Anti-theft management and control method and device for charging line of charging pile

By switching the anti-theft functional components and implementing real-time monitoring strategies when the charging cable is not charged, the problem of low timeliness and accuracy of charging cable monitoring is solved, and a faster and more accurate response to theft behavior is achieved.

CN120183092APending Publication Date: 2025-06-20深圳鼎匠科技有限公司
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Patent Information

Application Number
CN202510232708.8
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-02-26
Publication Date
2025-06-20

AI Technical Summary

Technical Problem

The charging pile charging cable has low monitoring timeliness and accuracy in non-chargeable states, which makes it difficult to detect and prevent theft in a timely manner.

Method used

By collecting the usage data of the charging cable, determining its usage status, and switching the anti-theft functional components to the operating status in the non-charged state, the preset first anti-theft strategy is performed to perform real-time monitoring and positioning output of wire cutting.

Benefits of technology

It improves the monitoring timeliness and accuracy of the charging cable in the non-charge state, shortens the response time of theft behavior, and enhances the anti-theft reliability of the charging cable.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses an anti-theft management and control method and device for a charging line of a charging pile, and the method comprises the steps: collecting the use data of a target charging line, determining the use state of the target charging line according to the use data, and enabling the target charging line to be matched with a target charging pile for use; the use state comprises a charging state or a non-charging state; when the target charging line is in a non-charging state, switching an anti-theft function part configured by the target charging line to an operation state, and executing first safety monitoring including trimming real-time monitoring based on the anti-theft function part on the target charging line according to a first anti-theft strategy to obtain first safety monitoring information; when the first safety monitoring information shows that the anti-theft control condition is met, the anti-theft function part executes anti-theft processing including positioning output and thread trimming alarm output, and a corresponding anti-theft processing result is obtained. It can be seen that the monitoring timeliness and accuracy of the charging line in the non-charging state can be improved, and meanwhile the response speed of the stolen charging line is increased.
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Description

Technical Field

[0001] The present invention relates to the technical field of anti-theft control, and particularly to an anti-theft control method and device for a charging cable of a charging pile. Background Art

[0002] Today, with the increasing popularity of electric vehicles, charging piles, as key facilities for energy replenishment of electric vehicles, their safety and operation efficiency have become the focus of industry attention. However, the charging cables used in conjunction with charging piles are frequently stolen, which not only causes huge economic losses to operators, but also greatly reduces the charging experience of electric vehicle users and the anti-theft reliability of charging facilities.

[0003] Traditional anti-theft means for charging cables, such as physical locks or manual patrols, are not only inefficient, but also difficult to immediately detect and effectively prevent theft behavior. In the prior art, although there have been some attempts to monitor the safety status of charging cables by installing sensors or monitoring cameras, these methods often have problems such as lagging response, limited monitoring range, and high false alarm rate. Especially during non-charging periods, the charging cables are in an idle state and become targets for thieves, and existing monitoring means often cannot maintain a high level of vigilance in the non-charging state and are difficult to detect and prevent theft behavior in a timely manner. It can be seen that it is particularly important to provide a corresponding solution to the technical problems of low timeliness of harness monitoring, low monitoring accuracy, and slow response speed to harness theft during the use of charging cables of charging piles. Summary of the Invention

[0004] The present invention provides an anti-theft control method and device for a charging cable of a charging pile, which can help improve the monitoring timeliness and accuracy of the charging cable in the non-charging state, and at the same time improve the response speed to the theft of the charging cable.

[0005] To solve the above technical problems, in a first aspect of the present invention, an anti-theft control method for a charging cable of a charging pile is disclosed, and the method includes:

[0006] Collect usage data corresponding to a target charging cable currently detected, and determine the usage status of the target charging cable according to the usage data, where the target charging cable is used in conjunction with a target charging pile; the usage status includes a charging state or a non-charging state;

[0007] When it is determined that the usage status is the non-charging state, switch the anti-theft function components configured for the target charging cable to the operating state, and perform a first security monitoring on the target charging cable according to a preset first anti-theft strategy to obtain first security monitoring information for the target charging cable; the first security monitoring at least includes real-time monitoring of cable cutting based on the anti-theft function components;

[0008] When the first security monitoring information indicates that the target charging cable meets the preset anti-theft control conditions, the anti-theft function component performs a preset anti-theft process to obtain an anti-theft process result for the target charging cable. The anti-theft process includes positioning output and wire-cutting alarm output.

[0009] As an optional implementation manner, in the first aspect of the present invention, the performing first security monitoring on the target charging cable according to a preset first anti-theft strategy to obtain first security monitoring information for the target charging cable includes:

[0010] According to the usage data, determining the wire-cutting monitoring data collected for the target charging cable and determining the device type corresponding to the data collection device that collects the wire-cutting monitoring data; the device type includes an electrical type or a mechanical stress type;

[0011] According to the device type, determining a reference parameter and its corresponding standard value; the reference parameter is used to analyze the wire-cutting monitoring data;

[0012] Taking the reference parameter as a reference, comparing the wire-cutting monitoring data with the standard value to obtain a comparison result between the wire-cutting monitoring data and the standard data; and adding the comparison result to the first security monitoring information for the target charging cable.

[0013] As an optional implementation manner, in the first aspect of the present invention, when the device type is the electrical type, the wire-cutting monitoring data includes the electrical conduction information of the target charging cable, and the reference parameter is a resistance value and / or a current value;

[0014] When the device type is the mechanical stress type, the wire-cutting monitoring data includes the mechanical stress information of the target charging cable, and the reference parameter is a tensile value.

[0015] As an optional implementation manner, in the first aspect of the present invention, the anti-theft function component includes a positioning component, an alarm component, and a communication component;

[0016] The performing a preset anti-theft process by the anti-theft function component to obtain an anti-theft process result for the target charging cable includes:

[0017] When the positioning component is initially started, the positioning component obtains the first positioning information of the target charging cable, and the alarm component generates the first wire harness alarm information according to the first positioning information in combination with the wire harness identifier of the target charging cable, and uploads the first wire harness alarm information to the background monitoring system through the communication component;

[0018] During the real-time operation of the positioning component, the positioning component obtains the second positioning information of the target charging cable according to a preset positioning frequency, and the warning component generates second cable warning information based on the first positioning information, the second positioning information and the cable identification, and uploads the second cable warning information to the background monitoring system through the communication component.

[0019] As an optional implementation manner, in the first aspect of the present invention, the method further includes:

[0020] Obtain all historical positioning information generated by the positioning component for the target charging cable. The earliest generated positioning information among all the historical positioning information is the first positioning information, and the latest generated positioning information among all the historical positioning information is the second positioning information; each historical positioning information includes the positioning position and positioning time corresponding to the historical positioning information;

[0021] Determine the movement information of the target charging cable according to all the historical positioning information. The movement information at least includes a movement path, a movement direction, and a movement speed;

[0022] Calculate the predicted movement distance corresponding to the movement direction of the target charging cable within a target duration according to the movement path, the movement direction, and the movement speed;

[0023] Generate a movement report for the target charging cable according to the movement information and the predicted movement distance. The movement report is used to feedback to the corresponding processing personnel and is also used to provide the processing personnel with suggestions for retrieving the target charging cable.

[0024] As an optional implementation manner, in the first aspect of the present invention, the method further includes:

[0025] When it is determined that the usage state is the charging state, perform second security monitoring on the target charging cable according to a preset second anti-theft strategy to obtain second security monitoring information for the target charging cable; the second security monitoring includes monitoring of electrical parameters based on the target charging pile;

[0026] And, performing second security monitoring on the target charging cable according to a preset second anti-theft strategy to obtain second security monitoring information for the target charging cable includes:

[0027] Obtain electrical data and communication data of the target charging pile for the target charging cable in real time according to a preset second anti-theft strategy;

[0028] Determine whether at least one of the electrical data and the communication data meets a preset abnormal alarm condition, and obtain a judgment result corresponding to the electrical data and the communication data;

[0029] Determine the judgment result as the second safety monitoring information for the target charging cable.

[0030] As an optional implementation manner, in the first aspect of the present invention, the electrical data includes the power supply state of the target charging pile for the target charging cable, and further includes at least one of the output voltage, output current, and output power of the target charging pile for the target charging cable; the power supply state includes normal power supply or abnormal power supply;

[0031] The communication data includes the communication state between the target charging pile and the background monitoring system, and the communication state includes normal communication or abnormal communication;

[0032] At least one of the electrical data and the communication data meets the abnormal alarm condition specifically as follows:

[0033] The power supply state is abnormal power supply; or, the communication state is abnormal communication; or, the power supply state is normal power supply and the communication state is abnormal communication; or, the power supply state is abnormal power supply and the communication state is normal communication.

[0034] The second aspect of the present invention discloses an anti-theft control device for a charging cable of a charging pile, and the device includes:

[0035] An acquisition module, configured to acquire usage data corresponding to a currently detected target charging cable;

[0036] A determination module, configured to determine the usage state of the target charging cable according to the usage data, and the target charging cable is used in combination with a target charging pile; the usage state includes a charging state or a non-charging state;

[0037] A state switching module, configured to switch the anti-theft functional component configured for the target charging cable to an operating state when it is determined that the usage state is the non-charging state;

[0038] A first safety monitoring module, configured to perform first safety monitoring on the target charging cable according to a preset first anti-theft strategy, and obtain first safety monitoring information for the target charging cable; the first safety monitoring at least includes real-time monitoring of cable cutting based on the anti-theft functional component;

[0039] An anti-theft processing module, which is used to perform a preset anti-theft process by the anti-theft functional component when the first security monitoring information indicates that the target charging cable meets the preset anti-theft control conditions, so as to obtain an anti-theft processing result for the target charging cable. The anti-theft process includes positioning output and wire-cutting warning output.

[0040] As an optional implementation manner, in the second aspect of the present invention, the manner in which the first security monitoring module performs the first security monitoring on the target charging cable according to a preset first anti-theft strategy to obtain the first security monitoring information for the target charging cable specifically includes:

[0041] According to the usage data, determine the wire-cutting monitoring data collected for the target charging cable and determine the device type corresponding to the data collection device that collects the wire-cutting monitoring data; the device type includes an electrical type or a mechanical stress type;

[0042] According to the device type, determine the reference parameter and its corresponding standard value; the reference parameter is used to analyze the wire-cutting monitoring data;

[0043] Taking the reference parameter as a reference, compare the wire-cutting monitoring data with the standard value to obtain a comparison result between the wire-cutting monitoring data and the standard data; and add the comparison result to the first security monitoring information for the target charging cable.

[0044] As an optional implementation manner, in the second aspect of the present invention, when the device type is the electrical type, the wire-cutting monitoring data includes the electrical conduction information of the target charging cable, and the reference parameter is a resistance value and / or a current value;

[0045] When the device type is the mechanical stress type, the wire-cutting monitoring data includes the mechanical stress information of the target charging cable, and the reference parameter is a tensile value.

[0046] As an optional implementation manner, in the second aspect of the present invention, the anti-theft functional component includes a positioning component, an alarm component, and a communication component;

[0047] The manner in which the anti-theft processing module performs a preset anti-theft process by the anti-theft functional component to obtain an anti-theft processing result for the target charging cable specifically includes:

[0048] When the positioning component is initially started, the positioning component obtains the first positioning information of the target charging cable, the alarm component generates the first wire harness alarm information according to the first positioning information in combination with the wire harness identifier of the target charging cable, and uploads the first wire harness alarm information to the background monitoring system through the communication component;

[0049] During the real-time operation of the positioning component, the positioning component acquires the second positioning information of the target charging cable according to a preset positioning frequency, and the warning component generates second cable warning information based on the first positioning information, the second positioning information and the cable identification, and uploads the second cable warning information to the background monitoring system through the communication component.

[0050] As an optional implementation manner, in the second aspect of the present invention, the device further includes:

[0051] An acquisition module, configured to acquire all historical positioning information generated by the positioning component for the target charging cable. The earliest generated positioning information among all the historical positioning information is the first positioning information, and the latest generated positioning information among all the historical positioning information is the second positioning information; each piece of historical positioning information includes the positioning position and positioning time corresponding to the historical positioning information;

[0052] The determination module is further configured to determine the movement information of the target charging cable according to all the historical positioning information, where the movement information at least includes a movement path, a movement direction, and a movement speed;

[0053] A calculation module, configured to calculate a predicted movement distance corresponding to the movement direction of the target charging cable within a target duration according to the movement path, the movement direction, and the movement speed;

[0054] A generation module, configured to generate a movement report for the target charging cable according to the movement information and the predicted movement distance, where the movement report is used to be fed back to the corresponding processing personnel and is also used to provide the processing personnel with a recovery suggestion for the target charging cable.

[0055] As an optional implementation manner, in the second aspect of the present invention, the device further includes:

[0056] A second security monitoring module, configured to perform second security monitoring on the target charging cable according to a preset second anti-theft strategy when it is determined that the usage state is the charging state, to obtain second security monitoring information for the target charging cable; the second security monitoring includes electrical parameter monitoring based on the target charging pile;

[0057] Moreover, the manner in which the second security monitoring module performs second security monitoring on the target charging cable according to a preset second anti-theft strategy to obtain second security monitoring information for the target charging cable specifically includes:

[0058] Acquiring electrical data and communication data of the target charging pile for the target charging cable in real time according to a preset second anti-theft strategy;

[0059] Determine whether at least one of the electrical data and the communication data meets a preset abnormal alarm condition, and obtain a judgment result corresponding to the electrical data and the communication data;

[0060] Determine the judgment result as the second safety monitoring information for the target charging cable.

[0061] As an optional implementation manner, in the second aspect of the present invention, the electrical data includes the power supply state of the target charging pile for the target charging cable, and further includes at least one of the output voltage, output current, and output power of the target charging pile for the target charging cable; the power supply state includes normal power supply or abnormal power supply;

[0062] The communication data includes the communication state between the target charging pile and the background monitoring system, and the communication state includes normal communication or abnormal communication;

[0063] The situation that at least one of the electrical data and the communication data meets the abnormal alarm condition specifically is:

[0064] The power supply state is the abnormal power supply; or, the communication state is the abnormal communication; or, the power supply state is the normal power supply and the communication state is the abnormal communication; or, the power supply state is the abnormal power supply and the communication state is the normal communication.

[0065] The third aspect of the present invention discloses another anti-theft control device for a charging pile charging cable, and the device includes:

[0066] A memory storing executable program code;

[0067] A processor coupled to the memory;

[0068] The processor calls the executable program code stored in the memory and executes the anti-theft control method for a charging pile charging cable disclosed in the first aspect of the present invention.

[0069] The fourth aspect of the present invention discloses a computer storage medium, and the computer storage medium stores computer instructions, which are used to execute the anti-theft control method for a charging pile charging cable disclosed in the first aspect of the present invention when called.

[0070] Compared with the prior art, the embodiments of the present invention have the following beneficial effects:

[0071] In an embodiment of the present invention, a method for anti-theft control of a charging cable of a charging pile is provided. The method includes: collecting usage data corresponding to a target charging cable currently detected, and determining the usage status of the target charging cable according to the usage data. The target charging cable is used in conjunction with a target charging pile; the usage status includes a charging status or a non-charging status; when it is determined that the usage status is the non-charging status, switching the anti-theft function component configured for the target charging cable to the operating state, and performing first security monitoring on the target charging cable according to a preset first anti-theft strategy to obtain first security monitoring information for the target charging cable; the first security monitoring at least includes real-time monitoring of cable cutting based on the anti-theft function component; when the first security monitoring information indicates that the target charging cable meets the preset anti-theft control conditions, the anti-theft function component performs a preset anti-theft process to obtain an anti-theft process result for the target charging cable. The anti-theft process includes positioning output and cable cutting alarm output. It can be seen that by implementing the present invention, a monitoring mechanism for the usage status of the target charging cable is set up, and the anti-theft function component is automatically activated when the target charging cable is in the non-charging state, which is beneficial to reducing the probability of the target charging cable being stolen during the non-use period; further, when the target charging cable is in the non-charging state, by switching the anti-theft function component to the operating state and combining the first anti-theft strategy, security monitoring measures including real-time monitoring of cable cutting can be intelligently performed. This real-time monitoring mechanism can quickly detect and respond to possible damage behaviors of the target charging cable, such as cable cutting, thereby improving the real-time performance and accuracy of anti-theft monitoring for the target charging cable; in addition, when it is detected that the preset anti-theft control conditions are met, the anti-theft function component can automatically perform anti-theft processes including positioning output and cable cutting alarm output. The setting of this anti-theft process mechanism can not only discover and report abnormal situations in the first time, but also help management personnel quickly locate and process the stolen or damaged charging cable through the positioning information, that is, it is beneficial to improve the speed of discovering abnormalities of the target charging cable and the emergency response speed after being stolen. BRIEF DESCRIPTION OF THE DRAWINGS

[0072] In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the following will briefly introduce the drawings required for description in the embodiments. Obviously, the following drawings are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can be obtained based on these drawings.

[0073] Figure 1 It is a flowchart showing a method for anti-theft control of a charging cable of a charging pile disclosed in an embodiment of the present invention;

[0074] Figure 2 It is a flowchart showing another method for anti-theft control of a charging cable of a charging pile disclosed in an embodiment of the present invention;

[0075] Figure 3It is a schematic structural diagram of an anti-theft control device for a charging cable of a charging pile disclosed in an embodiment of the present invention;

[0076] Figure 4 It is a schematic structural diagram of another anti-theft control device for a charging cable of a charging pile disclosed in an embodiment of the present invention;

[0077] Figure 5 It is a schematic structural diagram of yet another anti-theft control device for a charging cable of a charging pile disclosed in an embodiment of the present invention. Detailed implementation manners

[0078] In order to enable those skilled in the art to better understand the solution of the present invention, the technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without making creative efforts belong to the scope of protection of the present invention.

[0079] The terms "first", "second", etc. in the specification and claims of the present invention and the above-mentioned drawings are used to distinguish different objects, rather than to describe a specific order. In addition, the terms "include" and "have" and any variations thereof are intended to cover non-exclusive inclusion. For example, a process, method, device, product or terminal that includes a series of steps or units is not limited to the listed steps or units, but optionally further includes steps or units not listed, or optionally further includes other steps or units inherent to these processes, methods, products or terminals.

[0080] Referring to "embodiment" herein means that a specific feature, structure or characteristic described in connection with the embodiment can be included in at least one embodiment of the present invention. The phrase appears in various places in the specification and does not necessarily refer to the same embodiment, nor is it an independent or alternative embodiment mutually exclusive with other embodiments. Those skilled in the art will explicitly and implicitly understand that the embodiments described herein can be combined with other embodiments.

[0081] The present invention discloses an anti-theft control method and device for a charging cable of a charging pile, which sets up a monitoring mechanism for the usage status of the target charging cable and automatically activates the anti-theft function component when the target charging cable is in a non-charging state, which is beneficial to reducing the probability of the target charging cable being stolen during non-use; further, when the target charging cable is in a non-charging state, by switching the anti-theft function component to the operating state and combining with the first anti-theft strategy, it is possible to intelligently execute security monitoring measures including real-time monitoring of cable cutting. This real-time monitoring mechanism can quickly detect and respond to possible damage behaviors of the target charging cable, such as cable cutting, etc., thereby improving the real-time performance and accuracy of anti-theft monitoring for the target charging cable; in addition, when it is detected that the preset anti-theft control conditions are met, the anti-theft function component can automatically execute anti-theft processing including positioning output and cable cutting alarm output. The setting of this anti-theft processing mechanism can not only discover and report abnormal situations in the first time, but also help the management personnel quickly locate and process the stolen or damaged charging cable through the positioning information, that is, it is beneficial to improve the speed of abnormal discovery of the target charging cable and the emergency response speed after being stolen. The following will be described in detail respectively.

[0082] Embodiment 1

[0083] Please refer to Figure 1 , Figure 1 which is a schematic flowchart of an anti-theft control method for a charging cable of a charging pile disclosed in an embodiment of the present invention. Among them, Figure 1 the described anti-theft control method for the charging cable of the charging pile can be applied to the anti-theft control device for the charging cable of the charging pile, and the embodiment of the present invention does not make any limitation. As Figure 1 shown, the anti-theft control method for the charging cable of the charging pile may include the following operations:

[0084] 101. Collect the usage data corresponding to the currently detected target charging cable, and determine the usage status of the target charging cable according to the usage data. The target charging cable is used in combination with the target charging pile; the usage status includes the charging state or the non-charging state.

[0085] In an embodiment of the present invention, multiple target charging cables can be equipped and bound to the same target charging pile.

[0086] In the embodiments of the present invention, the usage data can be determined based on the order information and power supply information of the target charging pile. For example, if a charging order for the target charging pile is submitted at 8 pm and the charging order mentions that it is necessary to start charging with the target charging line a of the target charging pile A for 1 hour, then during the period from 8 pm to 9 pm, the target charging line a is in the charging state. On the contrary, if no charging order for the target charging pile A is found / or the charging tasks of all charging orders have been completed currently, then the target charging line a is in a non-charging state. Specifically, how to determine the usage state of the target charging line can be adjusted according to the actual situation, and the embodiments of the present invention do not make limitations.

[0087] In the embodiments of the present invention, a monitoring mechanism for the usage situation of the target charging line is set up, which is beneficial to improving the timeliness of monitoring the target charging line.

[0088] 102. When it is determined that the usage state is the non-charging state, switch the anti-theft function component configured for the target charging line to the operating state.

[0089] In the embodiments of the present invention, when the target charging line is in the charging state, it is default that the anti-theft function component is in the low-power consumption or sleep state and does not directly participate in the monitoring of the target charging line.

[0090] 103. According to the preset first anti-theft strategy, perform the first security monitoring on the target charging line to obtain the first security monitoring information for the target charging line; the first security monitoring at least includes real-time monitoring of wire cutting based on the anti-theft function component.

[0091] 104. When the first security monitoring information indicates that the target charging line meets the preset anti-theft control conditions, the anti-theft function component performs the preset anti-theft processing to obtain the anti-theft processing result for the target charging line, and the anti-theft processing includes positioning output and wire cutting alarm output.

[0092] It can be seen that the implementation Figure 1The described anti-theft control method for the charging cable of a charging pile sets up a monitoring mechanism for the usage status of the target charging cable, and automatically activates the anti-theft function component when the target charging cable is in a non-charging state, which is beneficial to reducing the probability of the target charging cable being stolen during non-use. Further, when the target charging cable is in a non-charging state, by switching the anti-theft function component to the operating state and combining it with the first anti-theft strategy, it is possible to intelligently execute security monitoring measures including real-time monitoring of cable cutting. This real-time monitoring mechanism can quickly detect and respond to possible damage behaviors of the target charging cable, such as cable cutting, thereby improving the real-time performance and accuracy of anti-theft monitoring for the target charging cable. In addition, when it is detected that the preset anti-theft control conditions are met, the anti-theft function component can automatically execute anti-theft processing including positioning output and cable cutting alarm output. The setting of this anti-theft processing mechanism can not only discover and report abnormal situations in the first time, but also help the management personnel quickly locate and process the stolen or damaged charging cable through the positioning information. That is to say, it is beneficial to improve the speed of abnormal situation discovery for the target charging cable and the emergency response speed after being stolen.

[0093] In an optional embodiment, the manner of performing the first security monitoring on the target charging cable according to the preset first anti-theft strategy in step 103 to obtain the first security monitoring information for the target charging cable specifically includes:

[0094] According to the usage data, determine the cable cutting monitoring data collected for the target charging cable and the device type corresponding to the data collection device that collects the cable cutting monitoring data; the device type includes electrical type or mechanical stress type;

[0095] According to the device type, determine the reference parameter and its corresponding standard value; the reference parameter is used to analyze the cable cutting monitoring data;

[0096] Taking the reference parameter as a benchmark, compare the cable cutting monitoring data with the standard value to obtain the comparison result of the cable cutting monitoring data and the standard data; and add the comparison result to the first security monitoring information for the target charging cable.

[0097] In this optional embodiment, when the device type is electrical type, the cable cutting monitoring data includes the electrical conduction information of the target charging cable, and the reference parameter is the resistance value and / or the current value;

[0098] When the device type is mechanical stress type, the cable cutting monitoring data includes the mechanical stress information of the target charging cable, and the reference parameter is the tensile value.

[0099] In this optional embodiment, further, the first security monitoring information indicating that the target charging cable meets the preset anti-theft control conditions specifically is:

[0100] When the reference parameter includes a resistance value and the monitored resistance value corresponding to the wire-cutting monitoring data is greater than the standard value corresponding to this current value, it is determined that the target charging cable meets the preset anti-theft control condition; and / or,

[0101] When the reference parameter includes a current value and the monitored current value corresponding to the wire-cutting monitoring data is less than the standard value corresponding to this current value, it is determined that the target charging cable meets the preset anti-theft control condition;

[0102] And when the reference parameter includes a tensile force value and a certain instantaneous tensile force value corresponding to the wire-cutting monitoring data is greater than the standard value corresponding to this tensile force value, it is determined that the target charging cable meets the preset anti-theft control condition.

[0103] In this optional embodiment, it should be noted that when at least one of the three types of data, namely the detected resistance value, the monitored current value, and a certain instantaneous tensile force value, corresponding to the wire-cutting monitoring data meets the sub anti-theft control condition (referring to the comparison step between each wire-cutting monitoring data and its corresponding reference parameter) matched by this wire-cutting monitoring data, it can be determined that the target charging cable meets the preset anti-theft control condition.

[0104] It can be seen that in this optional embodiment, by using data to determine the wire-cutting monitoring data collected for the target charging cable and further determining the type of the data acquisition device, since different types of devices may have different monitoring methods and sensitivities to wire-cutting behaviors, by distinguishing the device types, the wire-cutting monitoring data can be analyzed more effectively, that is, it is beneficial to improve the accuracy of monitoring and the detection flexibility, reliability, and practicability of wire-cutting behaviors; and, the reference parameter and its corresponding standard data can be determined according to the device type, and this method of flexibly selecting the reference parameter and the standard value according to the characteristics of different devices is beneficial to improving the accuracy and reliability of subsequent analysis of the wire-cutting monitoring data; further, by comparing the accurate standard value with the wire-cutting monitoring data, it is beneficial to improve the accuracy of the obtained comparison result.

[0105] In this optional embodiment, a sensing element may be provided on the target charging pile, and this sensing element may be a first sensing element based on RFID technology, a second sensing element based on WiFi technology, or a third sensing element based on Bluetooth technology;

[0106] Further, when the target charging pile includes a first sensing element, an induction tag capable of being recognized by the first sensing element is provided on the target charging cable; the induction tag is continuously inductively recognized by the first sensing element to obtain an induction recognition result corresponding to the first sensing element;

[0107] When the target charging pile includes a second sensing element / a third sensing element, the target charging pile serves as an access point for WiFi signals / an interaction site for Bluetooth signals, and the target charging cable is connected to the target charging pile via WiFi signals / Bluetooth signals; the second sensing element / the third sensing element is used to monitor the connection status of the WiFi signals / Bluetooth signals between the target charging cable and the target charging pile in real time, and obtain the corresponding monitoring results;

[0108] Correspondingly, the above-mentioned first security monitoring information indicating that the target charging cable meets the preset anti-theft control conditions specifically means:

[0109] When the target charging pile includes a first sensing element, the induction recognition result indicates that the first sensing element fails to recognize the induction tag set on the target charging cable; the failure to recognize the induction tag here can be no signal or beyond the induction distance;

[0110] When the target charging pile includes a second sensing element, the monitoring result indicates that the connection status of the WiFi signals between the target charging cable and the target charging pile is a disconnected state; this disconnected state can be caused by a WiFi network outage or because the distance between the target charging cable and the target charging pile exceeds the connection distance (the two are too far apart);

[0111] When the target charging pile includes a third sensing element, the monitoring result indicates that the connection status of the Bluetooth signals between the target charging cable and the target charging pile is a disconnected state; this disconnected state can be caused by the Bluetooth signals being blocked or because the distance between the target charging cable and the target charging pile exceeds the connection distance (the two are too far apart).

[0112] It can be seen that in this optional embodiment, multiple monitoring methods for the target charging cable are set, enriching the monitoring means for whether the target charging cable is normally connected / there is a wire-cutting situation between the target charging cable and the target charging pile, and greatly improving the monitoring accuracy, monitoring applicability and monitoring practicability of the wire-cutting situation of the target charging cable.

[0113] In another optional embodiment, the method further includes:

[0114] Obtain video monitoring data for the target charging cable;

[0115] When it is determined that the first security monitoring information indicates that the target charging cable meets the anti-theft control conditions, determine the current recording time node and its corresponding error time period;

[0116] Extract the target video segment corresponding to the recording time node and its corresponding error time period from the video monitoring data;

[0117] Based on a preset wire harness detection node, perform node positioning on the target video segment to obtain a node positioning result corresponding to the wire harness detection node;

[0118] Determine whether there is a target detection node in the node positioning result that matches the preset disconnection of the wire harness. When it is determined that there is no target detection node in the node positioning result that matches the preset disconnection of the wire harness, update the first security monitoring information to not meet the anti-theft control condition according to the node positioning result;

[0119] When it is determined that there is a target detection node in the node positioning result that matches the preset disconnection of the wire harness, trigger the execution of the above-mentioned anti-theft processing performed by the anti-theft functional component to obtain an operation corresponding to the anti-theft processing result for the target charging cable.

[0120] In an alternative embodiment, the wire harness detection node is used to indicate the connection status between the target charging pile and the target charging cable. The connection status includes a first state in which the target charging pile can supply power to the target charging cable normally, and a second state in which the target charging pile cannot supply power to the target charging cable normally; and the second state includes a first sub-state in which the target charging cable is within the configuration range of the target charging pile (for example, just poor contact between the target charging pile and the target charging cable) or a second sub-state in which the target charging cable is outside the configuration range of the target charging pile;

[0121] The specific situation that there is no target detection node in the above node positioning result that matches the preset disconnection of the wire harness is:

[0122] The node positioning result indicates that the target charging cable is in the first sub-state;

[0123] The specific situation that there is a target detection node in the above node positioning result that matches the preset disconnection of the wire harness is:

[0124] The node positioning result indicates that the target charging cable is in the second sub-state.

[0125] It can be seen that in this alternative embodiment, an anti-theft verification mechanism for the target charging cable based on video data is set up, which can record the current time node after detecting that the anti-theft control condition is met, and intelligently extract the corresponding target video segment from the monitoring video of the target charging cable, improving the interception speed of the target video segment; further, it can perform node positioning on the target video segment based on a preset wire harness detection node, thereby further verifying whether the target charging cable has been stolen, improving the judgment accuracy of whether the target charging cable meets the anti-theft control condition, and reducing false alarms caused by poor contact between the target charging cable and the target charging pile.

[0126] In another alternative embodiment, the anti-theft functional component includes a positioning component, an alarm component, and a communication component;

[0127] The above step 104 is executed by the anti-theft function component to perform a preset anti-theft process to obtain an anti-theft process result for the target charging cable. The specific method includes:

[0128] When the positioning component is initially started, the positioning component obtains the first positioning information of the target charging cable. The warning component generates the first cable bundle warning information according to the first positioning information in combination with the cable bundle identifier of the target charging cable, and uploads the first cable bundle warning information to the background monitoring system through the communication component;

[0129] During the real-time operation of the positioning component, the positioning component obtains the second positioning information of the target charging cable according to a preset positioning frequency. The warning component generates the second cable bundle warning information according to the first positioning information, the second positioning information in combination with the cable bundle identifier, and uploads the second cable bundle warning information to the background monitoring system through the communication component.

[0130] In this optional embodiment, the communication component can be a conventional processor, CPU or MCU; through the communication component, data interaction with the positioning component and the warning component can be realized (the data interaction refers to the above process). Further, the communication component can also perform data interaction with the background monitoring system or the cloud platform to realize operations such as networking or data uploading.

[0131] In this optional embodiment, the above first positioning information and second positioning information can be positioning information based on a base station / GSM, can be positioning information based on an IP address, can be positioning information based on a GPS address, can also be positioning information based on a WiFi address or other positioning information (such as Apple's Find My), etc. The embodiments of the present invention do not make limitations.

[0132] It can be seen that in this optional embodiment, the first positioning information of the target charging cable can be quickly obtained when the anti-theft function is started, and the rapid reporting of the abnormality of the target charging cable can be realized, which is beneficial to improving the speed of discovering the abnormality of the target charging cable; and during the real-time operation process, the second positioning information is continuously obtained according to the preset positioning frequency. This real-time positioning ability not only helps to quickly respond to the event of the charging cable being stolen, but also reduces the difficulty of retrieving the target charging cable later; and, the warning component can generate detailed warning information according to the positioning information and the cable bundle identifier, including the first cable bundle warning information and the second cable bundle warning information. These warning information not only contain the specific position of the charging cable, but also are associated with the specific cable bundle identifier. Through the reported cable bundle warning information, it can help the management personnel to identify and process the event of the target charging cable being stolen.

[0133] Embodiment 2

[0134] Please refer to Figure 2 , Figure 2It is a schematic flowchart of another anti-theft control method for a charging cable of a charging pile disclosed in an embodiment of the present invention. Among them, Figure 2 The described anti-theft control method for the charging cable of the charging pile can be applied to the anti-theft control device of the charging cable of the charging pile, and the embodiments of the present invention do not make limitations. As Figure 2 shown, the anti-theft control method for the charging cable of the charging pile may include the following operations:

[0135] 201. Collect the usage data corresponding to the target charging cable currently detected, and determine the usage status of the target charging cable according to the usage data. The target charging cable is used in conjunction with the target charging pile; the usage status includes the charging status or the non-charging status.

[0136] 202. When it is determined that the usage status is the non-charging status, switch the anti-theft function component configured for the target charging cable to the operating state.

[0137] 203. According to the preset first anti-theft strategy, perform the first security monitoring on the target charging cable to obtain the first security monitoring information for the target charging cable; the first security monitoring at least includes real-time monitoring of cable cutting based on the anti-theft function component.

[0138] 204. When the first security monitoring information indicates that the target charging cable meets the preset anti-theft control conditions, the anti-theft function component performs the preset anti-theft processing to obtain the anti-theft processing result for the target charging cable. The anti-theft processing includes positioning output and cable cutting alarm output.

[0139] In the embodiments of the present invention, for other descriptions of steps 201 - 204, please refer to the other specific descriptions of steps 101 - 104 in Embodiment 1, and the embodiments of the present invention will not be repeated.

[0140] 205. Obtain all historical positioning information generated by the positioning component for the target charging cable.

[0141] In the embodiments of the present invention, the earliest generated positioning information among all historical positioning information is the first positioning information, and the latest generated positioning information among all historical positioning information is the second positioning information; and each historical positioning information includes the positioning position and the positioning time corresponding to the historical positioning information.

[0142] 206. Determine the movement information of the target charging cable according to all historical positioning information. The movement information at least includes the movement path, the movement direction, and the movement speed.

[0143] 207. Calculate the predicted movement distance corresponding to the movement direction of the target charging cable within the target time period according to the movement path, the movement direction, and the movement speed.

[0144] 208. Generate a movement report for the target charging cable based on the movement information and the predicted movement distance. The movement report is used to feedback to the corresponding handler and also to provide the handler with suggestions for retrieving the target charging cable.

[0145] It can be seen that implementing Figure 2 the anti-theft control method for the charging cable of the charging pile described above, by recording and obtaining all historical positioning information of the target charging cable, including the positioning location and timestamp, can completely trace back the movement history of the target charging cable; then accurately calculate the movement path, direction and speed of the target charging cable based on this historical positioning information; and based on the current movement information, further predict the possible movement distance of the target charging cable within a specific future duration; through the intelligent recording of this movement information and the prediction of the movement distance, while improving the fineness and accuracy of generating the movement report, it is also beneficial to reduce the difficulty for the handler to retrieve the stolen target charging cable.

[0146] In an optional embodiment, the method further includes:

[0147] When it is determined that the usage status is the charging status, perform a second security monitoring on the target charging cable according to a preset second anti-theft strategy to obtain second security monitoring information for the target charging cable; the second security monitoring includes monitoring the electrical parameters of the target charging pile;

[0148] Moreover, the above-mentioned manner of performing a second security monitoring on the target charging cable according to a preset second anti-theft strategy to obtain second security monitoring information for the target charging cable specifically includes:

[0149] According to a preset second anti-theft strategy, real-time obtain the electrical data and communication data of the target charging pile for the target charging cable;

[0150] Judge whether at least one of the electrical data and the communication data meets a preset abnormal alarm condition to obtain a judgment result corresponding to the electrical data and the communication data;

[0151] Determine the judgment result as the second security monitoring information for the target charging cable.

[0152] In this optional embodiment, the electrical data includes the power supply status of the target charging pile for the target charging cable, and also includes at least one of the output voltage, output current and output power of the target charging pile for the target charging cable; the power supply status includes normal power supply or abnormal power supply;

[0153] The communication data includes the communication status between the target charging pile and the background monitoring system, and the communication status includes normal communication or abnormal communication;

[0154] That at least one of the electrical data and the communication data meets the abnormal alarm condition specifically means:

[0155] The power supply status is abnormal power supply; or, the communication status is abnormal communication; or, the power supply status is normal power supply and the communication status is abnormal communication; or, the power supply status is abnormal power supply and the communication status is normal communication.

[0156] It can be seen that in this optional embodiment, by real-time monitoring the electrical data (such as power supply status, output voltage, current, power) and communication data (communication status with the background monitoring system) of the target charging pile, all-round monitoring of the charging process is realized, effectively preventing potential safety hazards caused by electrical failures or communication interruptions, and improving the fineness and accuracy of abnormal monitoring of the charging cable in the charging state; and, by setting abnormal alarm conditions, it is possible to immediately judge whether there are abnormalities in the electrical and communication data, such as abnormal power supply, abnormal communication, etc., thereby improving the recognition speed and fault response speed of charging cable abnormalities; in addition, when an abnormality is detected, the judgment result can be automatically used as the second safety monitoring information, providing accurate problem positioning and alarm information for the processing personnel, helping to improve the positioning speed of problem round heads and reducing the impact of faults on the charging process.

[0157] Embodiment III

[0158] Please refer to Figure 3 , Figure 3 which is a schematic structural diagram of an anti-theft control device for a charging cable of a charging pile disclosed in an embodiment of the present invention. Among them, the anti-theft control device for the charging cable of the charging pile can be an anti-theft control terminal, device, system or server of the charging cable of the charging pile. The server can be a local server, a remote server, or a cloud server (also known as a cloud server). When the server is a non-cloud server, the non-cloud server can communicate with the cloud server. The embodiments of the present invention do not make limitations. As Figure 3 shown, the anti-theft control device for the charging cable of the charging pile may include a collection module 301, a determination module 302, a state switching module 303, a first safety monitoring module 304, and an anti-theft processing module 305, where:

[0159] The collection module 301 is used to collect the usage data corresponding to the currently detected target charging cable.

[0160] The determination module 302 is used to determine the usage status of the target charging cable according to the usage data. The target charging cable is used in conjunction with the target charging pile; the usage status includes the charging state or the non-charging state.

[0161] The state switching module 303 is used to switch the anti-theft functional component configured for the target charging cable to the operating state when it is determined that the usage status is the non-charging state.

[0162] The first security monitoring module 304 is configured to perform first security monitoring on a target charging cable according to a preset first anti-theft policy, and obtain first security monitoring information for the target charging cable; the first security monitoring at least includes real-time monitoring of cable cutting based on anti-theft functional components.

[0163] The anti-theft processing module 305 is configured to, when the first security monitoring information indicates that the target charging cable meets the preset anti-theft control conditions, perform a preset anti-theft processing by the anti-theft functional components to obtain an anti-theft processing result for the target charging cable, and the anti-theft processing includes positioning output and cable cutting alarm output.

[0164] It can be seen that implementing Figure 3 the described anti-theft control device for the charging cable of the charging pile, a monitoring mechanism for the usage status of the target charging cable is set, and the anti-theft functional components are automatically activated when the target charging cable is in a non-charging state, which is beneficial to reducing the probability of the target charging cable being stolen during non-use; further, when the target charging cable is in a non-charging state, by switching the anti-theft functional components to the operating state and combining with the first anti-theft policy, security monitoring measures including real-time monitoring of cable cutting can be intelligently executed. This real-time monitoring mechanism can quickly detect and respond to possible damage behaviors of the target charging cable, such as cable cutting, etc., thereby improving the real-time performance and accuracy of anti-theft monitoring for the target charging cable; in addition, when it is detected that the preset anti-theft control conditions are met, the anti-theft functional components can automatically perform anti-theft processing including positioning output and cable cutting alarm output. The setting of this anti-theft processing mechanism can not only discover and report abnormal situations in the first time, but also help the management personnel quickly locate and process the stolen or damaged charging cable through the positioning information, that is, it is beneficial to improve the speed of discovering abnormalities of the target charging cable and the emergency response speed after being stolen.

[0165] In an optional embodiment, the manner in which the first security monitoring module 304 performs first security monitoring on the target charging cable according to the preset first anti-theft policy and obtains the first security monitoring information for the target charging cable specifically includes:

[0166] Determine the cable cutting monitoring data collected for the target charging cable according to the usage data, and determine the device type corresponding to the data collection device that collects the cable cutting monitoring data; the device type includes electrical type or mechanical stress type;

[0167] Determine the reference parameter and its corresponding standard value according to the device type; the reference parameter is used to analyze the cable cutting monitoring data;

[0168] Taking the reference parameter as a reference, compare the cable cutting monitoring data with the standard value to obtain a comparison result between the cable cutting monitoring data and the standard data; and add the comparison result to the first security monitoring information for the target charging cable.

[0169] In this alternative embodiment, when the device type is electrical, the wire-cutting monitoring data includes the electrical conduction information of the target charging cable, and the reference parameter is the resistance value and / or the current value;

[0170] When the device type is mechanical stress type, the wire-cutting monitoring data includes the mechanical stress information of the target charging cable, and the reference parameter is the tensile force value.

[0171] It can be seen that in this alternative embodiment, by using data to determine the wire-cutting monitoring data collected for the target charging cable and further determine the type of the data acquisition device. Since different types of devices may have different monitoring methods and sensitivities to wire-cutting behavior, by distinguishing the device type, the wire-cutting monitoring data can be analyzed more effectively. That is, it is beneficial to improve the accuracy of monitoring and the detection flexibility, reliability, and practicability of wire-cutting behavior; and, the reference parameter and its corresponding standard data can be determined according to the device type. This way of flexibly selecting the reference parameter and the standard value according to the characteristics of different devices is beneficial to improving the accuracy and reliability of subsequent analysis of the wire-cutting monitoring data; further, comparing the accurate standard value with the wire-cutting monitoring data is beneficial to improving the accuracy of the obtained comparison result.

[0172] In another alternative embodiment, the anti-theft function component includes a positioning component, an alarm component, and a communication component;

[0173] The method for the anti-theft processing module 305 to perform preset anti-theft processing by the anti-theft function component to obtain the anti-theft processing result for the target charging cable specifically includes:

[0174] When the positioning component is initially started, the positioning component obtains the first positioning information of the target charging cable, and the alarm component generates the first wire harness alarm information according to the first positioning information combined with the wire harness identifier of the target charging cable, and uploads the first wire harness alarm information to the background monitoring system through the communication component;

[0175] During the real-time operation of the positioning component, the positioning component obtains the second positioning information of the target charging cable according to the preset positioning frequency, and the alarm component generates the second wire harness alarm information according to the first positioning information, the second positioning information combined with the wire harness identifier, and uploads the second wire harness alarm information to the background monitoring system through the communication component.

[0176] It can be seen that in this alternative embodiment, the first positioning information of the target charging cable can be quickly obtained when the anti-theft function is activated, enabling the rapid reporting of abnormalities in the target charging cable, which is conducive to improving the speed of detecting abnormalities in the target charging cable; and during real-time operation, the second positioning information is continuously obtained at a preset positioning frequency. This real-time positioning ability not only helps to quickly respond to the theft of the charging cable but also reduces the difficulty of retrieving the target charging cable subsequently; moreover, the alarm component can generate detailed alarm information based on the positioning information and the harness identifier, including the first harness alarm information and the second harness alarm information. These alarm information not only contain the specific location of the charging cable but also are associated with the specific harness identifier. Through the reported harness alarm information, it can help the management personnel to improve the recognition speed and handling speed of the theft event of the target charging cable.

[0177] In yet another alternative embodiment, please refer to Figure 4 , Figure 4 which is a schematic structural diagram of another anti-theft control device for a charging cable of a charging pile disclosed in an embodiment of the present invention. As Figure 4 shown, the device further includes an acquisition module 306, a calculation module 307, and a generation module 308, where:

[0178] The acquisition module 306 is configured to acquire all historical positioning information generated by the positioning component for the target charging cable. The earliest generated positioning information among all the historical positioning information is the first positioning information, and the latest generated positioning information among all the historical positioning information is the second positioning information; each historical positioning information includes the positioning position and the positioning time corresponding to the historical positioning information.

[0179] The determination module 302 is further configured to determine the movement information of the target charging cable according to all the historical positioning information. The movement information at least includes a movement path, a movement direction, and a movement speed.

[0180] The calculation module 307 is configured to calculate the predicted movement distance corresponding to the movement direction of the target charging cable within a target duration according to the movement path, the movement direction, and the movement speed.

[0181] The generation module 308 is configured to generate a movement report for the target charging cable according to the movement information and the predicted movement distance. The movement report is used to be fed back to the corresponding processing personnel and is also used to provide the processing personnel with suggestions for retrieving the target charging cable.

[0182] It can be seen that in this alternative embodiment, by recording and obtaining all historical positioning information of the target charging cable, including the positioning location and timestamp, the movement history of the target charging cable can be completely traced back; then, based on this historical positioning information, the movement path, direction, and speed of the target charging cable can be accurately calculated; and based on the current movement information, the possible movement distance of the target charging cable within a specific future duration can be further predicted; through the intelligent recording of this movement information and the prediction of the movement distance, while improving the fineness and accuracy of the movement report generation, it is also beneficial to reduce the difficulty of retrieving the stolen target charging cable by the processing personnel.

[0183] In another alternative embodiment, as Figure 4 shown, the device further includes a second security monitoring module 309, where:

[0184] The second security monitoring module 309 is configured to, when it is determined that the usage state is the charging state, perform second security monitoring on the target charging cable according to a preset second anti-theft strategy to obtain second security monitoring information for the target charging cable; the second security monitoring includes monitoring the electrical parameters of the target charging pile;

[0185] Moreover, the manner in which the second security monitoring module 309 performs second security monitoring on the target charging cable according to a preset second anti-theft strategy to obtain second security monitoring information for the target charging cable specifically includes:

[0186] According to a preset second anti-theft strategy, in real time, obtain the electrical data and communication data of the target charging pile for the target charging cable;

[0187] Judge whether at least one of the electrical data and the communication data satisfies a preset abnormal alarm condition to obtain a judgment result corresponding to the electrical data and the communication data;

[0188] Determine the judgment result as the second security monitoring information for the target charging cable.

[0189] In this alternative embodiment, the electrical data includes the power supply state of the target charging pile for the target charging cable, and further includes at least one of the output voltage, output current, and output power of the target charging pile for the target charging cable; the power supply state includes normal power supply or abnormal power supply;

[0190] The communication data includes the communication state between the target charging pile and the background monitoring system, and the communication state includes normal communication or abnormal communication;

[0191] The situation that at least one of the electrical data and the communication data satisfies the abnormal alarm condition specifically is:

[0192] The power supply status is abnormal power supply; or, the communication status is abnormal communication; or, the power supply status is normal power supply and the communication status is abnormal communication; or, the power supply status is abnormal power supply and the communication status is normal communication.

[0193] It can be seen that in this alternative embodiment, by real-time monitoring of the electrical data (such as power supply status, output voltage, current, power) and communication data (communication status with the background monitoring system) of the target charging pile, comprehensive monitoring of the charging process is achieved, effectively preventing potential safety hazards caused by electrical failures or communication interruptions, and improving the fineness and accuracy of abnormal monitoring of the charging cable in the charging state; and, by setting abnormal alarm conditions, it is possible to immediately determine whether there are abnormalities in the electrical and communication data, such as abnormal power supply, abnormal communication, etc., thereby improving the recognition speed and fault response speed of charging cable abnormalities; in addition, when an abnormality is detected, the judgment result can be automatically used as the second safety monitoring information, providing accurate problem location and alarm information for the processing personnel, helping to improve the location speed of problem round heads and reducing the impact of faults on the charging process.

[0194] Embodiment Four

[0195] Please refer to Figure 5 , Figure 5 which is a schematic structural diagram of another anti-theft control device for a charging cable of a charging pile disclosed in an embodiment of the present invention. As Figure 5 shown, the anti-theft control device for the charging cable of the charging pile may include:

[0196] A memory 401 storing executable program code;

[0197] A processor 402 coupled to the memory 401;

[0198] The processor 402 calls the executable program code stored in the memory 401 and executes the steps in the anti-theft control method for the charging cable of the charging pile described in Embodiment One or Embodiment Two of the present invention.

[0199] Embodiment Five

[0200] An embodiment of the present invention discloses a computer storage medium, which stores computer instructions. When the computer instructions are called, they are used to execute the steps in the anti-theft control method for the charging cable of the charging pile described in Embodiment One or Embodiment Two of the present invention.

[0201] Embodiment Six

[0202] An embodiment of the present invention discloses a computer program product, which includes a non-transitory computer storage medium storing a computer program, and the computer program is operable to cause a computer to execute the steps in the anti-theft control method of the charging pile charging cable described in Embodiment 1 or Embodiment 2.

[0203] The device embodiments described above are only illustrative. The modules described as separate components may or may not be physically separated, and the components shown as modules may or may not be physical modules, that is, they may be located in one place or distributed to multiple network modules. Some or all of the modules can be selected according to actual needs to achieve the purpose of the solution of this embodiment. A person of ordinary skill in the art can understand and implement it without creative labor.

[0204] Through the specific descriptions of the above embodiments, those skilled in the art can clearly understand that each implementation manner can be realized by means of software plus a necessary general hardware platform, and of course, it can also be realized by hardware. Based on such an understanding, the essence of the above technical solution, or the part that contributes to the prior art, can be embodied in the form of a software product. The computer software product can be stored in a computer storage medium, and the storage medium includes a read-only memory (ROM), a random access memory (RAM), a programmable read-only memory (PROM), an erasable programmable read-only memory (EPROM), a one-time programmable read-only memory (OTPROM), an electrically-erasable programmable read-only memory (EEPROM), a compact disc read-only memory (CD-ROM) or other optical disc memories, a magnetic disk memory, a tape memory, or any other computer-readable medium that can be used to carry or store data.

[0205] Finally, it should be noted that what is disclosed by a method and device for anti-theft control of a charging cable of a charging pile according to the embodiments of the present invention is only the preferred embodiments of the present invention, which are only used to illustrate the technical solutions of the present invention, rather than to limit it; although the present invention has been described in detail with reference to the foregoing embodiments, those of ordinary skill in the art should understand that they can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements for some of the technical features; and these modifications or replacements do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of the present invention.

Claims

1. A method for controlling theft of charging pile charging cables, characterized in that: The method comprises: Collecting usage data corresponding to the currently detected target charging line, and determining the usage status of the target charging line according to the usage data, wherein the target charging line is used in combination with the target charging pile; the usage status includes a charging state or a non-charging state; When it is determined that the usage state is the non-charging state, the anti-theft function component configured for the target charging cable is switched to the running state, and according to a preset first anti-theft strategy, a first security monitoring is performed on the target charging cable to obtain first security monitoring information for the target charging cable; the first security monitoring at least includes real-time monitoring of cable cutting based on the anti-theft function component; When the first security monitoring information indicates that the target charging cable meets the preset anti-theft control conditions, the anti-theft function component executes the preset anti-theft processing to obtain the anti-theft processing result for the target charging cable, and the anti-theft processing includes positioning output and wire cutting alarm output.

2. The anti-theft control method for charging pile charging cable according to claim 1, characterized in that: The performing first security monitoring on the target charging cable according to the preset first anti-theft strategy to obtain first security monitoring information for the target charging cable includes: Determine, according to the usage data, the wire cutting monitoring data collected for the target charging line and determine the device type corresponding to the data acquisition device that collects the wire cutting monitoring data; the device type includes an electrical type or a mechanical stress type; Determine a reference parameter and its corresponding standard value according to the device type; the reference parameter is used to analyze the thread trimming monitoring data; The wire cutting monitoring data is compared with the standard value based on the reference parameter to obtain a comparison result between the wire cutting monitoring data and the standard data; and the comparison result is added to the first safety monitoring information for the target charging cable.

3. The anti-theft control method for charging pile charging cable according to claim 2, characterized in that: When the device type is the electrical type, the line cutting monitoring data includes electrical conduction information of the target charging line, and the reference parameter is a resistance value and / or a current value; When the device type is the mechanical stress type, the cable cutting monitoring data includes mechanical stress information of the target charging cable, and the reference parameter is a tension value.

4. The anti-theft control method for charging pile charging cable according to claim 2 or 3, characterized in that: The anti-theft functional components include a positioning component, an alarm component and a communication component; The anti-theft function component performs a preset anti-theft process to obtain an anti-theft process result for the target charging cable, including: When the positioning component is initially started, the positioning component obtains first positioning information of the target charging cable, and the alarm component generates first harness alarm information according to the first positioning information combined with the harness identifier of the target charging cable, and uploads the first harness alarm information to the background monitoring system through the communication component; During the real-time operation of the positioning component, the positioning component obtains the second positioning information of the target charging cable according to the preset positioning frequency, and the alarm component generates the second wiring harness alarm information according to the first positioning information, the second positioning information and the wiring harness identifier, and uploads the second wiring harness alarm information to the background monitoring system through the communication component.

5. The anti-theft control method for charging pile charging cable according to claim 4, characterized in that: The method further comprises: Acquire all historical positioning information generated by the positioning component for the target charging line, wherein the earliest positioning information generated among all the historical positioning information is the first positioning information, and the latest positioning information generated among all the historical positioning information is the second positioning information; each of the historical positioning information includes a positioning position and a positioning time corresponding to the historical positioning information; Determine the movement information of the target charging line according to all the historical positioning information, wherein the movement information includes at least a movement path, a movement direction, and a movement speed; Calculating, according to the moving path, the moving direction, and the moving speed, a predicted moving distance of the target charging line corresponding to the moving direction within a target time period; A movement report for the target charging line is generated according to the movement information and the predicted movement distance. The movement report is used to provide feedback to a corresponding processing personnel and also to provide the processing personnel with suggestions for retrieving the target charging line.

6. The anti-theft control method for charging pile charging cable according to claim 1, 2, 3 or 5, characterized in that: The method further comprises: When it is determined that the usage state is the charging state, according to a preset second anti-theft strategy, a second security monitoring is performed on the target charging cable to obtain second security monitoring information for the target charging cable; the second security monitoring includes electrical parameter monitoring based on the target charging pile; And, performing second security monitoring on the target charging cable according to the preset second anti-theft strategy to obtain second security monitoring information for the target charging cable includes: According to a preset second anti-theft strategy, the electrical data and communication data of the target charging pile for the target charging line are acquired in real time; Determine whether at least one of the electrical data and the communication data satisfies a preset abnormal alarm condition, and obtain a determination result corresponding to the electrical data and the communication data; The determination result is determined as second safety monitoring information for the target charging cable.

7. The anti-theft control method for charging pile charging cable according to claim 6, characterized in that: The electrical data includes the power supply status of the target charging pile for the target charging line, and also includes at least one of the output voltage, output current and output power of the target charging pile for the target charging line; the power supply status includes normal power supply or abnormal power supply; The communication data includes the communication status between the target charging pile and the background monitoring system, and the communication status includes normal communication or abnormal communication; The electrical data and the communication data contain at least one data that satisfies the abnormal alarm condition: The power supply status is the power supply abnormality; or, the communication status is the communication abnormality; or, the power supply status is the normal power supply and the communication status is the communication abnormality; or, the power supply status is the power supply abnormality and the communication status is the normal communication.

8. An anti-theft control device for a charging pile charging cable, characterized in that: The device comprises: A collection module, used to collect usage data corresponding to the target charging line currently being detected; A determination module, configured to determine a usage state of the target charging cable according to the usage data, wherein the target charging cable is used in conjunction with a target charging pile; the usage state includes a charging state or a non-charging state; A state switching module, configured to switch the anti-theft function component configured for the target charging cable to a running state when it is determined that the use state is the non-charging state; A first security monitoring module, configured to perform a first security monitoring on the target charging cable according to a preset first anti-theft strategy, and obtain first security monitoring information for the target charging cable; the first security monitoring at least includes real-time monitoring of cable cutting based on the anti-theft functional component; The anti-theft processing module is used to, when the first security monitoring information indicates that the target charging cable meets the preset anti-theft control conditions, the anti-theft function component performs the preset anti-theft processing to obtain the anti-theft processing result for the target charging cable, and the anti-theft processing includes positioning output and wire cutting alarm output.

9. An anti-theft control device for a charging pile charging cable, characterized in that: The device comprises: A memory storing executable program code; a processor coupled to the memory; The processor calls the executable program code stored in the memory to execute the anti-theft control method for the charging pile charging cable as described in any one of claims 1-7.

10. A computer storage medium, characterized in that: The computer storage medium stores computer instructions, and when the computer instructions are called, they are used to execute the anti-theft control method for the charging pile charging cable according to any one of claims 1-7.