Intelligent operation detection system for complete column circuit breaker
By designing an intelligent detection system for operation of complete sets of circuit breakers on columns, integrating multi-dimensional information for abnormal detection and intelligent dispatch, the problems of untimely detection and slow maintenance response in traditional detection methods are solved, and detection accuracy and maintenance efficiency are improved.
Patent Information
- Application Number
- CN202510800299.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-16
- Publication Date
- 2025-08-15
AI Technical Summary
The traditional on-column circuit breaker detection methods have untimely detection, low efficiency, low detection accuracy and long maintenance response time, which is difficult to meet the needs of modern power systems for intelligent equipment operation and maintenance.
An intelligent detection system for operation of a complete set of circuit breakers on columns is designed. Through the information analysis module, a multi-dimensional information is integrated to generate operation abnormal coefficients, and combined with the analysis and judgment module to generate abnormal instructions, notify the module to alarm, and the maintenance detection module obtains maintenance preferred parameters to realize intelligent dispatch of maintenance personnel.
It realizes all-round abnormality detection of complete sets of circuit breakers on columns, improves the accuracy of fault detection and early warning capabilities, shortens maintenance response time, and improves maintenance efficiency and resource utilization.
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Figure CN120490788A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of power system equipment detection, in particular to an intelligent operation detection system for a complete set of pole-mounted circuit breakers. Background Art
[0002] Pole-mounted circuit breakers are important equipment in distribution networks and are widely used in overhead lines for functions such as opening and closing operations, fault isolation, and protection. Their reliable operation is crucial to ensuring power supply. However, since pole-mounted circuit breakers are usually installed outdoors and exposed to harsh outdoor environments for long periods of time, they are susceptible to environmental factors, electrical stress, and mechanical wear, resulting in a high failure rate. Traditional pole-mounted circuit breaker detection methods mainly rely on manual inspections and regular maintenance. These methods are characterized by untimely and inefficient detection, and are unable to analyze the operating status of the pole-mounted circuit breaker from a global perspective, resulting in low detection accuracy. At the same time, after an abnormality in the pole-mounted circuit breaker is discovered, intelligent dispatch cannot be achieved, resulting in long maintenance response times and low resource utilization efficiency. This makes it difficult to meet the needs of modern power systems for intelligent equipment operation and maintenance.
[0003] Therefore, it is of great practical significance to develop an intelligent operation detection system for complete sets of pole-mounted circuit breakers. Summary of the Invention
[0004] In order to overcome the above-mentioned technical problems, the purpose of the present invention is to provide an intelligent operation detection system for a complete set of pole-mounted circuit breakers, which solves the shortcomings of traditional pole-mounted circuit breaker detection methods, such as delayed detection, low efficiency, low detection accuracy, and long maintenance response time, which makes it difficult to meet the needs of modern power systems for intelligent equipment operation and maintenance.
[0005] The purpose of the present invention can be achieved through the following technical solutions: The intelligent operation detection system for complete pole-mounted circuit breakers includes the following modules: An information analysis module is used to obtain an operation abnormality coefficient based on the operation detection parameters and send the operation abnormality coefficient to the analysis and judgment module; The specific process of the information analysis module obtaining the operation abnormality coefficient is as follows: Scaling the vibration information according to a corresponding preset ratio and marking it as vibration adjustment information; wherein the preset ratio corresponding to the vibration information is set by the user based on experience and is not zero; Scaling the electrical information according to a corresponding preset ratio and marking it as electrical adjustment information; wherein the preset ratio corresponding to the electrical information is set by the user based on experience and is not zero; Scale the temperature information according to a corresponding preset ratio and mark it as temperature adjustment information; wherein the preset ratio corresponding to the temperature information is set by the user based on experience and is not zero; Scale the sound intensity information according to a corresponding preset ratio and mark it as sound intensity adjustment information; wherein the preset ratio corresponding to the sound intensity information is set by the user based on experience and is not zero; Scaling the usage information according to a corresponding preset ratio and marking it as usage adjustment information; wherein the preset ratio corresponding to the usage information is set by the user based on experience and is not zero; Draw five line segments according to the vibration adjustment information, electrical adjustment information, temperature adjustment information, sound intensity adjustment information, and the numerical value of the adjustment information, and move one end point of the five line segments until they overlap, and the angles between adjacent line segments are equal, and the sum of the five angles is equal to 360°. Connect the other end points of the five line segments in sequence to form an irregular pentagon, obtain the area of the irregular pentagon, mark it as the operation abnormality coefficient, and send the operation abnormality coefficient to the analysis and judgment module; An analysis and judgment module is used to generate an operation abnormality instruction according to the operation abnormality coefficient, and send the operation abnormality instruction to the abnormality notification module and the maintenance detection module; The abnormality notification module is used to sound the abnormality notification alarm after receiving the abnormal operation instruction.
[0006] As a preferred embodiment of the present invention, the specific process of the analysis and judgment module generating the abnormal operation instruction is as follows: The operation abnormality coefficient is compared with the preset operation abnormality threshold, and the comparison results are as follows: If the operation abnormality coefficient is greater than or equal to the operation abnormality threshold, an operation abnormality instruction is generated and sent to the abnormality notification module and the maintenance detection module.
[0007] As a preferred embodiment of the present invention, the intelligent operation detection system for a complete set of pole-mounted circuit breakers further includes: The operation detection module is used to obtain the operation detection parameters of the complete set of pole-mounted circuit breakers and send the operation detection parameters to the information analysis module; wherein the operation detection parameters include vibration information, electrical information, temperature information, sound intensity information and usage information.
[0008] As a preferred embodiment of the present invention, the specific process of the operation detection module obtaining the operation detection parameters is as follows: Obtain the average vibration amplitude and vibration frequency of the complete set of pole-mounted circuit breakers per unit time, obtain the product of the two, and mark it as vibration information; Obtain the average voltage of the complete set of pole-mounted circuit breakers during operation per unit time and the preset standard voltage, obtain the difference between the two, and mark it as voltage information; obtain the average current of the complete set of pole-mounted circuit breakers during operation per unit time and the preset standard current, obtain the difference between the two, and mark it as current information; obtain the sum of the voltage information and the current information, and mark it as electrical information; Obtain the maximum operating temperature of the complete set of pole-mounted circuit breakers per unit time and the preset standard operating temperature, obtain the difference between the two, and mark it as temperature information; Obtain the maximum sound intensity per unit time of the complete set of pole-mounted circuit breakers and mark it as sound intensity information; Obtain the installation time and current time of the complete pole-mounted circuit breaker, obtain the difference between the two, and mark it as usage information; obtain the total time that the ambient temperature of the complete pole-mounted circuit breaker exceeds the standard temperature range, the total time that the ambient humidity exceeds the standard humidity range, the total rain exposure time, and the total sun exposure time since the installation of the complete pole-mounted circuit breaker, and mark them as temperature information, humidity information, rain information, and sun exposure information, respectively; quantize the temperature information, humidity information, rain information, and sun exposure information, multiply the values of the temperature information, humidity information, rain information, and sun exposure information by their corresponding preset weight coefficients, then obtain the sum of the four and mark it as environmental information; obtain the product of the usage information and the environmental information, and mark it as usage information; wherein the preset weight coefficients corresponding to the temperature information, humidity information, rain information, and sun exposure information are all set by the user based on experience, and the preset weight factors corresponding to the temperature information, humidity information, rain information, and sun exposure information increase in sequence and are all between 0 and 1, and the sum of the four is 1; Vibration information, electrical information, temperature information, sound intensity information and usage information are sent to the information analysis module.
[0009] As a preferred embodiment of the present invention, the intelligent operation detection system for a complete set of pole-mounted circuit breakers further includes: The maintenance detection module is used to obtain the maintenance optimization parameters of the selected object i after receiving the operation abnormality instruction, and send the maintenance optimization parameters to the information analysis module; wherein the maintenance optimization parameters include distance information and experience information; it is also used to send the relevant information of the object to be repaired to the mobile terminal of the selected object.
[0010] As a preferred embodiment of the present invention, the specific process of the maintenance detection module obtaining maintenance optimization parameters is as follows: After receiving the abnormal operation instruction, the complete set of pole-mounted circuit breakers corresponding to the abnormal operation instruction is marked as an object to be repaired; Obtain the location of the object to be repaired, and mark a circular area with the location of the object to be repaired as the center and a preset length as the radius as the area to be analyzed. Obtain all the complete sets of pole-mounted circuit breaker maintenance personnel in the area to be analyzed and mark them in sequence as candidate objects i, where i = 1, ..., v, where v is a positive integer, i is the number of any candidate object, and v is the total number of candidates; Obtain the shortest route distance between the location of the candidate object i and the location of the object to be repaired, and mark it as distance information; Obtain the working hours and total number of times that candidate i has repaired complete sets of pole-mounted circuit breakers, and obtain the product of the two, which is marked as experience information. Send distance information and experience information to the information analysis module.
[0011] As a preferred embodiment of the present invention, the information analysis module is further configured to obtain a maintenance optimization coefficient based on the maintenance optimization parameters, and send the maintenance optimization coefficient to the analysis and judgment module.
[0012] As a preferred embodiment of the present invention, the specific process of the information analysis module obtaining the maintenance optimization coefficient is as follows: The ratio of the experience information and the distance information is obtained, marked as a maintenance optimization coefficient, and sent to the analysis and judgment module.
[0013] As a preferred embodiment of the present invention, the analysis and judgment module is further used to obtain a selection object according to a maintenance optimization coefficient, and send the selection object to the maintenance detection module.
[0014] As a preferred embodiment of the present invention, the specific process of the analysis and judgment module obtaining the selected object is as follows: All candidate objects i are sorted in descending order according to the maintenance preference coefficient, and the candidate object i at the first position is marked as the selected object, and the selected object is sent to the maintenance detection module.
[0015] Compared with the prior art, the present invention has the following beneficial effects: First, data is collected from the complete set of pole-mounted circuit breakers. Then, data analysis technology is used to obtain the operation abnormality coefficient based on the operation detection parameters to comprehensively measure the operation abnormality degree of the complete set of pole-mounted circuit breakers. The larger the operation abnormality coefficient, the higher the operation abnormality degree. Then, an abnormality notification is issued. At the same time, data is collected from the maintenance personnel of the complete set of pole-mounted circuit breakers. Then, data analysis technology is used to obtain the maintenance optimization coefficient based on the maintenance optimization parameters to comprehensively measure the maintenance optimization degree of the complete set of pole-mounted circuit breaker maintenance personnel. The larger the maintenance optimization coefficient, the higher the operation and maintenance optimization degree. Then, intelligent dispatch is carried out. It can integrate multi-dimensional information to realize all-round abnormality detection of complete sets of pole-mounted circuit breakers, timely discover potential fault hazards, improve the accuracy of fault detection and early warning capabilities, greatly improve the accuracy and reliability of abnormality detection, and formulate maintenance personnel dispatch strategies based on multi-dimensional information, realizing intelligent dispatch of maintenance personnel. This dispatch method can ensure that the most suitable maintenance personnel are dispatched to handle the fault in the shortest time, shorten the maintenance response time, and improve maintenance efficiency and resource utilization. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] To facilitate understanding by those skilled in the art, the present invention is further described below with reference to the accompanying drawings.
[0017] Figure 1 The figure is a principle block diagram of the intelligent operation detection system for a complete set of pole-mounted circuit breakers according to the present invention.
[0018] Figure 2 The figure is a flow chart of the working method of the intelligent operation detection system for a complete set of pole-mounted circuit breakers according to the present invention. DETAILED DESCRIPTION
[0019] In order to enable those skilled in the art to better understand the solutions of the present invention, the technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. All other embodiments obtained by ordinary technicians in this field based on the embodiments of the present invention without making any creative efforts shall fall within the scope of protection of the present invention.
[0020] Example 1: See also Figure 1 As shown, this embodiment is an intelligent operation detection system for a complete set of pole-mounted circuit breakers, including the following modules: an operation detection module, an information analysis module, an analysis and judgment module, an abnormality notification module, and a maintenance detection module; The operation detection module is used to obtain the operation detection parameters of the complete set of pole-mounted circuit breakers and send the operation detection parameters to the information analysis module; wherein the operation detection parameters include vibration information, electrical information, temperature information, sound intensity information and usage information; The information analysis module is used to obtain an operation abnormality coefficient based on the operation detection parameters and send the operation abnormality coefficient to the analysis and judgment module; it is also used to obtain a maintenance optimization coefficient based on the maintenance optimization parameters and send the maintenance optimization coefficient to the analysis and judgment module; The analysis and judgment module is used to generate an operation abnormality instruction according to the operation abnormality coefficient and send the operation abnormality instruction to the abnormality notification module and the maintenance detection module; it is also used to obtain a selection object according to the maintenance priority coefficient and send the selection object to the maintenance detection module; Wherein, the abnormality notification module is used to sound an abnormality notification alarm after receiving an abnormal operation instruction; Among them, the maintenance detection module is used to obtain the maintenance preferred parameters of the selected object i after receiving the operation abnormality instruction, and send the maintenance preferred parameters to the information analysis module; wherein the maintenance preferred parameters include distance information and experience information; and is also used to send relevant information of the object to be maintained to the mobile phone terminal of the selected object.
[0021] Example 2: See also Figure 2 As shown, this embodiment is a working method of an intelligent operation detection system for a complete set of pole-mounted circuit breakers, comprising the following steps: Step 1: The operation detection module obtains the operation detection parameters of the complete set of pole-mounted circuit breakers, wherein the operation detection parameters include vibration information, electrical information, temperature information, sound intensity information and usage information, and sends the operation detection parameters to the information analysis module; Step 2: The information analysis module obtains the operation abnormality coefficient according to the operation detection parameters, and sends the operation abnormality coefficient to the analysis and judgment module; Step 3: The analysis and judgment module generates an operation abnormality instruction according to the operation abnormality coefficient, and sends the operation abnormality instruction to the abnormality notification module and the maintenance detection module; Step 4: The abnormality notification module sounds an abnormality notification alarm after receiving the abnormal operation instruction; Step 5: After receiving the abnormal operation instruction, the maintenance detection module obtains the maintenance optimization parameters of the candidate object i, where the maintenance optimization parameters include distance information and experience information, and sends the maintenance optimization parameters to the information analysis module; Step 6: The information analysis module obtains a maintenance optimization coefficient based on the maintenance optimization parameters and sends the maintenance optimization coefficient to the analysis and judgment module; Step 7: The analysis and judgment module obtains the selected object according to the maintenance optimization coefficient and sends the selected object to the maintenance detection module; Step 8: The maintenance detection module sends the relevant information of the object to be repaired to the mobile phone terminal of the selected object.
[0022] Example 3: Based on any of the above embodiments, embodiment 3 of the present invention is an operation detection module. The function of the operation detection module is to obtain operation detection parameters. The specific process is as follows: The operation detection module obtains the average vibration amplitude and vibration frequency of the complete set of pole-mounted circuit breakers in the unit time of operation, obtains the product of the two, and marks it as vibration information; The operation detection module obtains the average voltage of the complete pole-mounted circuit breaker during the operation unit time and the preset standard voltage, obtains the difference between the two, and marks it as voltage information; obtains the average current of the complete pole-mounted circuit breaker during the operation unit time and the preset standard current, obtains the difference between the two, and marks it as current information; obtains the sum of the voltage information and the current information, and marks it as electrical information; The operation detection module obtains the maximum operating temperature of the complete set of pole-mounted circuit breakers within a unit time and the preset standard operating temperature, obtains the difference between the two, and marks it as temperature information; The operation detection module obtains the maximum sound intensity per unit time of the complete set of pole-mounted circuit breakers and marks it as sound intensity information; The operation detection module obtains the installation time and current time of the complete set of pole-mounted circuit breakers, obtains the difference between the two, and marks it as time information. It obtains the total time that the ambient temperature exceeds the standard temperature range, the total time that the ambient humidity exceeds the standard humidity range, the total rain time, and the total sun time of the complete set of pole-mounted circuit breakers since installation, and marks them as temperature time information, wet time information, rain time information, and sun time information respectively. The temperature time information, wet time information, rain time information, and sun time information are quantified, and the values of the temperature time information, wet time information, rain time information, and sun time information are multiplied by their corresponding preset weight coefficients respectively. Then, the sum of the four is obtained and marked as environmental information. The product of the usage time information and the environmental information is obtained and marked as usage information. Among them, the preset weight coefficients corresponding to the temperature information, humidity information, shower information, and sun exposure information are all set by the user based on experience. The preset weight factors corresponding to the temperature information, humidity information, shower information, and sun exposure information increase in sequence and are all between 0 and 1, and the sum of the four is 1. For example, the preset weight coefficients corresponding to the temperature information, humidity information, shower information, and sun exposure information are set by the user based on experience to be 0.11, 0.23, 0.29, and 0.37, respectively. The operation detection module sends vibration information, electrical information, temperature information, sound intensity information and usage information to the information analysis module.
[0023] Example 4: Based on any of the above embodiments, embodiment 4 of the present invention is an information analysis module, which has two functions: One of the functions is to obtain the operation abnormality coefficient. The specific process is as follows: The information analysis module scales the vibration information according to a corresponding preset ratio and marks it as vibration adjustment information; wherein the preset ratio corresponding to the vibration information is set by the user based on experience and is not zero; The information analysis module scales the electrical information according to a corresponding preset ratio and marks it as electrical adjustment information; wherein the preset ratio corresponding to the electrical information is set by the user based on experience and is not zero; The information analysis module scales the temperature information according to a corresponding preset ratio and marks it as temperature adjustment information; wherein the preset ratio corresponding to the temperature information is set by the user based on experience and is not zero; The information analysis module scales the sound intensity information according to a corresponding preset ratio and marks it as sound intensity adjustment information; wherein the preset ratio corresponding to the sound intensity information is set by the user based on experience and is not zero; The information analysis module scales the usage information according to a corresponding preset ratio and marks it as usage adjustment information; wherein the preset ratio corresponding to the usage information is set by the user based on experience and is not zero; The information analysis module draws five line segments according to the vibration adjustment information, electrical adjustment information, temperature adjustment information, sound intensity adjustment information, and the numerical value of the adjustment information, and moves one end point of the five line segments until they overlap, and the angles between adjacent line segments are equal, and the sum of the five angles is equal to 360 degrees. The other end points of the five line segments are sequentially connected by line segments to form an irregular pentagon, and the area of the irregular pentagon is obtained and marked as an operation abnormality coefficient, and the operation abnormality coefficient is sent to the analysis and judgment module; The second function is to obtain the maintenance optimization coefficient. The specific process is as follows: The information analysis module obtains the ratio of the experience information and the distance information, marks it as a maintenance optimization coefficient, and sends the maintenance optimization coefficient to the analysis and judgment module.
[0024] Example 5: Based on any of the above embodiments, embodiment 4 of the present invention is an analysis and judgment module, which has two functions: One of its functions is to generate an abnormal operation instruction. The specific process is as follows: The analysis and judgment module compares the operation abnormality coefficient with the preset operation abnormality threshold. The comparison results are as follows: If the operation abnormality coefficient is greater than or equal to the operation abnormality threshold, an operation abnormality instruction is generated and sent to the abnormality notification module and the maintenance detection module; The second purpose is to obtain the candidates for selection. The specific process is as follows: The analysis and judgment module sorts all the candidate objects i according to the maintenance priority coefficient from large to small, marks the candidate object i at the first position as the selected object, and sends the selected object to the maintenance detection module.
[0025] Example 6: Based on any of the above embodiments, embodiment 6 of the present invention is an abnormality notification module, and the function of the abnormality notification module is to sound an abnormality notification alarm after receiving an abnormal operation instruction.
[0026] Example 7: Based on any of the above embodiments, embodiment 7 of the present invention is a maintenance detection module, which has two functions: One of the functions is to obtain maintenance optimization parameters. The specific process is as follows: After receiving the abnormal operation instruction, the maintenance detection module marks the complete set of pole-mounted circuit breakers corresponding to the abnormal operation instruction as an object to be repaired; The maintenance detection module obtains the location of the object to be repaired and marks a circular area with the location of the object to be repaired as the center and a preset length as the radius as the area to be analyzed. All the complete sets of pole-mounted circuit breaker maintenance personnel in the area to be analyzed are obtained and marked as candidate objects i, where i = 1, ..., v, where v is a positive integer, i is the number of any candidate object, and v is the total number of candidates. The maintenance detection module obtains the shortest route distance between the location of the candidate object i and the location of the object to be repaired, and marks it as distance information; The maintenance detection module obtains the working hours of candidate i in the complete set of pole-mounted circuit breaker maintenance industry and the total number of times it has repaired complete sets of pole-mounted circuit breakers, obtains the product of the two, and marks it as experience information; The maintenance detection module sends the distance information and experience information to the information analysis module; The second function is to send the relevant information of the object to be repaired to the mobile phone terminal of the selected object; wherein, the relevant information of the object to be repaired includes the location of the object to be repaired, the electrical parameters of the object to be repaired, and the mechanical parameters of the object to be repaired.
[0027] Based on the above embodiments 1-7, the working principle of the present invention is as follows: An intelligent operation detection system for a complete set of pole-mounted circuit breakers obtains operation detection parameters of the complete set of pole-mounted circuit breakers through an operation detection module, wherein the operation detection parameters include vibration information, electrical information, temperature information, sound intensity information and usage information; an operation abnormality coefficient is obtained according to the operation detection parameters through an information analysis module; an operation abnormality instruction is generated according to the operation abnormality coefficient through an analysis and judgment module; an abnormal notification alarm sounds after an operation abnormality instruction is received through an abnormal notification module; maintenance preferred parameters of a candidate object are obtained after an operation abnormality instruction is received through a maintenance detection module; a maintenance preferred coefficient is obtained according to the maintenance preferred parameters through an information analysis module; a selected object is obtained according to the maintenance preferred coefficient through an analysis and judgment module; and relevant information of the candidate object is sent to a mobile phone terminal of the selected object through a maintenance detection module; the system first collects data on the complete set of pole-mounted circuit breakers, and then uses data analysis technology to comprehensively analyze the operation abnormality coefficient obtained according to the operation detection parameters. The degree of operational abnormality of a complete set of pole-mounted circuit breakers is measured, and a larger operational abnormality coefficient indicates a higher operational abnormality. An abnormality notification is then made, and data is collected from maintenance personnel of the complete set of pole-mounted circuit breakers. The maintenance preference coefficient obtained based on maintenance preference parameters using data analysis technology can then be used to comprehensively measure the maintenance preference degree of maintenance personnel of the complete set of pole-mounted circuit breakers. A larger maintenance preference coefficient indicates a higher operational maintenance preference degree, and intelligent dispatch is then performed. The system can integrate multi-dimensional information to achieve all-round abnormality detection of complete sets of pole-mounted circuit breakers, timely discover potential hidden faults, improve the accuracy of fault detection and early warning capabilities, greatly improve the accuracy and reliability of abnormality detection, and formulate maintenance personnel dispatch strategies based on multi-dimensional information, realizing intelligent dispatch of maintenance personnel. This dispatch method can ensure that the most suitable maintenance personnel are dispatched to handle faults in the shortest time, shorten maintenance response time, and improve maintenance efficiency and resource utilization.
[0028] Throughout this specification, references to terms such as "one embodiment," "example," or "specific example" indicate that the specific features, structures, materials, or characteristics described in conjunction with that embodiment or example are included in at least one embodiment or example of the present invention. In this specification, schematic representations of these terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in any one or more embodiments or examples.
[0029] The above contents are merely examples and explanations of the present invention. Those skilled in the art may make various modifications or additions to the described specific embodiments or replace them in similar ways. As long as they do not deviate from the invention or exceed the scope defined in this application, they should all fall within the scope of protection of the present invention.
Claims
1. The intelligent operation detection system for complete sets of pole-mounted circuit breakers is characterized by: Includes the following modules: An information analysis module is used to obtain an operation abnormality coefficient based on the operation detection parameters and send the operation abnormality coefficient to the analysis and judgment module; The specific process of the information analysis module obtaining the operation abnormality coefficient is as follows: Scale the vibration information according to a corresponding preset ratio and mark it as vibration adjustment information; scaling the electrical information according to a corresponding preset ratio and marking it as electrical regulation information; Scale the temperature information according to a corresponding preset ratio and mark it as temperature adjustment information; Scale the sound intensity information according to a corresponding preset ratio and mark it as sound intensity adjustment information; scaling the usage information according to a corresponding preset ratio and marking it as usage adjustment information; Draw an irregular pentagon according to the vibration adjustment information, the electrical adjustment information, the temperature adjustment information, the sound intensity adjustment information, and the adjustment information, obtain the area of the irregular pentagon, mark it as an operation abnormality coefficient, and send the operation abnormality coefficient to the analysis and judgment module; An analysis and judgment module is used to generate an operation abnormality instruction according to the operation abnormality coefficient, and send the operation abnormality instruction to the abnormality notification module and the maintenance detection module; The abnormality notification module is used to sound the abnormality notification alarm after receiving the abnormal operation instruction.
2. The intelligent operation detection system for a complete set of pole-mounted circuit breakers according to claim 1, characterized in that: The specific process of the analysis and judgment module generating the abnormal operation instruction is as follows: The operation abnormality coefficient is compared with the preset operation abnormality threshold, and the comparison results are as follows: If the operation abnormality coefficient is greater than or equal to the operation abnormality threshold, an operation abnormality instruction is generated and sent to the abnormality notification module and the maintenance detection module.
3. The intelligent operation detection system for a complete set of pole-mounted circuit breakers according to claim 1, characterized in that: Also includes: The operation detection module is used to obtain the operation detection parameters of the complete set of pole-mounted circuit breakers and send the operation detection parameters to the information analysis module; wherein the operation detection parameters include vibration information, electrical information, temperature information, sound intensity information and usage information.
4. The intelligent operation detection system for a complete set of pole-mounted circuit breakers according to claim 3, characterized in that: The specific process of the operation detection module obtaining the operation detection parameters is as follows: Obtain the average vibration amplitude and vibration frequency of the complete set of pole-mounted circuit breakers per unit time, obtain the product of the two, and mark it as vibration information; Obtain the average voltage of the complete set of pole-mounted circuit breakers during operation per unit time and the preset standard voltage, obtain the difference between the two, and mark it as voltage information; obtain the average current of the complete set of pole-mounted circuit breakers during operation per unit time and the preset standard current, obtain the difference between the two, and mark it as current information; obtain the sum of the voltage information and the current information, and mark it as electrical information; Obtain the maximum operating temperature of the complete set of pole-mounted circuit breakers per unit time and the preset standard operating temperature, obtain the difference between the two, and mark it as temperature information; Obtain the maximum sound intensity per unit time of the complete set of pole-mounted circuit breakers and mark it as sound intensity information; Obtain the installation time and current time of the complete pole-mounted circuit breaker, obtain the difference between the two, and mark it as usage information. Obtain the total duration of the ambient temperature exceeding the standard temperature range, the total duration of the ambient humidity exceeding the standard humidity range, the total rain exposure time, and the total sun exposure time of the complete pole-mounted circuit breaker since installation, and mark them as temperature information, humidity information, rain information, and sun exposure information, respectively. Quantify the temperature information, humidity information, rain information, and sun exposure information to obtain environmental information. Obtain the product of the usage information and the environmental information and mark it as usage information. Vibration information, electrical information, temperature information, sound intensity information and usage information are sent to the information analysis module.
5. The intelligent operation detection system for a complete set of pole-mounted circuit breakers according to claim 1, characterized in that: Also includes: The maintenance detection module is used to obtain the maintenance optimization parameters of the selected object i after receiving the operation abnormality instruction, and send the maintenance optimization parameters to the information analysis module; wherein the maintenance optimization parameters include distance information and experience information; it is also used to send the relevant information of the object to be repaired to the mobile terminal of the selected object.
6. The intelligent operation detection system for a complete set of pole-mounted circuit breakers according to claim 5, characterized in that: The specific process of the maintenance detection module obtaining maintenance optimization parameters is as follows: After receiving the abnormal operation instruction, the complete set of pole-mounted circuit breakers corresponding to the abnormal operation instruction is marked as an object to be repaired; Obtain the location of the object to be repaired, and mark a circular area with the location of the object to be repaired as the center and a preset length as the radius as the area to be analyzed. Obtain all the complete sets of pole-mounted circuit breaker maintenance personnel in the area to be analyzed and mark them in sequence as candidate objects i, where i = 1, ..., v, where v is a positive integer, i is the number of any candidate object, and v is the total number of candidates; Obtain the shortest route distance between the location of the candidate object i and the location of the object to be repaired, and mark it as distance information; Obtain the working hours and total number of times that candidate i has repaired complete sets of pole-mounted circuit breakers, and obtain the product of the two, which is marked as experience information. Send distance information and experience information to the information analysis module.
7. The intelligent operation detection system for a complete set of pole-mounted circuit breakers according to claim 1, characterized in that: The information analysis module is further configured to obtain a maintenance optimization coefficient based on the maintenance optimization parameters, and send the maintenance optimization coefficient to the analysis and judgment module.
8. The intelligent operation detection system for a complete set of pole mounted circuit breakers according to claim 7, characterized in that: The specific process of the information analysis module obtaining the maintenance optimization coefficient is as follows: The ratio of the experience information and the distance information is obtained, marked as a maintenance optimization coefficient, and sent to the analysis and judgment module.
9. The intelligent operation detection system for a complete set of pole-mounted circuit breakers according to claim 1, characterized in that: The analysis and judgment module is further used to obtain a selected object according to the maintenance optimization coefficient and send the selected object to the maintenance detection module.
10. The intelligent operation detection system for a complete set of pole mounted circuit breakers according to claim 9, characterized in that: The specific process of the analysis and judgment module obtaining the selected object is as follows: All candidate objects i are sorted in descending order according to the maintenance preference coefficient, and the candidate object i at the first position is marked as the selected object, and the selected object is sent to the maintenance detection module.
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