Intelligent self-locking connector information reporting device and method

By using an intelligent self-locking connector information reporting method and device, sensor data is acquired and processed, solving the problem of low intelligence level and achieving more efficient data monitoring and fault analysis.

CN116582881BActive Publication Date: 2026-03-31GUANGZHOU PANYU CABLE WORKS
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-04-18
Publication Date
2026-03-31

AI Technical Summary

Technical Problem

The low level of intelligence in existing intelligent self-locking connectors leads to a large amount of indiscriminately reported data, which increases the difficulty of fault analysis in the background monitoring system.

Method used

By acquiring connection information detected by sensors, it determines whether the reporting conditions are met and reports when the conditions are met. At the same time, it acquires and marks auxiliary information, including subsequent connection information and associated sensor information, and performs intelligent data processing and evaluation.

Benefits of technology

This improves the intelligence level of the self-locking connector, reduces the amount of data reported indiscriminately, and simplifies fault analysis in the background monitoring system.

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Abstract

Embodiments of the present application disclose a kind of intelligent self-locking connector information reporting device and method, the method comprises: obtaining the first connection information detected by sensor, determine whether the first connection information satisfies the first reporting condition;In the case where the first connection information satisfies the first reporting condition, the first connection information is reported, and subsequent second connection information and third connection information are acquired;The second connection information and the third connection information are marked as auxiliary information and reported, and the first associated information detected by the associated sensor is synchronously acquired, and the first associated information is reported.This scheme solves the problem that the intelligent degree of self-locking connector is low in the prior art, a large number of indiscriminate reported data increase the difficulty of fault analysis of background monitoring system, improves the intelligent degree of self-locking connector, and is beneficial to data monitoring and fault analysis.
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Description

Technical Field

[0001] This application relates to the field of cable technology, and in particular to an intelligent self-locking connector information reporting device and method. Background Technology

[0002] Intelligent self-locking connectors are used for connections between power line conductors, cables, and equipment. They are designed with a self-locking structure and integrate various sensors. For example, pressure and displacement sensors are built into the self-locking structure to monitor online whether the structure securely locks the connected conductors, plates, or equipment terminals.

[0003] In related technologies, intelligent self-locking connectors report relevant sensor data, usually only reporting specific sensor data values ​​so that the monitoring system can make fault judgments based on these data values. The level of intelligence is low, and the large amount of undifferentiated data reported increases the difficulty of fault analysis for the background monitoring system. Summary of the Invention

[0004] This invention provides an intelligent self-locking connector information reporting device and method, which solves the problems in the prior art where the self-locking connector has a low level of intelligence and a large amount of indiscriminately reported data, which increases the difficulty of fault analysis in the background monitoring system. This invention improves the intelligence level of the self-locking connector and facilitates data monitoring and fault analysis.

[0005] In a first aspect, embodiments of the present invention provide a method for reporting information of a smart self-locking connector, comprising: acquiring first connection information detected by a sensor, and determining whether the first connection information meets a first reporting condition;

[0006] If the first connection information meets the first reporting condition, the first connection information is reported, and the subsequent second and third connection information are obtained.

[0007] The second connection information and the third connection information are marked as auxiliary information and reported, and the first association information detected by the associated sensor is obtained synchronously and reported.

[0008] Optionally, obtaining subsequent second and third connection information includes:

[0009] The time interval is determined based on the first connection information;

[0010] Based on the time interval, the second and third connection information at the corresponding time points are selected and obtained.

[0011] Optionally, when reporting the second connection information and the third connection information as auxiliary information, the method further includes:

[0012] The anomaly level is determined based on the second connection information and the third connection information;

[0013] The anomaly level is associated with the second connection information and the third connection information and reported.

[0014] Optionally, when reporting the first association information, the method further includes:

[0015] Based on the type and value of the first associated information, anomaly assessment information is generated and reported.

[0016] Optionally, generating anomaly assessment information based on the type and value of the first associated information includes:

[0017] If the first association information and the first connection information are of the same type, anomaly assessment information is generated based on the comparison of the data values ​​of the first association information and the first connection information.

[0018] Optionally, generating anomaly assessment information based on the type and value of the first associated information includes:

[0019] If the types of the first association information and the first connection information are different, anomaly assessment information is generated based on the data value of the first connection information.

[0020] Optionally, after reporting the first association information, the method further includes:

[0021] The reporting threshold for subsequent connection information is determined based on the third connection information;

[0022] When connection information that meets the reporting threshold is detected, it is reported.

[0023] Secondly, embodiments of the present invention also provide an intelligent self-locking connector information reporting device, including: a reporting evaluation module configured to acquire first connection information detected by a sensor and determine whether the first connection information meets a first reporting condition;

[0024] The first reporting module is configured to report the first connection information and obtain the subsequent second and third connection information when the first connection information meets the first reporting conditions.

[0025] The second reporting module is configured to mark the second connection information and the third connection information as auxiliary information for reporting, and simultaneously acquire the first association information detected by the associated sensor, and report the first association information.

[0026] Thirdly, embodiments of the present invention also provide an intelligent self-locking connector information reporting device, the device comprising:

[0027] One or more processors;

[0028] Storage device for storing one or more programs.

[0029] When the one or more programs are executed by the one or more processors, the one or more processors implement the intelligent self-locking connector information reporting method described in the embodiments of the present invention.

[0030] Fourthly, embodiments of the present invention also provide a storage medium for storing computer-executable instructions, which, when executed by a computer processor, are used to execute the intelligent self-locking connector information reporting method described in the embodiments of the present invention.

[0031] This invention discloses an intelligent self-locking connector information reporting device and method. The method includes: acquiring first connection information detected by a sensor; determining whether the first connection information meets a first reporting condition; if the first connection information meets the first reporting condition, reporting the first connection information, and subsequently acquiring second and third connection information; marking the second and third connection information as auxiliary information for reporting, and simultaneously acquiring first association information detected by an associated sensor, and reporting the first association information. This solution solves the problems in the prior art where the self-locking connector has a low level of intelligence and a large amount of indiscriminately reported data, which increases the difficulty of fault analysis in the background monitoring system. It improves the intelligence level of the self-locking connector and facilitates data monitoring and fault analysis. Attached Figure Description

[0032] Figure 1 A flowchart of an intelligent self-locking connector information reporting method provided in an embodiment of the present invention;

[0033] Figure 2 A flowchart of another intelligent self-locking connector information reporting method provided in an embodiment of the present invention;

[0034] Figure 3 A module structure block diagram of an intelligent self-locking connector information reporting device provided in an embodiment of the present invention;

[0035] Figure 4 This is a structural schematic diagram of an intelligent self-locking connector information reporting device provided in an embodiment of the present invention. Detailed Implementation

[0036] The embodiments of the present invention will be further described in detail below with reference to the accompanying drawings and examples. It should be understood that the specific embodiments described herein are merely illustrative of the present invention and not intended to limit the scope of the invention. Furthermore, it should be noted that, for ease of description, the accompanying drawings show only the parts relevant to the embodiments of the present invention, and not all structures.

[0037] Figure 1 A flowchart of an intelligent self-locking connector information reporting method provided in an embodiment of the present invention is shown below. Figure 1 As shown, it specifically includes:

[0038] Step S101: Obtain the first connection information detected by the sensor and determine whether the first connection information meets the first reporting condition.

[0039] The implementation entity of this solution can be an intelligent self-locking connector. Multiple intelligent self-locking connectors are installed in the cable line. These connectors are used for connections between power line conductors, cables, and equipment. They feature a self-locking structure with built-in pressure and displacement sensors to monitor whether the structure securely locks the connected conductors, plates, or equipment terminals. They also include a built-in wireless passive temperature sensor to monitor the connector's operating temperature, a built-in pressure sensor to monitor the connector's load-bearing capacity, an internal phase-change intelligent switch to adjust line switching based on three-phase imbalance settings, a built-in real-time voltage monitoring device that, in conjunction with solar photovoltaic cells, stabilizes and boosts voltage in real time, addressing issues such as excessively long lines, high line losses, and large voltage drops. Furthermore, they incorporate a built-in Beidou positioning chip for precise location of each connection point, providing accurate positioning information for inspection and emergency repairs. A built-in camera monitors the surrounding environment, and the system includes early warning devices to prevent electric shock and leakage.

[0040] In one embodiment, the intelligent self-locking connector acquires and monitors data detected by sensors in real time, and this monitored information is exemplarily recorded as first connection information. It then determines in real time whether the first connection information meets a first reporting condition. This first reporting condition can be set differently depending on the type of monitoring. The connection information reflects the cable connection status at the intelligent self-locking connector and can be monitored using various sensors to capture data from multiple dimensions, such as tension sensors and infrared distance sensors. For example, for a tension sensor, a value less than a certain tension can be set as meeting the reporting condition; otherwise, the reporting condition is not met.

[0041] Step S102: If the first connection information meets the first reporting condition, the first connection information is reported, and the subsequent second and third connection information are obtained.

[0042] Specifically, if the first connection information meets the first reporting condition, the first connection information is then reported for analysis and processing in the background. Simultaneously with the reporting of the first connection information, subsequent second and third connection information are acquired. In terms of timing, the second and third connection information are acquired after the detection time of the first connection information. This second and third connection information is sensor monitoring information of the same type as that recorded in the first connection information. Because the intelligent self-locking connector uses multiple sensors for multi-dimensional monitoring of connection status, there may be instances where one or more data points are abnormal while others are normal; therefore, it is necessary to distinguish the types of connection information here.

[0043] In one embodiment, the acquisition of subsequent second and third connection information can be achieved by: determining a time interval based on the first connection information, and then selecting and acquiring the second and third connection information at corresponding time points based on the time interval. Where the first connection information needs to be reported, a corresponding time interval is pre-set for different values ​​of the first connection information. It is understood that the more severe the abnormal situation, the shorter the time interval.

[0044] Step S103: Mark the second connection information and the third connection information as auxiliary information and report them, and simultaneously obtain the first association information detected by the associated sensor and report the first association information.

[0045] In one embodiment, after acquiring the subsequent second and third connection information, these are marked as auxiliary information and uploaded together. The upload is not limited by whether the data itself meets the reporting conditions; all data is reported. Simultaneously, the first association information detected by the associated sensor is acquired. This associated sensor can be a sensor of the same type located in different smart self-locking connectors, meaning it is not data from the current smart self-locking connector. It can be data of the same type from adjacent smart self-locking connectors. For example, the first association information of associated sensors in other smart self-locking connectors can be acquired through the communication module and synchronously reported through the current smart self-locking connector for analysis by the system backend.

[0046] In one embodiment, when reporting the second and third connection information, the method further includes: determining an anomaly level based on the second and third connection information, and associating the anomaly level with the second and third connection information for reporting. Specifically, regarding the determination of the anomaly level, if both the second and third connection information meet the reporting conditions, the anomaly level is defined as high and reported; if either meets the reporting conditions, the anomaly level is defined as medium and reported; and if neither meets the reporting conditions, the anomaly level is defined as low and reported.

[0047] In one embodiment, reporting the first associated information further includes: generating and reporting anomaly assessment information based on the type and value of the first associated information. Intelligent self-locking connectors are more intelligent and possess certain data processing and generation capabilities. In this case, anomaly assessment information is generated and reported based on the different conditions of the associated information. Optionally, if the type of the associated information is consistent with the sensor data type in the first connection information and the value is close, a relatively high fault assessment information is generated; if the values ​​are not close but within the normal range, a relatively low fault assessment information is generated. If the types are inconsistent, no assessment information is generated for comprehensive evaluation by the system backend. That is, when the first associated information and the first connection information are of the same type, anomaly assessment information is generated based on the comparison of the data values ​​of the first associated information and the first connection information.

[0048] In another embodiment, it can also be: if the first association information and the first connection information are of different types, then an anomaly assessment information is generated based on the data value of the first connection information. If the data value is greater than a preset association threshold, then an assessment information with a relatively high fault is generated; if it is not greater than the preset association threshold, then an assessment information with a relatively low fault is generated.

[0049] As described above, the process involves acquiring the first connection information detected by the sensor, determining whether the first connection information meets the first reporting condition, and then reporting the first connection information if it does. Subsequently, the acquisition of second and third connection information is performed. The second and third connection information are marked as auxiliary information and reported, while simultaneously acquiring the first association information detected by the associated sensor and reporting the first association information. This solution addresses the problems in the prior art where the self-locking connector has low intelligence and a large amount of indiscriminately reported data, increasing the difficulty of fault analysis in the background monitoring system. It improves the intelligence level of the self-locking connector, facilitating data monitoring and fault analysis.

[0050] Figure 2A flowchart of another intelligent self-locking connector information reporting method provided in an embodiment of the present invention is shown below. Figure 2 As shown, it specifically includes:

[0051] Step S201: Obtain the first connection information detected by the sensor and determine whether the first connection information meets the first reporting condition.

[0052] Step S202: If the first connection information meets the first reporting condition, the first connection information is reported, and the subsequent second and third connection information are obtained.

[0053] Step S203: Mark the second connection information and the third connection information as auxiliary information and report them, and simultaneously obtain the first association information detected by the associated sensor and report the first association information.

[0054] Step S204: Determine the reporting threshold for subsequent connection information based on the third connection information, and report the connection information that meets the reporting threshold when it is detected.

[0055] In one embodiment, after the third connection information is reported, a reporting threshold is determined based on the third connection information. Taking the first connection information as an example, this reporting threshold is greater than the threshold in the first reporting condition. When subsequent connection information that meets this reporting threshold appears, it is reported accordingly.

[0056] As described above, the process involves acquiring the first connection information detected by the sensor, determining whether the first connection information meets the first reporting condition, and then reporting the first connection information if it does. Subsequently, the acquisition of second and third connection information is performed. The second and third connection information are marked as auxiliary information and reported, while simultaneously acquiring the first association information detected by the associated sensor and reporting the first association information. This solution addresses the problems in the prior art where the self-locking connector has low intelligence and a large amount of indiscriminately reported data, increasing the difficulty of fault analysis in the background monitoring system. It improves the intelligence level of the self-locking connector, facilitating data monitoring and fault analysis.

[0057] Figure 3 This is a block diagram of a module structure for an intelligent self-locking connector information reporting device provided in an embodiment of the present invention. This system is used to execute the intelligent self-locking connector information reporting method provided in the above embodiment, and has corresponding functional modules and beneficial effects for executing the method. For example... Figure 3 As shown, the device specifically includes: a reporting and evaluation module 101, configured to acquire first connection information detected by the sensor and determine whether the first connection information meets the first reporting condition;

[0058] The first reporting module 102 is configured to report the first connection information and obtain the subsequent second and third connection information when the first connection information meets the first reporting conditions.

[0059] The second reporting module 103 is configured to mark the second connection information and the third connection information as auxiliary information for reporting, and simultaneously acquire the first association information detected by the associated sensor, and report the first association information.

[0060] As described above, the solution involves acquiring the first connection information detected by the sensor, determining whether the first connection information meets the first reporting condition, and then reporting the first connection information if it meets the first reporting condition. Subsequently, the second and third connection information are acquired. The second and third connection information are marked as auxiliary information and reported, while simultaneously acquiring the first association information detected by the associated sensor and reporting the first association information. This solution addresses the problem in the prior art where the self-locking connector has a low level of intelligence and a large amount of indiscriminately reported data, increasing the difficulty of fault analysis in the background monitoring system. It improves the intelligence level of the self-locking connector, facilitating data monitoring and fault analysis. The functions of each module are as follows:

[0061] In one possible embodiment, obtaining subsequent second and third connection information includes:

[0062] The time interval is determined based on the first connection information;

[0063] Based on the time interval, the second and third connection information at the corresponding time points are selected and obtained.

[0064] In one possible embodiment, when reporting the second connection information and the third connection information as auxiliary information, the method further includes:

[0065] The anomaly level is determined based on the second connection information and the third connection information;

[0066] The anomaly level is associated with the second connection information and the third connection information and reported.

[0067] In one possible embodiment, the reporting of the first associated information further includes:

[0068] Based on the type and value of the first associated information, anomaly assessment information is generated and reported.

[0069] In one possible embodiment, generating anomaly assessment information based on the type and value of the first associated information includes:

[0070] If the first association information and the first connection information are of the same type, anomaly assessment information is generated based on the comparison of the data values ​​of the first association information and the first connection information.

[0071] In one possible embodiment, generating anomaly assessment information based on the type and value of the first associated information includes:

[0072] If the types of the first association information and the first connection information are different, anomaly assessment information is generated based on the data value of the first connection information.

[0073] In one possible embodiment, after reporting the first association information, the method further includes:

[0074] The reporting threshold for subsequent connection information is determined based on the third connection information;

[0075] When connection information that meets the reporting threshold is detected, it is reported.

[0076] Figure 4 This is a structural schematic diagram of an intelligent self-locking connector information reporting device provided in an embodiment of the present invention, as shown below. Figure 4 As shown, the device includes a processor 201, a memory 202, an input device 203, and an output device 204; the number of processors 201 in the device can be one or more. Figure 4 Taking a processor 201 as an example; the processor 201, memory 202, input device 203, and output device 204 in the device can be connected via a bus or other means. Figure 4 Taking a bus connection as an example, the memory 202, as a computer-readable storage medium, can be used to store software programs, computer-executable programs, and modules, such as the program instructions / modules corresponding to the intelligent self-locking connector information reporting method in this embodiment of the invention. The processor 201 executes various functional applications and data processing of the device by running the software programs, instructions, and modules stored in the memory 202, thereby realizing the aforementioned intelligent self-locking connector information reporting method. The input device 203 can be used to receive input digital or character information and generate key signal inputs related to user settings and function control of the device. The output device 204 may include a display screen or other display device.

[0077] This invention also provides a storage medium containing computer-executable instructions, which, when executed by a computer processor, are used to perform a smart self-locking connector information reporting method, the method comprising:

[0078] Acquire the first connection information detected by the sensor, and determine whether the first connection information meets the first reporting condition;

[0079] If the first connection information meets the first reporting condition, the first connection information is reported, and the subsequent second and third connection information are obtained.

[0080] The second connection information and the third connection information are marked as auxiliary information and reported, and the first association information detected by the associated sensor is obtained synchronously and reported.

[0081] The acquisition of subsequent second and third connection information includes:

[0082] The time interval is determined based on the first connection information;

[0083] Based on the time interval, the second and third connection information at the corresponding time points are selected and obtained.

[0084] The step of marking the second connection information and the third connection information as auxiliary information for reporting further includes:

[0085] The anomaly level is determined based on the second connection information and the third connection information;

[0086] The anomaly level is associated with the second connection information and the third connection information and reported.

[0087] The process of reporting the first associated information further includes:

[0088] Based on the type and value of the first associated information, anomaly assessment information is generated and reported.

[0089] The step of generating anomaly assessment information based on the type and value of the first associated information includes:

[0090] If the first association information and the first connection information are of the same type, anomaly assessment information is generated based on the comparison of the data values ​​of the first association information and the first connection information.

[0091] The step of generating anomaly assessment information based on the type and value of the first associated information includes:

[0092] If the types of the first association information and the first connection information are different, anomaly assessment information is generated based on the data value of the first connection information.

[0093] After reporting the first related information, the process also includes:

[0094] The reporting threshold for subsequent connection information is determined based on the third connection information;

[0095] When connection information that meets the reporting threshold is detected, it is reported.

[0096] It is worth noting that in the embodiments of the above-mentioned intelligent self-locking connector information reporting device, the various units and modules included are only divided according to functional logic, but are not limited to the above division, as long as the corresponding functions can be achieved; in addition, the specific names of each functional unit are only for easy differentiation and are not used to limit the protection scope of the embodiments of the present invention.

[0097] Note that the above are merely preferred embodiments and the technical principles applied in this invention. Those skilled in the art will understand that the embodiments of this invention are not limited to the specific embodiments described herein, and various obvious changes, readjustments, and substitutions can be made without departing from the protection scope of this invention. Therefore, although the embodiments of this invention have been described in detail above, the embodiments of this invention are not limited to the above embodiments. More other equivalent embodiments may be included without departing from the concept of the embodiments of this invention, and the scope of the embodiments of this invention is determined by the scope of the appended claims.

Claims

1. A method for reporting information of a smart self-locking connector, characterized in that, The method comprises the following steps: obtaining first connection information detected by a sensor, and determining whether the first connection information meets a first reporting condition; in the case where the first connection information meets the first reporting condition, reporting the first connection information, and subsequently obtaining second connection information and third connection information; labeling the second connection information and the third connection information as auxiliary information for reporting, and synchronously obtaining first associated information detected by an associated sensor, and reporting the first associated information, wherein the reporting of the first associated information further comprises: generating abnormality evaluation information according to the type and value of the first associated information, and reporting the abnormality evaluation information; the generation of the abnormality evaluation information according to the type and value of the first associated information comprises: in the case where the type of the first associated information is the same as that of the first connection information, generating the abnormality evaluation information according to the comparison of the data values of the first associated information and the first connection information; in the case where the type of the first associated information is different from that of the first connection information, generating the abnormality evaluation information according to the data value of the first connection information. 2.The intelligent self-locking connector information reporting method of claim 1, wherein, The subsequent obtaining of the second connection information and the third connection information comprises the following steps: determining a time interval according to the first connection information; selecting the second connection information and the third connection information at a corresponding time point for obtaining based on the time interval. 3.The intelligent self-locking connector information reporting method of claim 1, wherein, The labeling of the second connection information and the third connection information as auxiliary information for reporting further comprises the following steps: determining an abnormality level according to the second connection information and the third connection information; reporting the abnormality level in association with the second connection information and the third connection information. 4.The intelligent self-locking connector information reporting method according to any one of claims 1-3, characterized in that, After the reporting of the first associated information, the method further comprises the following steps: determining a reporting threshold of subsequent connection information according to the third connection information; reporting when connection information meeting the reporting threshold is detected.

5. The intelligent self-locking connector information reporting device is characterized in that, The method comprises the following steps: a reporting evaluation module configured to obtain first connection information detected by a sensor, and determine whether the first connection information meets a first reporting condition; a first reporting module configured to report the first connection information in the case where the first connection information meets the first reporting condition, and subsequently obtain second connection information and third connection information; a second reporting module configured to label the second connection information and the third connection information as auxiliary information for reporting, and synchronously obtain first associated information detected by an associated sensor, and report the first associated information, wherein the second reporting module is further configured to generate abnormality evaluation information according to the type and value of the first associated information, and report the abnormality evaluation information; the second reporting module is specifically configured to generate the abnormality evaluation information according to the comparison of the data values of the first associated information and the first connection information in the case where the type of the first associated information is the same as that of the first connection information; and the second reporting module is specifically configured to generate the abnormality evaluation information according to the data value of the first connection information in the case where the type of the first associated information is different from that of the first connection information.

6. An intelligent self-locking connector information reporting device, the device comprising: one or more processors; A storage device, configured to store one or more programs, when executed by the one or more processors, cause the one or more processors to implement the intelligent self-locking connector information reporting method according to any one of claims 1-4.

7. A storage medium storing computer-executable instructions for performing the intelligent self-locking connector information reporting method according to any one of claims 1-4 when executed by a computer processor.

Citation Information

Patent Citations

  • Cable trench environment gas monitoring alarm device

    CN115394053A

  • Intelligent cable fault monitoring device

    CN115396749A