Remote detection method and system applied to primary and secondary fusion pole-mounted circuit breaker
By obtaining the circuit breaker's cutoff response time information and generating working status information, the problem of poor safety of the circuit breaker on the first and second fusion column is solved, remote fault detection and timely abnormal analysis are realized, and safety and detection efficiency are improved.
Patent Information
- Application Number
- CN202510389172.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-31
- Publication Date
- 2025-07-04
- Estimated Expiration
- 2045-03-31
AI Technical Summary
The circuit breakers on the primary and secondary fusion column lack real-time detection mechanism, resulting in poor safety and the inability to detect abnormal states in time.
By obtaining the circuit breaker's cutoff response time information, combining the preset response time limit value to generate working status information, and automatically generate abnormal analysis results in the event of an abnormality, realizing remote fault detection.
It improves the safety of the circuit breaker, reduces potential operational risks, enhances the efficiency of fault detection, and reduces the regular manual inspection process of operation and maintenance personnel.
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Figure CN120254580A_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of power equipment detection, and in particular to a remote detection method and system thereof applied to a primary-secondary fusion pole-mounted circuit breaker. Background Art
[0002] The primary and secondary fused pole-mounted circuit breaker is a pole-mounted circuit breaker that combines primary and secondary equipment. It is mainly used in power systems and can automatically cut off the current when a short circuit or other fault occurs, thereby playing a role in protecting and controlling the current.
[0003] At present, the primary and secondary fusion pole-mounted circuit breakers lack a real-time detection mechanism and rely solely on regular manual inspections by operation and maintenance personnel, resulting in the failure to detect abnormal conditions in a timely manner and poor safety issues, which need further improvement. Summary of the invention
[0004] Based on this, an embodiment of the present application provides a remote detection method and system for a primary-secondary fusion pole-mounted circuit breaker to solve the problem of poor safety in the prior art.
[0005] In a first aspect, an embodiment of the present application provides a remote detection method for a primary-secondary fusion column mounted circuit breaker, the method comprising:
[0006] Obtaining the disconnection response time information of the circuit breaker to be detected;
[0007] Generate circuit breaker working state information according to the cut-off response time information and the preset response time limit value information, wherein the circuit breaker working state information is abnormal state information or normal state information;
[0008] If the circuit breaker operating state information is the abnormal state information, abnormal analysis result information is generated based on the cutoff response time information.
[0009] Compared with the prior art, the beneficial effect is as follows: in the remote detection method for a primary-secondary fusion pole-mounted circuit breaker provided in the embodiment of the present application, the terminal device can first obtain the disconnection response time information of the circuit breaker to be detected, and then accurately generate the circuit breaker working status information according to the disconnection response time information and the response time limit value information; if the circuit breaker working status information is abnormal status information, abnormal analysis result information is automatically generated based on the disconnection response time information, thereby realizing automatic fault detection of the primary-secondary fusion pole-mounted circuit breaker, which is beneficial for operation and maintenance personnel to carry out targeted repairs on the primary-secondary fusion pole-mounted circuit breaker in a timely manner, effectively improve safety, and to a certain extent solve the current problem of poor safety.
[0010] Second aspect, an embodiment of the present application provides a remote detection system applied to a primary-secondary integrated pole-mounted circuit breaker. The system includes:
[0011] Cut-off response time information acquisition module: configured to acquire the cut-off response time information of the circuit breaker to be detected;
[0012] Circuit breaker working state information generation module: configured to generate circuit breaker working state information according to the cut-off response time information and preset response time limit value information, where the circuit breaker working state information is abnormal state information or normal state information;
[0013] Abnormal analysis result information generation module: configured to generate abnormal analysis result information based on the cut-off response time information if the circuit breaker working state information is the abnormal state information.
[0014] Third aspect, an embodiment of the present application provides a terminal device, including a memory, a processor, and a computer program stored in the memory and executable on the processor. When the processor executes the computer program, the steps of the method in the first aspect as described above are implemented.
[0015] Fourth aspect, an embodiment of the present application provides a 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 of the method in the first aspect as described above are implemented.
[0016] It can be understood that the beneficial effects of the above second aspect to fourth aspect can refer to the relevant descriptions in the first aspect above, and will not be elaborated here. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the following will briefly introduce the drawings required for use in the embodiments or the description of the prior art.
[0018] Figure 1 is a flowchart of a remote detection method provided by an embodiment of the present application;
[0019] Figure 2 is a flowchart after step S100 in the remote detection method provided by an embodiment of the present application;
[0020] Figure 3 is a flowchart of step S200 in the remote detection method provided by an embodiment of the present application;
[0021] Figure 4 is a flowchart of step S300 in the remote detection method provided by an embodiment of the present application;
[0022] Figure 5It is the first process schematic diagram after step S300 in the remote detection method provided by an embodiment of the present application;
[0023] Figure 6 It is the second process schematic diagram after step S300 in the remote detection method provided by an embodiment of the present application;
[0024] Figure 7 It is the module block diagram of the remote detection system provided by an embodiment of the present application;
[0025] Figure 8 It is the schematic diagram of the terminal device provided by an embodiment of the present application. Detailed implementation manners
[0026] In the following description, for the purpose of illustration rather than limitation, specific details such as specific system architectures, technologies, etc. are presented to thoroughly understand the embodiments of the present application. However, those skilled in the art should clearly understand that the present application can also be implemented in other embodiments without these specific details. In other cases, detailed descriptions of well-known systems, devices, circuits, and methods are omitted to avoid unnecessary details from interfering with the description of the present application.
[0027] In the description of the present application specification and the appended claims, the terms "first", "second", "third", etc. are only used for distinguishing descriptions and cannot be understood as indicating or implying relative importance.
[0028] The reference to "an embodiment" or "some embodiments" etc. in the description of the present application specification means that specific features, structures, or characteristics described in conjunction with the embodiment are included in one or more embodiments of the present application. Thus, the statements "in an embodiment", "in some embodiments", "in other some embodiments", "in still other embodiments", etc. that appear in different places in this specification do not necessarily all refer to the same embodiment, but mean "one or more but not all embodiments", unless otherwise specifically emphasized in other ways. The terms "comprising", "including", "having", and their variants all mean "including but not limited to", unless otherwise specifically emphasized in other ways.
[0029] In order to illustrate the technical solutions described in the present application, the following will be described through specific embodiments.
[0030] Please refer to Figure 1 , Figure 1It is a schematic flowchart of a remote detection method for an integrated primary and secondary pole-mounted circuit breaker provided by an embodiment of the present application. In this embodiment, the execution subject of the remote detection method is a terminal device. It can be understood that the types of terminal devices include, but are not limited to, mobile phones, tablet computers, laptop computers, ultra-mobile personal computers (UMPCs), netbooks, personal digital assistants (PDAs), etc. The specific types of terminal devices are not limited in the embodiments of the present application.
[0031] Please refer to Figure 1 , the remote detection method provided by the embodiment of the present application includes, but is not limited to, the following steps:
[0032] In S100, obtain the cut-off response time information of the circuit breaker to be detected.
[0033] Specifically, the terminal device can first use a preset sensor to obtain the cut-off response time information of the circuit breaker to be detected, where the circuit breaker to be detected is an integrated primary and secondary pole-mounted circuit breaker used to describe the working condition to be detected; the cut-off response time information is used to describe the cumulative time from when the circuit breaker to be detected detects a fault to when it actually cuts off the current.
[0034] It should be noted that as the usage time increases, the internal parts of the circuit breaker to be detected may lose flexibility due to multiple wearings, and then its response speed will decrease.
[0035] In some possible implementation manners, in order to facilitate early warning of a fault situation before a real abnormal fault occurs, please refer to Figure 2 , after step S100, the method further includes, but is not limited to, the following steps:
[0036] In S101, obtain the information of the last five historical response times.
[0037] Specifically, the terminal device can obtain the information of the last five historical response times, that is, obtain the response times corresponding to the last five current cut-off operations.
[0038] In S102, compare the cut-off response time information and the historical response time information respectively.
[0039] Specifically, after the terminal device obtains the information of the last five historical response times, the terminal device can compare the cut-off response time information with each historical response time information respectively.
[0040] In S103, if all the information of the last five historical response times is less than the cut-off response time information respectively, generate an abnormal warning message.
[0041] Specifically, if the most recent five historical response time information is less than the cut-off response time information, it indicates that the response time corresponding to this cut-off current operation is significantly different from the historical cut-off response time. Therefore, the terminal device can generate an abnormal warning message, where the abnormal warning message is used to prompt the maintenance personnel that the circuit breaker to be detected may have abnormal conditions.
[0042] In S200, according to the cut-off response time information and the preset response time limit value information, generate the circuit breaker working state information.
[0043] Specifically, after the terminal device obtains the cut-off response time information, the terminal device can effectively generate the circuit breaker working state information according to the cut-off response time information and the preset response time limit value information, where the response time limit value information can be a custom value pre-set by the maintenance personnel according to the specific model of the circuit breaker to be detected. The circuit breaker working state information is abnormal state information or normal state information. The abnormal state information is used to describe that the working condition of the circuit breaker to be detected is in an abnormal state, and the normal state information is used to describe that the working condition of the circuit breaker to be detected is in a normal state.
[0044] In some possible implementation manners, in order to generate effective circuit breaker working state information, please refer to Figure 3 and step S200 includes but is not limited to the following steps:
[0045] In S210, if the cut-off response time information is less than or equal to the preset response time limit value information, generate the normal state information.
[0046] Specifically, if the cut-off response time information is less than or equal to the preset response time limit value information, it indicates that there is no obvious deterioration in the circuit breaker to be detected, and the cut-off response time of the circuit breaker to be detected is within the normal value. Therefore, the terminal device can generate the normal state information.
[0047] In S220, if the cut-off response time information is greater than the response time limit value information, generate the abnormal state information.
[0048] Specifically, if the cut-off response time information is greater than the response time limit value information, it indicates that there is an obvious deterioration in the circuit breaker to be detected, and the cut-off response time of the circuit breaker to be detected is an abnormal value. Therefore, the terminal device can generate the abnormal state information.
[0049] In S300, if the circuit breaker working state information is abnormal state information, generate the abnormal analysis result information based on the cut-off response time information.
[0050] Specifically, if the breaker operating status information is abnormal status information, the terminal device can generate abnormal analysis result information based on the cut-off response time information, so as to automatically analyze the abnormal conditions of the breaker to be detected, which is beneficial for the operation and maintenance personnel to understand the abnormal conditions more deeply and in a timely manner and perform targeted maintenance, effectively improving safety.
[0051] Without loss of generality, the abnormal analysis result information is temperature-related abnormal information or other related abnormal information. Among them, the temperature-related abnormal information is used to describe that the abnormal condition of the breaker to be detected is strongly correlated with the factor of temperature, and the other related abnormal information is used to describe that the abnormal condition of the breaker to be detected is strongly correlated with other factors except the temperature factor.
[0052] In some possible implementation manners, in order to generate accurate abnormal analysis result information, please refer to Figure 4 , step S300 includes but is not limited to the following steps:
[0053] In S310, if the breaker operating status information is abnormal status information, obtain the first ambient temperature information corresponding to the cut-off response time information.
[0054] Specifically, if the breaker operating status information is abnormal status information, the terminal device can obtain the first ambient temperature information corresponding to the cut-off response time information based on a preset temperature sensor. Among them, the first ambient temperature information is used to describe the ambient temperature of the breaker to be detected during the cut-off response time information.
[0055] In S320, obtain the historical abnormal time information.
[0056] Specifically, after the terminal device obtains the first ambient temperature information, the terminal device can obtain the historical abnormal time information. Among them, the historical abnormal time information is used to describe the moment when the breaker to be detected has an abnormal condition during the historical cut-off current operation.
[0057] In S330, according to the historical abnormal time information, determine the second ambient temperature information corresponding to the historical abnormal time information.
[0058] Specifically, after the terminal device obtains the historical abnormal time information, the terminal device can determine the second ambient temperature information corresponding to the historical abnormal time information according to the historical abnormal time information. Among them, the second ambient temperature information is used to describe the ambient temperature of the breaker to be detected during the historical abnormal time information.
[0059] In S340, determine whether the difference between the first ambient temperature information and the second ambient temperature information is less than the preset ambient temperature difference limit value information.
[0060] Specifically, after the terminal device determines the second ambient temperature information, the terminal device can first calculate the difference between the first ambient temperature information and the second ambient temperature information, and then determine whether the difference between the first ambient temperature information and the second ambient temperature information is less than a preset ambient temperature difference limit value information. Among them, the ambient temperature difference limit value information can be a custom value preset by the operation and maintenance personnel according to the specific model of the circuit breaker to be detected.
[0061] In S350, if the difference between the first ambient temperature information and the second ambient temperature information is less than the ambient temperature difference limit value information, temperature-related abnormal information is generated.
[0062] Specifically, if the difference between the first ambient temperature information and the second ambient temperature information is less than the ambient temperature difference limit value information, it indicates that the ambient temperatures corresponding to the two abnormal situations are similar. Therefore, the terminal device can accurately generate temperature-related abnormal information.
[0063] In S360, if the difference between the first ambient temperature information and the second ambient temperature information is greater than or equal to the ambient temperature difference limit value information, other relevant abnormal information is generated.
[0064] Specifically, if the difference between the first ambient temperature information and the second ambient temperature information is greater than or equal to the ambient temperature difference limit value information, it indicates that the ambient temperatures corresponding to the two abnormal situations are quite different. Therefore, the terminal device can generate other relevant abnormal information.
[0065] In some possible implementation manners, for the convenience of the operation and maintenance personnel to further analyze the abnormal situation, please refer to Figure 5 ., if abnormal warning information is generated, after step S300, the method further includes but is not limited to the following steps:
[0066] In S301, obtain the third ambient temperature information corresponding to the last five historical response time information.
[0067] Specifically, the terminal device can first obtain the third ambient temperature information corresponding to the last five historical response time information. Among them, the third ambient temperature information is used to describe the ambient temperature of the circuit breaker to be detected in the historical response time information.
[0068] In S302, generate ambient temperature packet information according to multiple third ambient temperature information, the first ambient temperature information, and the second ambient temperature information.
[0069] Specifically, after the terminal device obtains multiple pieces of third ambient temperature information, the terminal device can generate ambient temperature data packet information based on the multiple pieces of third ambient temperature information, the first ambient temperature information, and the second ambient temperature information, where the ambient temperature data packet information is used to describe a data packet that comprehensively includes the multiple pieces of third ambient temperature information, the first ambient temperature information, and the second ambient temperature information.
[0070] In some possible implementation manners, for the convenience of operation and maintenance personnel to know the reliability of the detection data, please refer to Figure 6 , after step S300, the method further includes but is not limited to the following steps:
[0071] In S400, in response to the manual re-inspection instruction, obtain the manual detection ambient temperature information.
[0072] Specifically, the terminal device can obtain the manual detection ambient temperature information in response to the manual re-inspection instruction, where the manual re-inspection instruction is used to describe that the operation and maintenance personnel complete the re-inspection of the ambient temperature data; the manual detection ambient temperature information is used to describe the ambient temperature measured manually by the operation and maintenance personnel for the circuit breaker to be detected.
[0073] In S410, compare the manual detection ambient temperature information with the first ambient temperature information.
[0074] Specifically, after the terminal device obtains the manual detection ambient temperature information, the terminal device can compare the manual detection ambient temperature information with the first ambient temperature information.
[0075] In S420, if the manual detection ambient temperature information is equal to the first ambient temperature information, generate reliable data label information.
[0076] Specifically, if the manual detection ambient temperature information is equal to the first ambient temperature information, it indicates that the data detected by the temperature sensor of the circuit breaker to be detected is still reliable. Therefore, the terminal device can generate reliable data label information.
[0077] In S430, assign the reliable data label information to the first ambient temperature information.
[0078] Specifically, after the terminal device generates the reliable data label information, the terminal device can assign the reliable data label information to the first ambient temperature information, so as to define that the first ambient temperature information is reliable.
[0079] The implementation principle of the remote detection method for the primary-secondary integrated pole-mounted circuit breaker applied in the embodiments of this application is as follows: The terminal device can first obtain the cut-off response time information of the circuit breaker to be detected, and then accurately generate the circuit breaker working state information based on the cut-off response time information and the response time limit value information. If the circuit breaker working state information is abnormal state information, an abnormal analysis result information will be automatically generated based on the cut-off response time information, thus omitting the link of regular manual detection by maintenance personnel, automatically detecting faults of the primary-secondary integrated pole-mounted circuit breaker, and timely discovering the existing abnormal state, which is beneficial for maintenance personnel to perform targeted repairs on the primary-secondary integrated pole-mounted circuit breaker in a timely manner and effectively improve safety.
[0080] It should be noted that the magnitudes of the sequence numbers of the steps in the above embodiments do not mean the order of execution. The execution order of each process should be determined by its function and internal logic, and should not constitute any limitation to the implementation process of the embodiments of this application.
[0081] The embodiments of this application also provide a remote detection system applied to the primary-secondary integrated pole-mounted circuit breaker. For the convenience of description, only the parts related to this application are shown, such as Figure 7 As shown, the system 70 includes:
[0082] The cut-off response time information acquisition module 71: is used to acquire the cut-off response time information of the circuit breaker to be detected;
[0083] The circuit breaker working state information generation module 72: is used to generate the circuit breaker working state information according to the cut-off response time information and the preset response time limit value information, where the circuit breaker working state information is abnormal state information or normal state information;
[0084] The abnormal analysis result information generation module 73: is used to generate the abnormal analysis result information based on the cut-off response time information if the circuit breaker working state information is abnormal state information.
[0085] Optionally, the above circuit breaker working state information generation module 72 includes:
[0086] The normal state information generation sub-module: is used to generate the normal state information if the cut-off response time information is less than or equal to the preset response time limit value information;
[0087] The abnormal state information generation sub-module: is used to generate the abnormal state information if the cut-off response time information is greater than the response time limit value information.
[0088] Correspondingly, the above abnormal analysis result information generation module 73 includes:
[0089] The first ambient temperature information acquisition sub-module: used to acquire the first ambient temperature information corresponding to the cut-off response time information if the breaker operating status information is abnormal status information;
[0090] The historical abnormal time information acquisition sub-module: used to acquire historical abnormal time information;
[0091] The second ambient temperature information determination sub-module: used to determine the second ambient temperature information corresponding to the historical abnormal time information according to the historical abnormal time information;
[0092] The difference judgment sub-module: used to judge whether the difference between the first ambient temperature information and the second ambient temperature information is less than the preset ambient temperature difference limit value information;
[0093] The temperature-related abnormal information generation sub-module: used to generate temperature-related abnormal information if the difference between the first ambient temperature information and the second ambient temperature information is less than the ambient temperature difference limit value information;
[0094] The other-related abnormal information generation sub-module: used to generate other-related abnormal information if the difference between the first ambient temperature information and the second ambient temperature information is greater than or equal to the ambient temperature difference limit value information.
[0095] Optionally, the system 70 further includes:
[0096] The historical response time information acquisition module: used to acquire the most recent five historical response time information; the cut-off response time information comparison module: used to compare the cut-off response time information and the historical response time information respectively;
[0097] The abnormal warning information generation module: used to generate abnormal warning information if each of the most recent five historical response time information is less than the cut-off response time information.
[0098] Optionally, if abnormal warning information is generated, the system 70 further includes:
[0099] The third ambient temperature information acquisition module: used to acquire the third ambient temperature information corresponding to the most recent five historical response time information;
[0100] The ambient temperature data packet information generation module: used to generate ambient temperature data packet information according to multiple third ambient temperature information, the first ambient temperature information, and the second ambient temperature information.
[0101] Optionally, the system 70 further includes:
[0102] The manual detection ambient temperature information acquisition module: used to acquire manual detection ambient temperature information in response to a manual re-inspection instruction;
[0103] Artificial detection environmental temperature information comparison module: used to compare the artificially detected environmental temperature information and the first environmental temperature information;
[0104] Reliable data label information generation module: used to generate reliable data label information if the artificially detected environmental temperature information is equal to the first environmental temperature information;
[0105] Reliable data label information assignment module: used to assign the reliable data label information to the first environmental temperature information.
[0106] It should be noted that for the information interaction, execution process, etc. between the above modules, since they are based on the same concept as the method embodiment of this application, for their specific functions and the technical effects brought, please refer to the method embodiment part specifically, and details will not be elaborated here.
[0107] The embodiment of this application also provides a terminal device, such as Figure 8 shown. The terminal device 80 of this embodiment includes: a processor 81, a memory 82, and a computer program 83 stored in the memory 82 and executable on the processor 81. When the processor 81 executes the computer program 83, it implements the steps in the above remote detection method embodiment, such as Figure 1 the steps S100 to S300 shown; or, when the processor 81 executes the computer program 83, it implements the functions of each module in the above device, such as Figure 7 the functions of module 71 to module 73 shown.
[0108] The terminal device 80 may be a computing device such as a desktop computer, a notebook, a palm computer, and a cloud server, and the terminal device 80 includes but is not limited to a processor 81 and a memory 82. Those skilled in the art can understand that Figure 8 this is only an example of the terminal device 80, and does not constitute a limitation on the terminal device 80. It may include more or fewer components than shown in the figure, or combine some components, or different components. For example, the terminal device 80 may also include input and output devices, network access devices, a bus, etc.
[0109] Among them, the processor 81 may be a Central Processing Unit (CPU), or 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.; the general-purpose processor may be a microprocessor or the processor may also be any conventional processor, etc.
[0110] The memory 82 may be an internal storage unit of the terminal device 80, such as the hard disk or memory of the terminal device 80. The memory 82 may also be an external storage device of the terminal device 80, such as a plug-in hard disk equipped on the terminal device 80, a Smart Media Card (SMC), a Secure Digital (SD) card, a Flash Card, etc.; further, the memory 82 may also include both the internal storage unit and the external storage device of the terminal device 80. The memory 82 may also store the computer program 83 and other programs and data required by the terminal device 80. The memory 82 may also be used to temporarily store the data that has been output or will be output.
[0111] An embodiment of the present application also provides a computer-readable storage medium. The storage medium stores a computer program, which, when executed by a processor, can implement the steps of the above-mentioned method embodiments. Among them, the computer program includes computer program code, and the computer program code may be in the form of source code, object code, executable file, or some intermediate form, etc.; the computer-readable medium may include: any entity or device capable of carrying the computer program code, recording medium, USB flash drive, mobile hard disk, magnetic disk, optical disc, computer memory, Read-Only Memory (ROM), Random Access Memory (RAM), electrical carrier signal, telecommunication signal, and software distribution medium, etc.
[0112] The above are all the preferred embodiments of the present application. The protection scope of the present application is not limited hereby. Therefore, all equivalent changes made according to the method, principle, and structure of the present application should be covered within the protection scope of the present application.
Claims
1. A remote detection method applied to a primary-secondary integrated pole-mounted circuit breaker, characterized in that, The method includes: Obtaining the cut-off response time information of the circuit breaker to be detected; Generating circuit breaker working state information according to the cut-off response time information and preset response time limit value information, where the circuit breaker working state information is abnormal state information or normal state information; If the circuit breaker working state information is the abnormal state information, generating abnormal analysis result information based on the cut-off response time information.
2. The method according to claim 1, characterized in that, The abnormal analysis result information is temperature-related abnormal information or other related abnormal information; The generating the circuit breaker working state information according to the cut-off response time information and preset response time limit value information includes: If the cut-off response time information is less than or equal to the preset response time limit value information, generating the normal state information; If the cut-off response time information is greater than the response time limit value information, generating the abnormal state information; Correspondingly, if the circuit breaker working state information is the abnormal state information, generating abnormal analysis result information based on the cut-off response time information includes: If the circuit breaker working state information is the abnormal state information, obtaining the first ambient temperature information corresponding to the cut-off response time information; Obtaining historical abnormal time information; Determining the second ambient temperature information corresponding to the historical abnormal time information according to the historical abnormal time information; Judging whether the difference between the first ambient temperature information and the second ambient temperature information is less than the preset ambient temperature difference limit value information; If the difference between the first ambient temperature information and the second ambient temperature information is less than the ambient temperature difference limit value information, generating the temperature-related abnormal information; If the difference between the first ambient temperature information and the second ambient temperature information is greater than or equal to the ambient temperature difference limit value information, generating the other related abnormal information.
3. The method according to claim 2, wherein After obtaining the cut-off response time information of the circuit breaker to be detected, the method further includes: Obtaining the recent five historical response time information; Comparing the cut-off response time information and the historical response time information respectively; If each of the recent five historical response time information is less than the cut-off response time information, generating abnormal warning information.
4. The method according to claim 3, wherein If the abnormal warning information is generated, after generating the abnormal analysis result information based on the cut-off response time information when the circuit breaker working state information is the abnormal state information, the method further includes: Obtaining the third ambient temperature information corresponding to the recent five historical response time information; Generating ambient temperature data packet information according to the multiple third ambient temperature information, the first ambient temperature information and the second ambient temperature information.
5. The method according to claim 2, wherein After generating the abnormal analysis result information based on the cut-off response time information when the circuit breaker working state information is the abnormal state information, the method further includes: Responding to the manual re-inspection instruction and obtaining the manual detection ambient temperature information; Comparing the manual detection ambient temperature information and the first ambient temperature information; If the manually detected environmental temperature information is equal to the first environmental temperature information, reliable data label information is generated; The reliable data label information is assigned to the first environmental temperature information.
6. A remote detection system applied to a primary-secondary integrated pole-mounted circuit breaker, characterized in that, The system includes: A cut-off response time information acquisition module: used to acquire the cut-off response time information of the circuit breaker to be detected; A circuit breaker working state information generation module: used to generate circuit breaker working state information according to the cut-off response time information and the preset response time limit value information, wherein the circuit breaker working state information is abnormal state information or normal state information; An abnormal analysis result information generation module: used to generate abnormal analysis result information based on the cut-off response time information if the circuit breaker working state information is the abnormal state information.
7. The system according to claim 6, wherein The circuit breaker working state information generation module includes: A normal state information generation sub-module: used to generate the normal state information if the cut-off response time information is less than or equal to the preset response time limit value information; An abnormal state information generation sub-module: used to generate the abnormal state information if the cut-off response time information is greater than the response time limit value information.
8. A terminal device, comprising a memory, a processor, and a computer program stored in the memory and executable on the processor, characterized in that, When the processor executes the computer program, the steps of the method according to any one of claims 1 to 5 are implemented.
9. A computer-readable storage medium storing a computer program, characterized in that, When the computer program is executed by the processor, the steps of the method according to any one of claims 1 to 5 are implemented.
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