communication demand and the signal consumption; the switch-off channel can be determined according to the best signal output data, and a switch-off signal can be sent to the base station controller to switch off the switch-off channel; the feedback signal of the base station controller to the switch-off signal can be received, and whether the switch-off channel is completely switched off can be determined according to the feedback signal; if there is a switch-off channel that is not switched off, the position of the switch-off channel that is not switched off can be determined, and a forced switch-off signal can be sent according to the position.

[0121] The best signal output data can be understood as the current signal output that can ensure the normal use of the load and can ensure that there is no waste of excess energy. Since the output signals of different channels can be different, when the current signal output is higher than the signal consumption, randomly turning off some channels can cause the current signal output to be lower than the signal consumption, or the current signal output cannot guarantee the normal use of the connected communication load. Therefore, it is necessary to determine the best signal output data at the current time and some switch-off channels that can be switched off. In some implementations, these switch-off channels can be obtained by the output signal of the channel, the signal consumption at the current time, and the current signal output of the communication base station.

[0122] The forced switch-off signal can be understood as a forced switch-off, that is, requiring a channel to be switched off. In some implementations, if a channel fails to receive a signal, a forced switch-off signal can be sent for forced switch-off.

[0123] The feedback signal can be understood as a feedback of the operations of these channels, such as opening or closing. This feedback signal in the present embodiment is not limited to the base station controller, and any device or equipment related to the communication base station can send a feedback signal to the server after performing some operations to determine the working state of the communication base station. Moreover, the feedback from the devices and equipment related to the communication base station after adjustment is also convenient for subsequent adjustment of the channels.

[0124] In a specific implementation, the feedback signal can include the operation performed, and can also include the number of the device or equipment that sends the feedback signal, and other information that can represent the position and function of the device or equipment. For example, the communication base station is provided with fifty channels to transmit wireless signals, and it is determined that there are ten switch-off channels that can be switched off, so a signal is sent to the base station controller corresponding to the communication base station to switch off the ten switch-off channels. After the signal is sent, the base station controller will perform corresponding operations to detect whether the ten switch-off channels are still normally transmitting wireless signals, if a switch-off channel is not normally transmitting wireless signals, it means that the switch-off channel is successfully switched off, and if a switch-off channel is still normally transmitting wireless signals, it means that the switch-off channel fails to be switched off.

[0125] Specifically, after determining the communication demand and signal consumption of the communication base station at the current time according to the above-mentioned embodiments, the optimal signal output data is determined according to the communication demand and signal consumption at the current time, the shutoff channels are determined according to the optimal signal output data, and the shutoff signal is sent to the shutoff channels. The shutoff channels will theoretically be shut down after receiving the shutoff signal from the base station controller. However, there may be some shutoff channels that fail to operate, resulting in not being shut down. Therefore, after the shutoff signal is sent and the shutoff channels are shut down, the base station controller will return a feedback signal, and it is determined which shutoff channels have not been closed through the feedback signal. If there is a shutoff channel that has not been shut down according to the shutoff signal, a forced shutoff signal can be sent to the base station controller to force the shutoff channel to be closed. In a specific implementation manner, if the forced shutoff is successful, a feedback signal will also be sent. Therefore, after the forced shutoff signal is sent, if the feedback signal is still not received, it may indicate that the shutoff channel has failed to shut down again, and at this time, the forced shutoff signal can be repeatedly sent until it is determined that the shutoff channel has been successfully shut down.

[0126] In some implementation manners, if the feedback signal is still not received after the forced shutoff signal is repeatedly sent for multiple times, it may indicate that the shutoff channel has a problem and cannot be used, and at this time, the problem of the shutoff channel can be sent to the corresponding responsible person to enable the responsible person to timely verify the situation and handle it.

[0127] Through the manner provided in this embodiment, the optimal signal output data can be determined through the communication demand of the communication base station and the signal consumption at the current time, which can save costs and reduce the use and loss of the communication base station. The shutoff channels are determined according to the optimal signal output data, which avoids the problem of insufficient power supply caused by randomly closing some channels. In addition, after the shutoff signal is sent, it is also determined whether the shutoff channels have been closed according to the feedback signal. When there is a shutoff channel that has not been shut down according to the shutoff signal, it is also shut down through the forced shutoff manner, which ensures that the shutoff operation is completely completed and some shutoff switches are not missed to cause energy waste.

[0128] In some embodiments, a shutoff adjustment request of a communication base station can be received, and based on the shutoff adjustment request, request personnel information and a shutoff adjustment manner are determined; the shutoff adjustment request is an adjustment request of the communication base station; the adjustment authority of the request personnel is determined according to the extracted request personnel information; the adjustment authority is the authority of the request personnel to adjust the communication base station; and whether to process the shutoff adjustment request is determined according to the adjustment authority.

[0129] The shutdown adjustment request can be initiated by a person responsible for the communication base station, or by a person responsible for a communication base station. The person initiating the shutdown adjustment request can be considered as a request person. The shutdown adjustment request can include specific shutdown adjustment manners, such as closing channels numbered 1, 2, and 3, and opening channels numbered 4, 5, and 6. The request person's information, such as the request person's name, age, position, job responsibility, and authority to the communication base station, can also be included.

[0130] The authority to the communication base station can include a viewing authority and an adjustment authority. The data of the communication base station can include relevant data generated during operation, relevant data generated when the communication base station is established, and the like, and the viewing authority can be understood as a restriction on viewing of the data. The adjustment authority can be a restriction on adjustment of the hardware aspect of the communication base station. The viewing authority and the adjustment authority can be planned in advance according to the position and job responsibility of the request person, such as a request person whose position is an installation supervisor and whose job responsibility is to guide workers to install hardware, so that the viewing authority of the installation supervisor can be to view relevant data of hardware installation, and the adjustment authority can be adjustment of the position of the hardware installation. In a specific implementation manner, a more complete viewing authority and adjustment authority can be planned for a manager, that is, the manager can be allowed to view all data and make all adjustments.

[0131] Specifically, the shutdown adjustment request of the communication base station is received, information in the shutdown adjustment request is extracted, and the adjustment authority of the request person is determined from the extracted request person information. If the request person has the authority to make the shutdown adjustment manner, the communication base station can be adjusted according to the shutdown adjustment manner. If the request person does not have the authority to make the shutdown adjustment manner, the shutdown adjustment request is directly ignored.

[0132] Through the manner provided by the embodiment, the communication base station can be adjusted by a human way. However, due to the particularity of communication, the request person is pre-set with a corresponding authority, when a request person wants to make a shutdown adjustment, the request person will not be directly responded, but the authority of the request person is determined first, and whether to make a corresponding processing is determined according to the authority of the request person. The situation that the operation of the communication base station by an idle person causes the output of the communication base station to have a problem can be effectively avoided. By giving different authorities to the personnel of the communication base station, the random tampering of the communication base station by the grassroots personnel can also be ensured, and the security of the communication base station is improved.

[0133] Figure 3 A structural schematic diagram of a communication base station intelligent shutdown control device provided by an embodiment of the present application is shown in FIG. 1. Figure 3As shown, the communication base station intelligent shutdown control device 300 in this embodiment includes: a situation acquisition module 301, a data comparison module 302, a location acquisition module 303, a demand determination module 304, and a shutdown module 305.

[0134] The status acquisition module 301 is used to acquire the communication load connection status of the communication base station;

[0135] The data comparison module 302 is used to determine the signal consumption at the current moment based on the communication load connection status, and compare the current signal output of the communication base station with the signal consumption to determine whether the current signal output is higher than the signal consumption.

[0136] The location acquisition module 303 is used to acquire the geographical location of the communication base station if the current signal output is higher than the signal consumption.

[0137] The demand determination module 304 is used to determine the communication demand at the current moment based on the geographical location.

[0138] The shutdown module 305 is used to send a shutdown signal to the base station controller corresponding to the communication base station to shut down several channels according to the communication requirements and the signal consumption.

[0139] Optionally, the demand determination module 304 is specifically used for:

[0140] Based on the geographical location and a preset information database, the coverage area of ​​the communication base station is obtained, and the usage environment of the communication base station is determined based on the coverage area; the preset information database stores several communication base station related information; the related information includes at least one of the following: construction time, coverage area, geographical location, and load type;

[0141] Based on the usage environment, determine the load type and number of loads connected to the communication base station;

[0142] Based on the load type and the load quantity, the ideal signal output value of the communication base station is determined, and the ideal signal output value is used as the communication requirement of the geographical location.

[0143] Optionally, the demand determination module 304 is further used for:

[0144] Obtain the communication load connection status of communication base stations within the coverage area during historical time periods; the communication load connection status includes the number of load connections and the load type;

[0145] The load types are filtered based on the number of load connections in each sub-historical period, and the usage environment of the communication base station is determined based on the filtering results.

[0146] Optionally, the communication base station intelligent shutdown control device further comprises an abnormal position determination module 306, configured to:

[0147] If the current signal output is lower than the signal consumption, analyze the abnormal reason for the current signal output being lower than the signal consumption according to the communication load connection condition;

[0148] If it is determined that the abnormal reason is irrelevant to the number of loads connected, obtain the working data of the communication base station;

[0149] input the working data into a preset data processing model, so that the preset data processing model detects whether the working data is abnormal, and determines abnormal data according to a detection result;

[0150] According to the abnormal data, determine the abnormal position in the communication base station where the abnormal data is generated.

[0151] Optionally, the communication base station intelligent shutdown control device further comprises a channel adjustment module 307, configured to:

[0152] input the abnormal position and the abnormal data into a preset danger analysis model, and determine a danger level of the abnormal position existing the abnormal data at the current time according to an analysis result;

[0153] According to the danger level, adjust a plurality of channels of the communication base station.

[0154] Optionally, the shutdown module 305 is specifically configured to:

[0155] determine the best signal output data of the communication base station at the current time according to the communication demand and the signal consumption;

[0156] determine the shut-downable channels according to the best signal output data, and send a shutdown signal to the base station controller to shut down the shut-downable channels;

[0157] receive a feedback signal of the base station controller for the shutdown signal, and determine whether the plurality of shut-downable channels are completely shut down according to the feedback signal;

[0158] If there is a shut-downable channel that is not shut down, determine the position of the shut-downable channel that is not shut down, and send a forced shutdown signal according to the position.

[0159] Optionally, the communication base station intelligent shutdown control device further comprises a request processing module 308, configured to:

[0160] receive a shutdown adjustment request of the communication base station, determine request personnel information and a shutdown adjustment mode based on the shutdown adjustment request; the shutdown adjustment request is an adjustment request of the communication base station;

[0161] determine an adjustment authority of the request personnel according to the extracted request personnel information; the adjustment authority is an authority of the request personnel to adjust the communication base station;

[0162] determine whether to process the shutdown adjustment request according to the adjustment authority.

[0163] The apparatus of the embodiment can be used to execute the method of any of the above embodiments, and has similar implementation principles and technical effects, which will not be described here.

[0164] Figure 4 A structural schematic diagram of an electronic device provided by an embodiment of the present application is shown in FIG. 4, and the electronic device 400 of the embodiment can include a memory 401 and a processor 402. Figure 4

[0165] The memory 401 stores a computer program capable of being loaded by the processor 402 and executing the method in the above embodiments.

[0166] The processor 402 is connected with the memory 401, for example, through a bus.

[0167] Optionally, the electronic device 400 can further include a transceiver. It should be noted that the transceiver in actual application is not limited to one, and the structure of the electronic device 400 does not constitute a limitation on the embodiments of the present application.

[0168] The processor 402 can be a CPU (Central Processing Unit, central processor), a general-purpose processor, a DSP (Digital Signal Processor, data signal processor), an ASIC (Application Specific Integrated Circuit, application specific integrated circuit), an FPGA (Field Programmable Gate Array, field programmable gate array) or other programmable logic devices, transistor logic devices, hardware components or any combination thereof. It can implement or execute various exemplary logical blocks, modules and circuits described in combination with the disclosure of the present application. The processor 402 can also be a combination of computing functions, such as one or more microprocessor combinations, combinations of DSP and microprocessor, etc.

[0169] ​The bus can include a path for transmitting information between the above components. The bus can be a PCI (Peripheral Component Interconnect) bus or an EISA (Extended Industry Standard Architecture) bus, or the like. The bus can be divided into an address bus, a data bus, a control bus, and the like. For ease of representation, only one thick line is shown in the figure, but this does not mean that there is only one bus or only one type of bus.

[0170] The memory 401 can be a ROM (Read Only Memory) or other type of static storage device that can store static information and instructions, a RAM (Random Access Memory) or other type of dynamic storage device that can store information and instructions, an EEPROM (Electrically Erasable Programmable Read Only Memory), a CD-ROM (Compact Disc Read Only Memory) or other optical disk storage, a magnetic disk storage medium or other magnetic storage device, or any other medium that can be used to carry or store desired program code in the form of instructions or data structures and that can be accessed by a computer, but is not limited thereto.

[0171] The memory 401 is used to store application program codes for implementing the scheme of the present application, and is controlled by the processor 402 to execute. The processor 402 is used to execute the application program codes stored in the memory 401 to realize the content shown in the foregoing method embodiments.

[0172] The electronic device includes, but is not limited to, a mobile terminal such as a mobile phone, a notebook PC, a digital broadcast receiver, a PDA (Personal Digital Assistant), a PAD (Tablet PC), a PMP (Portable Multimedia Player), a car terminal (such as a car navigation terminal), and the like, and a fixed terminal such as a digital TV, a desktop computer, and the like. It can also be a server or the like. Figure 4 The electronic device shown is only an example and should not limit the functions and use range of the embodiments of the present application.

[0173] The electronic device of the present embodiment can be used to execute the method of any one of the above embodiments, and has similar implementation principles and technical effects, which will not be described here.

[0174] The application further provides a computer readable storage medium, which stores a computer program capable of being loaded and executed by a processor to perform the method in the above embodiment.

[0175] Those skilled in the art can understand that all or part of the steps of the above-mentioned method embodiments can be completed by program instruction related hardware. The foregoing program can be stored in a computer readable storage medium. When the program is executed, the steps of the above-mentioned method embodiments are executed; and the foregoing storage medium includes various media capable of storing program codes, such as ROM, RAM, magnetic disk or optical disk.

Claims

1. A method for intelligent shutdown control of a communication base station, characterized by, The method comprises the following steps: acquiring the communication load connection of the communication base station; determining the signal consumption at the current time according to the communication load connection, and comparing the current signal output of the communication base station with the signal consumption to determine whether the current signal output is higher than the signal consumption; if the current signal output is higher than the signal consumption, acquiring the geographic location of the communication base station; determining the communication demand at the current time according to the geographic location; the step of determining the communication demand at the current time according to the geographic location comprises: acquiring the coverage range of the communication base station according to the geographic location and a preset information library, and determining the use environment of the communication base station according to the coverage range, wherein the preset information library stores a plurality of communication base station related information, and the related information comprises at least one of construction time, coverage range, geographic location, and load type; the step of determining the use environment of the communication base station according to the coverage range comprises: acquiring the communication load connection of the communication base station in the historical period within the coverage range; the communication load connection comprises the number of load connections and the load type; screening the load type according to the number of load connections in each sub historical period, and determining the use environment of the communication base station according to the screening result; determining the load type and the load number connected to the communication base station according to the use environment; determining the ideal signal output value of the communication base station according to the load type and the load number, and taking the ideal signal output value as the communication demand of the geographic location; sending a shutdown signal to the base station controller corresponding to the communication base station to shut down a plurality of channels according to the communication demand and the signal consumption.

2. The method of claim 1, wherein, Further comprising: if the current signal output is lower than the signal consumption, analyzing the abnormal reason why the current signal output is lower than the signal consumption according to the communication load connection; if it is determined that the abnormal reason is irrelevant to the number of load connections, acquiring the working data of the communication base station; inputting the working data into a preset data processing model to make the preset data processing model detect whether the working data is abnormal, and determining the abnormal data according to the detection result; determining the abnormal position in the communication base station where the abnormal data is generated according to the abnormal data.

3. The method of claim 2, wherein, Further comprising: inputting the abnormal position and the abnormal data into a preset danger analysis model, and determining the danger level of the abnormal data existing in the abnormal position at the current time according to the analysis result; adjusting a plurality of channels of the communication base station according to the danger level.

4. The method of claim 1, wherein, the step of sending a shutdown signal to the base station controller corresponding to the communication base station to shut down a plurality of channels according to the communication demand and the signal consumption comprises: determining the best signal output data of the communication base station at the current time according to the communication demand and the signal consumption; determining the shutoff channel according to the best signal output data, and sending a shutdown signal to the base station controller to shut down the shutoff channel; receiving a feedback signal of the base station controller for the off signal, and determining whether a plurality of off channels are completely off according to the feedback signal; if there is an off channel, determining the position of the off channel, and sending a forced off signal according to the position.

5. The method of claim 1, wherein, Further comprising: receiving an off adjustment request of the communication base station, determining requester information and off adjustment mode based on the off adjustment request; the off adjustment request is an adjustment request of the communication base station; determining the adjustment authority of the requester according to the extracted requester information; the adjustment authority is the authority of the requester to adjust the communication base station; determining whether to process the off adjustment request according to the adjustment authority.

6. A smart shutdown control device for a communication base station, characterized in that, Comprising: a situation acquisition module, configured to acquire a communication load connection situation of a communication base station; a data comparison module, configured to determine a signal consumption amount at a current time according to the communication load connection situation, and compare a current signal output amount of the communication base station with the signal consumption amount to determine whether the current signal output amount is higher than the signal consumption amount; a position acquisition module, configured to acquire a geographic position of the communication base station if the current signal output amount is higher than the signal consumption amount; a demand determination module, configured to determine a communication demand at the current time according to the geographic position; the demand determination module, when determining the communication demand at the current time according to the geographic position, is specifically configured to: acquire a coverage range of the communication base station according to the geographic position and a preset information base, and determine a use environment of the communication base station according to the coverage range, the preset information base storing a plurality of communication base station related information, the related information including at least one of construction time, coverage range, geographic position, and load type; the determination of the use environment of the communication base station according to the coverage range includes: acquiring a communication load connection situation of the communication base station in a historical period; the communication load connection situation including the number of load connections and the load type; screening the load type according to the number of load connections in each sub historical period, and determining the use environment of the communication base station according to the screening result; determining the load type and the load number connected to the communication base station according to the use environment; determining an ideal signal output value of the communication base station according to the load type and the load number, and taking the ideal signal output value as the communication demand of the geographic position; an off module, configured to send an off signal to a base station controller corresponding to the communication base station to off a plurality of channels according to the communication demand and the signal consumption amount.

7. An electronic device, comprising: Comprising: a memory and a processor; the memory, configured to store program instructions; the processor, configured to call and execute the program instructions in the memory, and execute the communication base station intelligent off control method in any one of claims 1-5.

8. A computer-readable storage medium, characterized in that, The computer program is stored in the computer readable storage medium, and the computer program is executed by the processor to realize the communication base station intelligent off control method in any one of claims 1-5.

Citation Information

Patent Citations

  • Energy-saving mode control method, device and system for base station

    CN102665259A

  • Method and system for adjusting lamp post base station when communication requirements in area change

    CN111294804A