Waterproof monitoring method and device for communication base station, equipment and medium

By integrating multiple sensors into the controller of the communication base station to monitor and judge internal temperature and humidity, the problem that the prior art cannot effectively monitor the waterproofing situation of the communication base station is solved, and high-reliability waterproof monitoring is achieved.

CN120199042APending Publication Date: 2025-06-24YANGJIANG NUCLEAR POWER +1
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202510462662.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-14
Publication Date
2025-06-24

AI Technical Summary

Technical Problem

The prior art cannot effectively monitor the waterproofing conditions of communication base stations and cannot meet the risk of high-temperature steam in nuclear power plants erosion on base station circuits.

Method used

By integrating internal temperature sensors, humidity sensors and ambient temperature sensors in the controller of the communication base station, the data of these sensors are obtained, and whether the preset monitoring trigger conditions are met, and corresponding alarm information is generated.

Benefits of technology

Continuous monitoring of the internal temperature and humidity of the communication base station is realized. When there are hidden dangers of steam, alarm information can be accurately judged and generated, greatly improving the reliability and accuracy of waterproof monitoring.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120199042A_ABST
    Figure CN120199042A_ABST
Patent Text Reader

Abstract

The invention discloses a waterproof monitoring method and device for a communication base station, equipment and a medium. The method comprises the following steps: acquiring an internal temperature value acquired by an internal temperature sensor and an environment temperature value acquired by an environment temperature sensor; judging whether the internal temperature value and the environment temperature value meet a preset monitoring triggering condition or not; if the monitoring trigger condition is met, sending a monitoring instruction to the humidity sensor to obtain a humidity value monitored by the humidity sensor; whether the internal temperature value and the humidity value meet preset working conditions or not is judged; and if the working condition is not met, alarm information corresponding to the internal temperature value and the humidity value is generated. According to the waterproof monitoring method for the communication base station, the internal temperature and the environment temperature can be continuously monitored, when the steam hidden danger exists, the humidity value is obtained, judgment is conducted in combination with the internal temperature, and the reliability and accuracy of waterproof monitoring on the communication base station are greatly improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to the technical field of intelligent monitoring, and particularly to a waterproof monitoring method, device, equipment and medium for a communication base station. Background Art

[0002] Multiple groups of communication devices are required in nuclear energy facilities. Communication connections between components such as sensors and valves and a control terminal are established through the communication devices. In the prior art, corresponding wireless communication connections can be established by deploying communication base stations. However, since nuclear heat is required to generate steam in a nuclear power plant, and the steam drives a turbine generator set to rotate and generate electricity; therefore, there is high-temperature steam in some local areas of the nuclear power plant. If the high-temperature steam enters the interior of the communication base station, it will erode the internal circuit devices of the base station, and even cause a circuit short circuit and a fire. Therefore, it is necessary to monitor the communication base station to ensure that it meets the working conditions requirements. The existing monitoring methods usually cannot effectively monitor the communication base station and cannot meet the actual application requirements. Therefore, there is a problem in the prior art methods that the waterproof monitoring of the communication base station cannot be effectively carried out. Summary of the Invention

[0003] Embodiments of the present invention provide a waterproof monitoring method, device, equipment and medium for a communication base station, aiming to solve the problem in the prior art methods that the waterproof monitoring of the communication base station cannot be effectively carried out.

[0004] In a first aspect, embodiments of the present invention provide a waterproof monitoring method for a communication base station. The waterproof monitoring method is applied to a controller of the communication base station. The controller is communicatively connected to an internal temperature sensor and a humidity sensor in the communication base station to achieve data information transmission. The controller is also communicatively connected to an ambient temperature sensor disposed outside the communication base station through a connection line to achieve data information transmission. The method includes:

[0005] Obtain an internal temperature value collected by the internal temperature sensor and an ambient temperature value collected by the ambient temperature sensor;

[0006] Judge whether the internal temperature value and the ambient temperature value meet a preset monitoring trigger condition;

[0007] If the monitoring trigger condition is met, send a monitoring instruction to the humidity sensor to obtain a humidity value monitored by the humidity sensor;

[0008] Judge whether the internal temperature value and the humidity value meet preset working conditions;

[0009] If the working conditions are not met, generate an alarm information corresponding to the internal temperature value and the humidity value.

[0010] Second aspect, an embodiment of the present invention further provides a waterproof monitoring device for a communication base station. The waterproof monitoring device is configured in a controller of the communication base station. The controller is communicatively connected to an internal temperature sensor and a humidity sensor in the communication base station to achieve data information transmission. The controller is also communicatively connected to an environmental temperature sensor disposed outside the communication base station through a connection line to achieve data information transmission. The device is used to execute the waterproof monitoring method for the communication base station as described in the first aspect above. The device includes:

[0011] A temperature value acquisition unit, configured to acquire the internal temperature value collected by the internal temperature sensor and the environmental temperature value collected by the environmental temperature sensor;

[0012] A temperature value judgment unit, configured to judge whether the internal temperature value and the environmental temperature value meet a preset monitoring trigger condition;

[0013] A humidity value acquisition unit, configured to, if the monitoring trigger condition is met, send a monitoring instruction to the humidity sensor to acquire the humidity value monitored by the humidity sensor;

[0014] A judgment unit, configured to judge whether the internal temperature value and the humidity value meet preset operating conditions;

[0015] An alarm information generation unit, configured to, if the operating conditions are not met, generate alarm information corresponding to the internal temperature value and the humidity value.

[0016] Third aspect, an embodiment of the present invention further provides a computer device. The device includes a processor, a communication interface, a memory, and a communication bus. The processor, the communication interface, and the memory communicate with each other through the communication bus;

[0017] The memory is used to store a computer program;

[0018] The processor, when executing the program stored in the memory, implements the steps of the waterproof monitoring method for the communication base station as described in the first aspect above.

[0019] Fourth aspect, an embodiment of the present invention further provides a computer-readable storage medium, on which a computer program is stored. The computer program, when executed by a processor, implements the steps of the waterproof monitoring method for the communication base station as described in the first aspect above.

[0020] An embodiment of the present invention provides a waterproof monitoring method, device, equipment and medium for a communication base station. The method includes: obtaining the internal temperature value collected by the internal temperature sensor and the environmental temperature value collected by the environmental temperature sensor; judging whether the internal temperature value and the environmental temperature value meet a preset monitoring trigger condition; if the monitoring trigger condition is met, sending a monitoring instruction to the humidity sensor to obtain the humidity value monitored by the humidity sensor; judging whether the internal temperature value and the humidity value meet the preset working conditions; if they do not meet the working conditions, generating an alarm message corresponding to the internal temperature value and the humidity value. The above waterproof monitoring method for a communication base station can continuously monitor the internal temperature and the environmental temperature, obtain the humidity value and combine it with the internal temperature for judgment when there is a steam hazard, greatly improving the reliability and accuracy of waterproof monitoring for the communication base station. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings required for the description of the embodiments will be briefly introduced below. Obviously, the drawings in the following description are some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0022] Figure 1 It is a flowchart of the waterproof monitoring method for a communication base station provided by an embodiment of the present invention;

[0023] Figure 2 It is a schematic diagram of the application scenario of the waterproof monitoring method for a communication base station provided by an embodiment of the present invention;

[0024] Figure 3 It is a schematic block diagram of the waterproof monitoring device for a communication base station provided by an embodiment of the present invention;

[0025] Figure 4 It is a schematic block diagram of the computer equipment provided by an embodiment of the present invention. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0026] The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention. Obviously, the described embodiments are some, but not all, of the embodiments of the present invention. All other embodiments obtained by those of ordinary skill in the art without creative efforts based on the embodiments of the present invention belong to the scope of protection of the present invention.

[0027] It should be understood that when used in this specification and the appended claims, the terms "comprising" and "including" indicate the presence of the described features, wholes, steps, operations, elements and / or components, but do not preclude the presence or addition of one or more other features, wholes, steps, operations, elements, components and / or their combinations.

[0028] It should also be understood that the terms used in the specification of the present invention are for the purpose of describing specific embodiments only and are not intended to limit the present invention. As used in the specification of the present invention and the appended claims, unless the context clearly indicates otherwise, the singular forms "a", "an" and "the" are intended to include the plural forms.

[0029] It should be further understood that the term "and / or" used in the specification of the present invention and the appended claims refers to any combination and all possible combinations of one or more of the associated listed items, and includes these combinations.

[0030] An embodiment of the present invention application provides a waterproof monitoring method for a communication base station, and this method is applied to the controller 11 of the communication base station 10; as Figure 2 shown, the controller 11 is communicatively connected to the internal temperature sensor 12 and the humidity sensor 13 in the communication base station 10 to achieve the transmission of data information. A ventilation fan 14 is also provided on one side of the humidity sensor 13, and the controller 11 is communicatively connected to the ventilation fan 14. The controller 11 is also communicatively connected to the ambient temperature sensor 20 arranged outside the communication base station 10 through a connection line to achieve the transmission of data information. The above waterproof monitoring method of the communication base station is executed through the application software installed in the controller 11. The communication base station 10 includes a housing and components arranged inside the housing. The controller 11 can be a control chip (such as an MCU control chip) configured inside the housing of the communication base station for receiving information and processing data, and the controller 11 can issue control instructions to control each component. The internal temperature sensor 12 is arranged inside the housing and senses the temperature value of the internal space of the communication base station. The humidity sensor 13 is used to sense the humidity of the internal space of the housing, and the ventilation fan 14 is used for ventilation to make the internal air flow towards the humidity sensor 13, thereby improving the accuracy of humidity detection. The ambient temperature sensor 20 is used to detect the ambient temperature outside the housing.

[0031] As Figure 1 shown, this method includes steps S110 to S150.

[0032] S110. Obtain the internal temperature value collected by the internal temperature sensor and the ambient temperature value collected by the ambient temperature sensor.

[0033] The controller can first obtain the internal temperature value collected by the internal temperature sensor and the ambient temperature value collected by the ambient temperature sensor. The internal temperature value can be used to reflect the temperature value inside the communication base station, and the ambient temperature value can be used to reflect the ambient temperature outside the communication base station.

[0034] S120. Judge whether the internal temperature value and the ambient temperature value meet the preset monitoring trigger conditions.

[0035] Further judge whether the internal temperature value and the ambient temperature value meet the monitoring trigger conditions. If the monitoring trigger conditions are met, it indicates that there is a hidden danger of steam entering, and it is necessary to monitor the steam inside the communication base station; if the monitoring trigger conditions are not met, it indicates that there is no hidden danger of steam entering, and at this time, it is not necessary to monitor the steam inside the communication base station.

[0036] In a specific embodiment, step S120 includes sub-steps: calculating the temperature difference between the internal temperature value and the ambient temperature value; calculating the initial coefficient corresponding to the temperature difference, the internal temperature value and the ambient temperature value according to the coefficient calculation formula in the monitoring trigger conditions; judging whether the initial coefficient is greater than the coefficient threshold set in the monitoring trigger conditions to determine whether the monitoring trigger conditions are met.

[0037] Specifically, the difference between the internal temperature value and the ambient temperature value can be calculated and the absolute value is taken to obtain the corresponding temperature difference; further, the initial coefficient corresponding to the temperature difference, the internal temperature value and the ambient temperature value is calculated through the coefficient calculation formula, and the initial coefficient can be used to reflect the correlation between the internal and external temperatures.

[0038] Among them, the coefficient calculation formula can be expressed by formula (1):

[0039]

[0040] Among them, C is the calculated initial coefficient, ΔT is the temperature difference, T w is the ambient temperature value, T n is the internal temperature value, T c is the preset temperature parameter value configured in the formula (such as setting T c to 25 °C). Further judge whether the initial coefficient is greater than the coefficient threshold set in the monitoring trigger conditions. If it is greater than the coefficient threshold, it is determined that the monitoring trigger conditions are met; if the initial coefficient is not greater than the coefficient threshold, it is determined that the monitoring trigger conditions are not met.

[0041] S130. If the monitoring trigger conditions are met, send a monitoring instruction to the humidity sensor to obtain the humidity value monitored by the humidity sensor.

[0042] If the monitoring trigger condition is met, a monitoring instruction is sent to the humidity sensor to start humidity monitoring inside the communication base station. Specifically, an activation instruction can be sent to the ventilation fan first. The ventilation fan circulates the air flow inside the communication base station, making the air inside the communication base station uniform. After sending the activation instruction for a period of time (such as 5 seconds), a monitoring instruction is sent to the humidity sensor and the humidity value is obtained to improve the accuracy of the measured humidity value.

[0043] S140. Determine whether the internal temperature value and the humidity value meet the preset operating conditions.

[0044] Further determine whether the internal temperature value and the humidity value monitored in the above steps meet the preset operating conditions. The operating conditions are the specific conditions under which the communication base station can operate stably.

[0045] In a specific embodiment, step S140 includes sub-steps: determine whether the humidity value is greater than the humidity threshold set in the operating conditions; if the humidity value is not greater than the humidity threshold, calculate the erosion coefficient corresponding to the internal temperature value and the humidity value according to the erosion coefficient calculation formula in the operating conditions; determine whether the erosion coefficient is greater than the allowable erosion value set in the operating conditions; if the humidity value is greater than the humidity threshold, or the erosion coefficient is greater than the allowable erosion value, it is determined that the operating conditions are not met; if the erosion coefficient is not greater than the allowable erosion value, it is determined that the operating conditions are met.

[0046] Specifically, it can be determined whether the humidity value is greater than the humidity threshold set in the operating conditions. If the humidity value is greater than the humidity threshold, it indicates that the humidity inside the communication base station is too high. At this time, there is more steam inside the communication base station, and it can be determined that the operating conditions are not met. If the humidity value is not greater than the humidity threshold, it indicates that the amount of steam inside the communication base station is small. Although the amount of steam inside the communication base station is small, if the internal temperature of the communication base station is too high, the high-temperature gas containing steam still has a strong erosion effect on the equipment. Therefore, the internal temperature value and the humidity value can be further calculated according to the erosion coefficient calculation formula in the operating conditions to obtain the corresponding erosion coefficient. The erosion coefficient can reflect the ability of the current humidity and the current temperature to erode the internal components of the communication base station. The greater the erosion coefficient, the stronger the ability to erode the internal components.

[0047] Among them, the erosion coefficient calculation formula can be expressed by formula (2):

[0048]

[0049] Among them, Q is the calculated erosion coefficient, S0 is the humidity threshold, S n is the humidity value, T n is the internal temperature value, T cis a preset temperature parameter value (such as setting T c to be 25 °C).

[0050] Further, it is determined whether the erosion coefficient is greater than the allowable erosion value set in the working conditions; if the erosion coefficient is greater than the allowable erosion value, it is determined that the working conditions are not met; if the erosion coefficient is not greater than the allowable erosion value, it is determined that the working conditions are met.

[0051] In a specific embodiment, after step S140, the following steps are further included: if the working conditions are met, the internal temperature value and the ambient temperature value are collected again and it is determined whether the pre-stored monitoring exit conditions are satisfied; if the monitoring exit conditions are satisfied, after the sampling period time set in the monitoring exit conditions, the steps of obtaining the internal temperature value collected by the internal temperature sensor and the ambient temperature value collected by the ambient temperature sensor are executed.

[0052] If the working conditions are met, the internal temperature value and the ambient temperature value are obtained again, and it is determined whether the internal temperature value and the ambient temperature value satisfy the pre-set monitoring exit conditions. If the monitoring exit conditions are satisfied, there is no need to obtain the humidity value and perform waterproof monitoring again; if the monitoring exit conditions are not satisfied, the humidity value needs to be obtained periodically and waterproof monitoring is continuously performed. If the monitoring exit conditions are satisfied, after the sampling period time interval, step S110 can be executed again. For example, the default value of the sampling period time in the monitoring exit conditions can be set to 60 seconds or 90 seconds.

[0053] Among them, a monitoring judgment coefficient is also configured in the monitoring exit conditions. When determining whether the monitoring exit conditions are satisfied, a new initial coefficient can be calculated first through formula (1) as the monitoring coefficient, and it is determined whether the monitoring coefficient is not greater than the monitoring judgment coefficient, where the value of the monitoring judgment coefficient is not equal to the coefficient threshold. If the newly obtained monitoring coefficient is not greater than the monitoring judgment coefficient, it is determined that the monitoring exit conditions are satisfied; if the newly obtained monitoring coefficient is greater than the monitoring judgment coefficient, it is determined that the monitoring exit conditions are not satisfied.

[0054] In a specific embodiment, after determining whether the internal temperature value and the ambient temperature value satisfy the pre-stored monitoring exit conditions, the following is further included: if the monitoring exit conditions are not satisfied, after the preset monitoring period time interval, the step of sending a monitoring instruction to the humidity sensor is executed.

[0055] If the monitoring exit conditions are not satisfied, after the preset monitoring period time interval, a monitoring instruction is sent to the humidity sensor again to repeat obtaining the humidity value and making the above judgment on whether the working conditions are met. For example, the monitoring period time can be set to 15 seconds or 20 seconds.

[0056] In a specific embodiment, before determining whether the internal temperature value and the ambient temperature value satisfy a pre-stored monitoring exit condition, the method further includes: obtaining difference information between the internal temperature value and the ambient temperature value and the monitoring trigger condition; and configuring the monitoring exit condition according to the difference information and the monitoring trigger condition.

[0057] Further, before determining whether the monitoring exit condition is satisfied, difference information between the internal temperature value and the ambient temperature value and the monitoring trigger condition can also be obtained, and the monitoring exit condition is correspondingly configured based on the difference information and the monitoring trigger condition, that is, numerical configuration is performed on the acquisition cycle time and the monitoring judgment coefficient in the monitoring exit condition.

[0058] In a specific embodiment, the configuring the monitoring exit condition according to the difference information and the monitoring trigger condition includes: calculating a coefficient configuration value corresponding to the coefficient threshold and the coefficient difference in the difference information according to a preset first configuration calculation formula; the coefficient difference is the difference between the initial coefficient corresponding to the internal temperature value and the ambient temperature value and the coefficient threshold in the monitoring trigger condition; calculating a time configuration value corresponding to the coefficient difference according to a preset second configuration calculation formula; and configuring the corresponding monitoring exit condition according to the coefficient configuration value and the time configuration value.

[0059] Specifically, the difference information between the internal temperature value and the ambient temperature value and the monitoring trigger condition can be obtained, and the coefficient difference included therein is also the difference between the initial coefficient obtained in step S110 and the coefficient threshold in the monitoring trigger condition. Since the initial coefficient is greater than the coefficient threshold, the difference between the initial coefficient and the coefficient threshold must be a value greater than zero.

[0060] Further, calculate a coefficient configuration value corresponding to the coefficient threshold and the coefficient difference according to the first configuration calculation formula. The first configuration calculation formula is shown in formula (3):

[0061]

[0062] Wherein, C0 is the coefficient threshold, ΔC is the coefficient difference, e is the base of the natural logarithm, and C1 is the calculated coefficient configuration value.

[0063] The time configuration value corresponding to the coefficient difference can be calculated according to the second configuration calculation formula. The second configuration calculation formula is shown in formula (4):

[0064]

[0065] Wherein, R0 is the default value of the acquisition cycle time, and R1 is the calculated time configuration value.

[0066] Configure the monitoring judgment coefficient in the monitoring exit condition with the coefficient configuration value obtained in the above steps, and reconfigure the acquisition cycle time in the monitoring exit condition with the obtained time configuration value, then the monitoring exit condition can be configured; the configured monitoring exit condition can be used to determine whether to exit the humidity value monitoring subsequently.

[0067] S150. If the working condition is not met, generate alarm information corresponding to the internal temperature value and the humidity value.

[0068] If the working condition is not met, the controller can generate alarm information corresponding to the internal temperature value and the humidity value, and the alarm information includes the internal temperature value and the humidity value. For example, the alarm information can be broadcast through a loudspeaker externally set by the communication base station, and the broadcast content includes the internal temperature value and the humidity value, so as to facilitate the maintenance personnel of the nuclear power plant to quickly obtain the alarm information of the abnormal working condition of the communication base station and accurately understand the internal working condition information of the communication base station. Further, after a preset delay time for generating the alarm information, the controller can control the communication base station to enter the sleep state or cut off the power, so as to protect the internal components of the communication base station and prevent faults such as short circuits of the internal components in a high-temperature and high-humidity environment.

[0069] In the waterproof monitoring method of the communication base station disclosed in the above embodiments, the method includes: obtaining the internal temperature value collected by the internal temperature sensor and the environmental temperature value collected by the environmental temperature sensor; judging whether the internal temperature value and the environmental temperature value meet the preset monitoring trigger condition; if the monitoring trigger condition is met, send a monitoring instruction to the humidity sensor to obtain the humidity value monitored by the humidity sensor; judge whether the internal temperature value and the humidity value meet the preset working condition; if the working condition is not met, generate alarm information corresponding to the internal temperature value and the humidity value. The above waterproof monitoring method of the communication base station can continuously monitor the internal temperature and the environmental temperature, obtain the humidity value when there is a steam hazard and make a judgment in combination with the internal temperature, greatly improving the reliability and accuracy of the waterproof monitoring of the communication base station.

[0070] An embodiment of the present invention further provides a waterproof monitoring device for a communication base station. The waterproof monitoring device for the communication base station can be configured in the controller of the communication base station. The controller is communicatively connected with the internal temperature sensor and the humidity sensor in the communication base station to realize the transmission of data information. The controller is also communicatively connected with the environmental temperature sensor externally set by the communication base station through a connecting wire to realize the transmission of data information. The waterproof monitoring device for the communication base station is used to execute any one of the above embodiments of the waterproof monitoring method of the communication base station. Specifically, please refer to Figure 3 , Figure 3Schematic block diagram of the waterproof monitoring device for a communication base station provided by an embodiment of the present invention.

[0071] As Figure 3 shown, the waterproof monitoring device 100 of the communication base station includes a temperature value acquisition unit 110, a temperature value judgment unit 120, a humidity value acquisition unit 130, a judgment unit 140, and an alarm information generation unit 150.

[0072] The temperature value acquisition unit 110 is configured to acquire the internal temperature value collected by the internal temperature sensor and the ambient temperature value collected by the ambient temperature sensor.

[0073] The temperature value judgment unit 120 is configured to judge whether the internal temperature value and the ambient temperature value meet a preset monitoring trigger condition.

[0074] The humidity value acquisition unit 130 is configured to, if the monitoring trigger condition is met, send a monitoring instruction to the humidity sensor to acquire the humidity value monitored by the humidity sensor.

[0075] The judgment unit 140 is configured to judge whether the internal temperature value and the humidity value meet the preset operating conditions.

[0076] The alarm information generation unit 150 is configured to, if the operating conditions are not met, generate alarm information corresponding to the internal temperature value and the humidity value.

[0077] In the waterproof monitoring device for a communication base station provided by an embodiment of the present invention, the above-mentioned waterproof monitoring method for a communication base station is applied to acquire the internal temperature value collected by the internal temperature sensor and the ambient temperature value collected by the ambient temperature sensor; judge whether the internal temperature value and the ambient temperature value meet a preset monitoring trigger condition; if the monitoring trigger condition is met, send a monitoring instruction to the humidity sensor to acquire the humidity value monitored by the humidity sensor; judge whether the internal temperature value and the humidity value meet the preset operating conditions; if the operating conditions are not met, generate alarm information corresponding to the internal temperature value and the humidity value. The above-mentioned waterproof monitoring method for a communication base station can continuously monitor the internal temperature and the ambient temperature, acquire the humidity value when there is a steam hazard and make a judgment in combination with the internal temperature, greatly improving the reliability and accuracy of waterproof monitoring of the communication base station.

[0078] The above-mentioned waterproof monitoring device for a communication base station can be implemented in the form of a computer program, and the computer program can run on a computer device as Figure 4 shown.

[0079] Please refer to Figure 4 , Figure 4It is a schematic block diagram of a computer device provided by an embodiment of the present invention. The computer device may be a controller for executing a waterproof monitoring method of a communication base station to monitor the waterproofness of the communication base station.

[0080] Refer to Figure 4 , the computer device 500 includes a processor 502, a memory, and a communication interface 505 connected through a communication bus 501. Among them, the memory may include a storage medium 503 and an internal memory 504.

[0081] The storage medium 503 can store an operating system 5031 and a computer program 5032. When the computer program 5032 is executed, the processor 502 can be made to execute the waterproof monitoring method of the communication base station. Among them, the storage medium 503 can be a volatile storage medium or a non-volatile storage medium.

[0082] The processor 502 is used to provide computing and control capabilities to support the operation of the entire computer device 500.

[0083] The internal memory 504 provides an environment for the operation of the computer program 5032 in the storage medium 503. When the computer program 5032 is executed by the processor 502, the processor 502 can be made to execute the waterproof monitoring method of the communication base station.

[0084] The communication interface 505 is used for network communication, such as providing the transmission of data information, etc. Those skilled in the art can understand that Figure 4 The structure shown in

[0085] is only a block diagram of a part of the structure related to the solution of the present invention, and does not constitute a limitation on the computer device 500 to which the solution of the present invention is applied. The specific computer device 500 may include more or fewer components than those shown in the figure, or combine certain components, or have different component arrangements.

[0086] Among them, the processor 502 is used to run the computer program 5032 stored in the memory to implement the corresponding functions in the above-mentioned waterproof monitoring method of the communication base station. Figure 4 Those skilled in the art can understand that Figure 4 The embodiment of the computer device shown in

[0087] It should be understood that in the embodiments of the present invention, the processor 502 may be a central processing unit (CPU), and the processor 502 may also be other general-purpose processors, digital signal processors (DSPs), application specific integrated circuits (ASICs), field-programmable gate arrays (FPGAs) or other programmable logic devices, discrete gate or transistor logic devices, discrete hardware components, etc. Among them, the general-purpose processor may be a microprocessor or the processor may also be any conventional processor, etc.

[0088] In another embodiment of the present invention, a computer-readable storage medium is provided. The computer-readable storage medium may be a volatile or non-volatile computer-readable storage medium. The computer-readable storage medium stores a computer program, and when the computer program is executed by a processor, the steps included in the waterproof monitoring method of the communication base station described above are implemented.

[0089] Those skilled in the art can clearly understand that for the convenience and brevity of description, the specific working processes of the devices, apparatuses, and units described above can refer to the corresponding processes in the foregoing method embodiments, and will not be elaborated herein. Those of ordinary skill in the art can realize that the units and algorithm steps of each example described in combination with the embodiments disclosed herein can be implemented by electronic hardware, computer software, or a combination of the two. To clearly illustrate the interchangeability of hardware and software, the components and steps of each example have been generally described according to their functions in the above description. Whether these functions are executed in a hardware or software manner depends on the specific application and design constraints of the technical solution. Professional technicians can use different methods to implement the described functions for each specific application, but such implementation should not be considered to exceed the scope of the present invention.

[0090] In several embodiments provided by the present invention, it should be understood that the disclosed devices, apparatuses, and methods can be implemented in other ways. For example, the device embodiments described above are merely illustrative. For example, the division of the units is only a logical function division, and there may be other division methods in actual implementation. Units with the same function can also be aggregated into one unit. For example, multiple units or components can be combined or integrated into another system, or some features can be ignored or not executed. In addition, the displayed or discussed couplings or direct couplings or communication connections to each other may be indirect couplings or communication connections through some interfaces, devices, or units, and may also be electrical, mechanical, or other forms of connection.

[0091] The unit described as a separation component may or may not be physically separated. The component displayed as a unit may or may not be a physical unit, that is, it may be located in one place or distributed to multiple network units. Some or all of the units can be selected according to actual needs to achieve the purpose of the solution of the embodiments of the present invention.

[0092] In addition, each functional unit in various embodiments of the present invention may be integrated in a processing unit, or each unit may exist physically alone, or two or more units may be integrated in one unit. The above-mentioned integrated unit may be implemented in the form of hardware or in the form of a software functional unit.

[0093] If the above-mentioned integrated unit is implemented in the form of a software functional unit and sold or used as an independent product, it can be stored in a computer-readable storage medium. Based on such an understanding, the technical solution of the present invention, in essence, or the part that contributes to the prior art, or all or part of the technical solution, can be embodied in the form of a software product. The computer software product is stored in a computer-readable storage medium and includes several instructions for causing a computer device (which may be a personal computer, a server, or a network device, etc.) to execute all or part of the steps of the methods described in various embodiments of the present invention. The aforementioned computer-readable storage medium includes: various media such as USB flash drives, mobile hard disks, read-only memories (ROMs), magnetic disks, or optical discs that can store program codes.

[0094] As described above, the above are only specific embodiments of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention can easily think of various equivalent modifications or substitutions, and these modifications or substitutions should all be covered within the protection scope of the present invention. Therefore, the protection scope of the present invention shall be subject to the protection scope of the claims.

Claims

1. A waterproof monitoring method for a communication base station, characterized in that: The waterproof monitoring method is applied to a controller of a communication base station, the controller is connected to an internal temperature sensor and a humidity sensor in the communication base station for communication to achieve data information transmission, and the controller is also connected to an ambient temperature sensor provided outside the communication base station for communication via a connecting line for communication to achieve data information transmission, the method includes: Acquire the internal temperature value collected by the internal temperature sensor and the ambient temperature value collected by the ambient temperature sensor; Determining whether the internal temperature value and the ambient temperature value meet a preset monitoring trigger condition; If the monitoring trigger condition is met, a monitoring instruction is sent to the humidity sensor to obtain the humidity value monitored by the humidity sensor; Determining whether the internal temperature value and the humidity value meet preset working conditions; If the operating conditions are not met, an alarm message corresponding to the internal temperature value and the humidity value is generated.

2. The waterproof monitoring method of a communication base station according to claim 1, characterized in that: The judging whether the internal temperature value and the ambient temperature value meet a preset monitoring trigger condition includes: Calculating a temperature difference between the internal temperature value and the ambient temperature value; Calculate the initial coefficient corresponding to the temperature difference, the internal temperature value and the ambient temperature value according to the coefficient calculation formula in the monitoring trigger condition; It is determined whether the initial coefficient is greater than a coefficient threshold set in the monitoring trigger condition to determine whether the monitoring trigger condition is met.

3. The waterproof monitoring method of a communication base station according to claim 1, characterized in that: The determining whether the internal temperature value and the humidity value meet preset working conditions includes: Determining whether the humidity value is greater than a humidity threshold value set in the working condition; If the humidity value is not greater than the humidity threshold, calculating the erosion coefficient corresponding to the internal temperature value and the humidity value according to the erosion coefficient calculation formula in the working condition; Determining whether the erosion coefficient is greater than the allowable erosion value set in the working condition; If the humidity value is greater than the humidity threshold, or the erosion coefficient is greater than the allowable erosion value, it is determined that the working condition is not met; If the erosion coefficient is not greater than the allowable erosion value, it is determined that the operating condition is met.

4. The waterproof monitoring method for a communication base station according to any one of claims 1 to 3, characterized in that: After determining whether the internal temperature value and the humidity value meet the preset working conditions, the method further includes: If the working condition is met, the internal temperature value and the ambient temperature value are collected again to determine whether the pre-stored monitoring exit condition is met; If the monitoring exit condition is met, the step of obtaining the internal temperature value collected by the internal temperature sensor and the ambient temperature value collected by the ambient temperature sensor is performed after a sampling period set in the monitoring exit condition.

5. The waterproof monitoring method of a communication base station according to claim 4, characterized in that: After determining whether the internal temperature value and the ambient temperature value meet the pre-stored monitoring exit condition, the method further includes: If the monitoring exit condition is not met, the step of sending the monitoring instruction to the humidity sensor is executed after a preset monitoring cycle time.

6. The waterproof monitoring method of a communication base station according to claim 5, characterized in that: Before determining whether the internal temperature value and the ambient temperature value meet the pre-stored monitoring exit condition, the method further includes: Acquire difference information between the internal temperature value and the ambient temperature value and the monitoring trigger condition; The monitoring exit condition is obtained according to the difference information and the corresponding configuration of the monitoring trigger condition.

7. The waterproof monitoring method of a communication base station according to claim 6, characterized in that: The obtaining of the monitoring exit condition according to the configuration corresponding to the difference information and the monitoring trigger condition includes: Calculate the coefficient configuration value corresponding to the coefficient threshold and the coefficient difference in the difference information according to a preset first configuration calculation formula; the coefficient difference is the difference between the initial coefficient corresponding to the internal temperature value and the ambient temperature value and the coefficient threshold in the monitoring trigger condition; Calculate the time configuration value corresponding to the coefficient difference according to a preset second configuration calculation formula; The corresponding monitoring exit condition is configured according to the coefficient configuration value and the time configuration value.

8. A waterproof monitoring device for a communication base station, characterized in that: The waterproof monitoring device is configured in a controller of a communication base station, the controller is connected to an internal temperature sensor and a humidity sensor in the communication base station for communication to achieve data information transmission, the controller is also connected to an ambient temperature sensor provided outside the communication base station for communication via a connecting line for communication to achieve data information transmission, the device is used to execute the waterproof monitoring method of the communication base station according to any one of claims 1 to 7, the device comprises: a temperature value acquisition unit, configured to acquire an internal temperature value acquired by the internal temperature sensor and an ambient temperature value acquired by the ambient temperature sensor; A temperature value judgment unit, used to judge whether the internal temperature value and the ambient temperature value meet a preset monitoring trigger condition; a humidity value acquisition unit, configured to send a monitoring instruction to the humidity sensor to acquire a humidity value monitored by the humidity sensor if the monitoring trigger condition is met; A judging unit, used to judge whether the internal temperature value and the humidity value meet preset working conditions; An alarm information generating unit is used to generate alarm information corresponding to the internal temperature value and the humidity value if the operating condition is not met.

9. A computer device, characterized in that: The device includes a processor, a communication interface, a memory and a communication bus, wherein the processor, the communication interface and the memory communicate with each other via the communication bus; Memory, used to store computer programs; The processor is used to implement the steps of the waterproof monitoring method for a communication base station described in any one of claims 1 to 7 when executing the program stored in the memory.

10. A computer-readable storage medium having a computer program stored thereon, characterized in that: When the computer program is executed by a processor, the steps of the waterproof monitoring method for a communication base station as described in any one of claims 1 to 7 are implemented.