Near-field sensing positioning and state monitoring method based on charging pile
The communication tag information of charging piles is obtained through near-field perception technology, and combined with positioning and status monitoring algorithms, the problem of high wiring costs in traditional charging pile management and difficulty for users to quickly find available piles is solved, and efficient and convenient charging pile positioning and status monitoring is achieved, improving user experience and operational efficiency.
Patent Information
- Application Number
- CN202510651165.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-20
- Publication Date
- 2025-08-15
AI Technical Summary
Traditional charging pile management and monitoring methods rely on wired network connections, resulting in high wiring costs, complex construction and susceptible to environmental impacts. It is difficult for users to quickly find available charging piles, and it is difficult for operators to monitor and manage equipment in real time.
Near-field perception technology is used to obtain the communication tag information of the charging pile, combine the positioning and status monitoring algorithms to generate navigation and appointment control information, and accurately positioning and status monitoring of the charging piles are achieved through near-field communication such as Bluetooth, NFC, WIFI, etc.
It realizes low-cost and high-precision charging pile position management, improves the convenience and stability of user usage planning, rationally allocates resources, improves the utilization rate and operation efficiency of charging piles, simplifies user-side functions, and reduces operation and maintenance costs.
Smart Images

Figure CN120481765A_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the field of charging pile positioning and status monitoring, and in particular relates to a near-field sensing positioning and status monitoring method based on a charging pile. Background Art
[0002] With the increasing popularity of new energy vehicles, the demand for charging stations has increased dramatically. Charging stations must not only provide basic charging services but also enhance user experience and management efficiency through intelligent means. Traditional charging stations are difficult to locate and their status is unclear. This makes it difficult for users to quickly find available charging stations, and operators struggle to monitor and manage the equipment in real time.
[0003] Current traditional charging pile management and monitoring methods present numerous challenges. Traditionally, charging pile management and monitoring primarily rely on wired network connections and manual user reporting. Operators install wired communication modules within charging piles and connect them to a central monitoring system to enable real-time monitoring and remote management of charging pile status. However, wired network connections are costly, complex, and susceptible to environmental factors, resulting in high management and maintenance costs for existing charging piles. Furthermore, users rely on on-site inspections to locate available charging piles and manually confirm their status, which is not only time-consuming and labor-intensive, but also often difficult to quickly locate. Summary of the Invention
[0004] Based on this, it is necessary to provide a near-field sensing positioning and status monitoring method based on charging piles that can quickly and accurately match the location information and status information of charging piles to address the above technical problems.
[0005] In a first aspect, the present application provides a near-field sensing positioning and status monitoring method based on a charging pile, comprising:
[0006] Obtain the near-field sensing communication tag information of the charging pile;
[0007] Based on the near-field sensing communication tag information, the positioning data and occupancy status monitoring data of the charging pile are obtained. The occupancy status monitoring data is used to indicate whether the charging pile is occupied or in use.
[0008] If the occupancy status monitoring data is available tag data, in response to obtaining the reserved occupancy request information of the charging pile, generating the reserved occupancy control information of the charging pile based on the reserved occupancy request information;
[0009] Navigation control information of the charging pile is generated according to the reservation occupancy control information and the positioning data, and the navigation control information is used to indicate the location of the charging pile reserved by the user.
[0010] In one embodiment, the near-field sensing positioning and status monitoring method based on the charging pile further includes:
[0011] Based on the reservation occupancy control information, the user-controlled near-field sensing pairing information and the charging object near-field sensing pairing information of the charging pile are obtained, where the user-controlled near-field sensing pairing information is used to represent the pairing status of the near-field sensing device between the charging pile and the user, and the charging object near-field sensing pairing information is used to represent the pairing status of the near-field sensing device between the charging pile and the charging object;
[0012] If the charging object near-field sensing pairing information is connected tag data, the working status monitoring data of the charging pile is obtained according to the near-field sensing communication tag information, and working status monitoring user feedback report information is generated based on the working status monitoring data. The working status monitoring user feedback report information is used to display the working status data of the charging pile to the user;
[0013] If the user controls the near-field sensing pairing information to be unconnected tag data, the working status monitoring report of the charging pile is obtained based on the near-field sensing communication tag information, and the charging working status monitoring prompt information corresponding to the working status monitoring report is sent to the user.
[0014] In one embodiment, generating navigation control information of a charging pile based on reservation occupancy control information and positioning data includes:
[0015] If the user controls the near-field sensing pairing information to be unconnected tag data, map navigation information of the charging pile is generated based on the near-field sensing communication tag information. The map navigation information is used to display the map location of the charging pile mapped by the near-field sensing communication tag information corresponding to the reservation occupancy control information in the map software of the user terminal;
[0016] If the user controls the near-field sensing pairing information to be connection successful prompt tag data, the location prompt control information of the charging pile is generated based on the near-field sensing communication tag information. The location prompt control information is used to prompt the specific location of the charging pile mapped by the near-field sensing communication tag information corresponding to the reservation occupancy control information in the charging station.
[0017] In one embodiment, the working status monitoring report includes a working status change prompt report and a working status parameter abnormality report. If the user controls the near-field sensing pairing information to be unconnected tag data, the working status monitoring report of the charging pile is obtained based on the near-field sensing communication tag information, including:
[0018] If the user controls the near-field sensing pairing information to be unconnected tag data, the working state mode information and working state parameter information of the charging pile are obtained based on the near-field sensing communication tag information;
[0019] Perform consistency checks on the working status mode information according to a preset judgment cycle. If the working status mode information changes, generate a working status change prompt report.
[0020] If the working state parameter information meets the preset abnormality determination condition, abnormal working state parameter information in the working state parameter information is identified, and a working state parameter abnormality report is generated based on the abnormal working state parameter information.
[0021] In one embodiment, the working state mode information includes device available state mode information, device occupied state mode information, charging continuous state mode information, and charging completed state mode information.
[0022] In one embodiment, the working status parameter information includes charging pile output power parameter information.
[0023] In one embodiment, the near field sensing communication tag information is Bluetooth device address information.
[0024] In a second aspect, the present application also provides a near-field sensing positioning and status monitoring device based on a charging pile, comprising:
[0025] Communication tag acquisition module, used to obtain the near-field sensing communication tag information of the charging pile;
[0026] The device status identification module is used to obtain the positioning data and occupancy status monitoring data of the charging pile based on the near-field sensing communication tag information. The occupancy status monitoring data is used to indicate whether the charging pile is occupied or in use;
[0027] a reservation occupancy control module configured to generate reservation occupancy control information of the charging pile based on the reservation occupancy request information in response to obtaining the reservation occupancy request information of the charging pile if the occupancy status monitoring data is available tag data;
[0028] The navigation and positioning control module is used to generate navigation control information of the charging pile based on the reservation occupancy control information and positioning data. The navigation control information is used to indicate the location of the charging pile reserved by the user.
[0029] In a third aspect, the present application further provides a computer device comprising a memory and a processor, wherein the memory stores a computer program, and the processor implements the steps of the method described in any one of the first aspects of the present application when executing the computer program.
[0030] In a fourth aspect, the present application further provides a computer-readable storage medium having a computer program stored thereon, which, when executed by a processor, implements the steps of the method described in any one of the first aspects of the present application.
[0031] The above-mentioned near-field sensing positioning and status monitoring method based on charging piles obtains positioning data by obtaining the near-field sensing communication tag information of the charging piles, and can achieve high-precision charging pile location management with lower communication hardware costs; through the analysis of the occupancy status monitoring data of the charging piles, it can accurately judge the available status of the charging piles, and improve the stability and convenience of users' use planning of the charging piles; through real-time monitoring of the occupancy status of the charging piles, it can reasonably allocate and schedule charging pile resources, and improve the overall utilization rate of the charging piles; by simplifying the control program, the user-side functions can be realized based on the WeChat applet, thereby saving mobile phone resources, reducing mobile phone system restrictions, and facilitating subsequent promotion and operation and maintenance. BRIEF DESCRIPTION OF THE DRAWINGS
[0032] In order to more clearly illustrate the technical solutions in the embodiments of the present application or related technologies, the following briefly introduces the drawings required for use in the embodiments or related technical descriptions. Obviously, the drawings described below are only some embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.
[0033] Figure 1 A schematic diagram of an application environment of a prior art method for near-field sensing positioning and status monitoring based on a charging pile provided in one embodiment of the present application;
[0034] Figure 2 A schematic diagram of the communication connection structure of a near-field sensing positioning and status monitoring method based on a charging pile provided in one embodiment of the present application;
[0035] Figure 3 A flowchart of a near-field sensing positioning and status monitoring method based on a charging pile provided in one embodiment of the present application;
[0036] Figure 4 A flowchart of another method for near-field sensing, positioning, and status monitoring based on a charging pile provided in one embodiment of the present application;
[0037] Figure 5 A schematic diagram of a charging pile location prompt provided in one embodiment of the present application;
[0038] Figure 6 A schematic structural diagram of a near-field sensing positioning and status monitoring device based on a charging pile is provided as an embodiment of the present application. DETAILED DESCRIPTION
[0039] In order to make the purpose, technical solutions and advantages of this application more clear, the following further describes this application in detail with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain this application and are not intended to limit this application.
[0040] The near-field sensing positioning and status monitoring method based on the charging pile provided in the embodiment of the present application can be applied to Figure 1 In the application environment shown, the user terminal 102 and the charging station 103 can communicate with the server 101 via a communication channel. The data storage system can store data that the server 101 needs to process. The data storage system can be integrated on the server 101, or placed on the cloud or other network servers. The server 101 can obtain the location information and status information of the charging station 103 based on the sensors built into the charging station 103, and analyze and generate positioning decision information and status decision information for the charging station 103 based on the location parameters and status parameters of the charging station 103. The server 101 can send the generated positioning decision information and status decision information of the charging station 103 to the user terminal 102. The user can obtain the positioning decision information and status decision information generated by the server 101 through the user terminal 102 to learn the location and operating status of the charging station 103. The user terminal 102 can be, but is not limited to, various personal computers, laptops, smartphones, tablet computers, Internet of Things devices, and portable wearable devices. The portable wearable devices can be smart watches, smart bracelets, head-mounted devices, etc. The server 101 can be implemented as a standalone server or a server cluster consisting of multiple servers.
[0041] In an exemplary embodiment, please refer to Figure 2 and Figure 3 , provides a near-field sensing positioning and status monitoring method based on charging piles, which is applied to Figure 2 The server 101 in the example is used as an example to illustrate the process, including the following steps S301 to S304.
[0042] Step S301: Acquire the near-field sensing communication tag information of the charging pile.
[0043] Specifically, the server 101 may respond to the charging pile status query instruction issued by the user terminal 102 , obtain the near-field sensing communication tag information of the charging station 103 through the charging station control platform 104 , and send the near-field sensing communication tag information to the user terminal 102 .
[0044] Illustratively, the near-field sensing communication tag information of the charging pile 103 can be used to implement near-field sensing communication between the charging pile 103 and the charging station control platform 104 , the user terminal 102 and the charging object 105 .
[0045] Optionally, near field sensing communication may include, but is not limited to, Bluetooth communication, near field communication (NFC) communication, WIFI communication, ultra-wideband communication (UWB) and radio frequency communication (RFID).
[0046] Optionally, the server 101 may implement remote communication with the charging station control platform 104 and the user terminal 102 through a communication channel.
[0047] Step S302: Acquire the positioning data and occupancy status monitoring data of the charging pile based on the near-field sensing communication tag information.
[0048] Specifically, the server 101 can obtain the positioning data and occupancy status monitoring data of the charging pile 103 from the charging pile location management database and the charging pile occupancy status database in the data storage system based on the near-field sensing communication tag information of the charging pile 103.
[0049] Illustratively, the occupancy status monitoring data may be used to indicate whether the charging pile is in an occupied state or in use state.
[0050] Step S303 : if the occupancy status monitoring data is available tag data, in response to obtaining the reserved occupancy request information of the charging pile, generating the reserved occupancy control information of the charging pile based on the reserved occupancy request information.
[0051] Specifically, if the occupancy status monitoring data is available tag data, the server 101 can send a charging pile available prompt information to the user terminal 102. The server 101 can respond to the user terminal 102 to generate the charging pile 103 reservation occupancy request information based on the charging pile available prompt information and send it to the server 101, and can generate the charging pile 103 reservation occupancy control information based on the reservation occupancy request information.
[0052] Step S304: Generate navigation control information of the charging pile according to the reservation occupancy control information and the positioning data.
[0053] Exemplarily, the server 101 can obtain the positioning data of the charging pile 103 mapped by the near-field sensing communication tag information corresponding to the reservation occupancy control information from the charging pile location management database in the data storage system based on the reservation occupancy control information. The server can combine the positioning data of the charging pile 103 with the location information of the user terminal 102 in the reservation occupancy control information to generate navigation control information of the charging pile 103.
[0054] Illustratively, the navigation control information may be used to indicate the location of the charging station reserved by the user.
[0055] Furthermore, the server 101 may calculate the distance between the user terminal 102 and the charging pile 103 based on the location information of the user terminal 102 and the positioning data of the charging pile 103 , and match the user's optimal departure time in combination with the reservation time information in the reservation occupancy control information.
[0056] The aforementioned near-field sensing positioning and status monitoring method based on charging piles, by acquiring the near-field sensing communication tag information of the charging piles and combining it with positioning technology and status monitoring algorithms, can obtain the charging pile's positioning data and occupancy status monitoring data in real time. This enables convenient and accurate charging pile search and use on the user side, and improves charging data security. By real-time monitoring of the charging pile's occupancy status and integrating reservation and navigation functions to generate reservation occupancy control information and navigation control information, it can provide users with a more efficient and convenient charging experience, solving problems such as the inconvenience of finding and unclear status of traditional charging piles, reducing user waiting and search time, and improving user satisfaction. By collecting the near-field sensing communication tag information and usage data of the charging piles and applying data mining and intelligent algorithms, it can realize the intelligent scheduling and operation and maintenance management of charging pile resources by the operator. This solves the problems of untimely status monitoring, unreasonable resource allocation, and low operation and maintenance efficiency under the traditional operation model, reduces operating costs, improves overall efficiency, and helps operators make intelligent decisions and optimize resource allocation.
[0057] Furthermore, by simplifying the control program and control process of the charging pile positioning machine detection, the functions required by the user terminal can be realized based on the WeChat applet, which can save the computing resources of the user terminal, reduce the system limitations of the user terminal, and facilitate the operation, maintenance and promotion of charging pile positioning and status monitoring.
[0058] In an optional embodiment of the present application, please refer to Figure 4 The near-field sensing positioning and status monitoring method based on the charging pile also includes:
[0059] Step S404: acquiring user-controlled near-field sensing pairing information of the charging pile and charging target near-field sensing pairing information based on the reservation occupancy control information.
[0060] Illustratively, the user-controlled near-field sensing pairing information may be used to represent the pairing status of the charging pile and the user's near-field sensing device.
[0061] Furthermore, the charging object near-field sensing pairing information may be used to represent the pairing status of the near-field sensing device between the charging pile and the charging object.
[0062] Step S405: If the charging object near-field sensing pairing information is connected tag data, obtain the working status monitoring data of the charging pile according to the near-field sensing communication tag information, and generate working status monitoring user feedback report information based on the working status monitoring data.
[0063] Illustratively, the working status monitoring user feedback report information can be used to display the working status data of the charging pile to the user.
[0064] Step S406: If the user controls the near field sensing pairing information to be unconnected tag data, obtain the working status monitoring report of the charging pile based on the near field sensing communication tag information, and send the charging working status monitoring prompt information corresponding to the working status monitoring report to the user.
[0065] In an optional embodiment of the present application, please refer to Figure 4 and Figure 5 , generating navigation control information of the charging pile based on the reservation occupancy control information and positioning data, including:
[0066] Step S407: If the user controls the near field sensing pairing information to be unconnected tag data, map navigation information of the charging pile is generated based on the near field sensing communication tag information.
[0067] Illustratively, the map navigation information can be used to display the map location of the charging pile mapped by the near-field sensing communication tag information corresponding to the reservation occupancy control information in the map software of the user terminal.
[0068] Step S408: If the user controls the near-field sensing pairing information to be connection success prompt tag data, the charging pile location prompt control information is generated based on the near-field sensing communication tag information.
[0069] Illustratively, the location prompt control information is used to prompt, in the charging station, the specific location of the charging pile mapped by the near-field sensing communication tag information corresponding to the reservation occupancy control information.
[0070] For example, Figure 5 As shown, if the user controls the near-field sensing pairing information to be connection successful prompt tag data, the server can generate the location prompt control information of the charging pile based on the near-field sensing communication tag information, and can control the charging pile that is successfully connected to the user terminal device through the charging station control platform according to the location prompt control information to provide specific location enhancement prompts.
[0071] Optionally, the specific location enhancement prompt may include, but is not limited to, an optical specific location enhancement prompt and an acoustic specific location enhancement prompt.
[0072] In an optional embodiment of the present application, the working status monitoring report includes a working status change prompt report and a working status parameter abnormality report. If the user controls the near-field sensing pairing information to be unconnected tag data, the working status monitoring report of the charging pile obtained based on the near-field sensing communication tag information may include:
[0073] If the user controls the near-field sensing pairing information to be unconnected tag data, the working state mode information and working state parameter information of the charging pile are obtained based on the near-field sensing communication tag information.
[0074] The consistency of the working status mode information is determined according to the preset determination cycle. If the working status mode information changes, a working status change prompt report is generated.
[0075] If the working state parameter information meets the preset abnormality determination condition, abnormal working state parameter information in the working state parameter information is identified, and a working state parameter abnormality report is generated based on the abnormal working state parameter information.
[0076] In an optional embodiment of the present application, the working state mode information includes device available state mode information, device occupied state mode information, charging continuous state mode information and charging end state mode information.
[0077] In an optional embodiment of the present application, the working status parameter information includes charging pile output power parameter information.
[0078] In an optional embodiment of the present application, the near field sensing communication tag information is Bluetooth device address information.
[0079] Schematically, the charging station control platform can be used to manage the Bluetooth mesh network built based on the Bluetooth devices of each charging pile.
[0080] In an exemplary embodiment of the present application, Figure 4 As shown, the near-field sensing positioning and status monitoring method based on the charging pile includes:
[0081] Step S401: Acquire the near-field sensing communication tag information of the charging pile.
[0082] Step S402: Acquire the positioning data and occupancy status monitoring data of the charging pile based on the near-field sensing communication tag information.
[0083] Step S403 : if the occupancy status monitoring data is available tag data, in response to obtaining the reserved occupancy request information of the charging pile, generating the reserved occupancy control information of the charging pile based on the reserved occupancy request information.
[0084] Step S404: acquiring user-controlled near-field sensing pairing information of the charging pile and charging target near-field sensing pairing information based on the reservation occupancy control information.
[0085] Step S405: If the charging object near-field sensing pairing information is connected tag data, obtain the working status monitoring data of the charging pile according to the near-field sensing communication tag information, and generate working status monitoring user feedback report information based on the working status monitoring data.
[0086] Step S406: If the user controls the near field sensing pairing information to be unconnected tag data, obtain the working status monitoring report of the charging pile based on the near field sensing communication tag information, and send the charging working status monitoring prompt information corresponding to the working status monitoring report to the user.
[0087] Step S407: If the user controls the near field sensing pairing information to be unconnected tag data, map navigation information of the charging pile is generated based on the near field sensing communication tag information.
[0088] Step S408: If the user controls the near-field sensing pairing information to be connection success prompt tag data, the charging pile location prompt control information is generated based on the near-field sensing communication tag information.
[0089] In the above-mentioned near-field sensing positioning and status monitoring method based on charging piles, by obtaining the near-field sensing communication tag information of the charging piles, combined with positioning technology and status monitoring algorithm, the positioning data and occupancy status monitoring data of the charging piles can be obtained in real time, allowing users to easily view the location information and real-time usage status of surrounding charging piles; by generating detailed reservation information and navigation guidance, it can ensure that users can smoothly use the reserved charging piles, avoid the impact of charging piles being occupied or charging pile failures on user charging, and enhance user trust and satisfaction with charging facilities.
[0090] It should be understood that, although the various steps in the flowcharts involved in the various embodiments described above are displayed in sequence according to the instructions of the arrows, these steps are not necessarily executed in sequence in the order indicated by the arrows. Unless otherwise specified herein, there is no strict order restriction on the execution of these steps, and these steps can be executed in other orders. Moreover, at least a portion of the steps in the flowcharts involved in the various embodiments described above can include multiple steps or multiple stages, and these steps or stages are not necessarily executed and completed at the same time, but can be executed at different times, and the execution order of these steps or stages is not necessarily to be carried out in sequence, but can be executed in turn or alternately with other steps or at least a portion of steps or stages in other steps.
[0091] Based on the same inventive concept, the embodiments of the present application also provide a near-field sensing positioning and status monitoring device based on a charging pile for implementing the above-mentioned near-field sensing positioning and status monitoring method based on a charging pile. The implementation solution provided by the device is similar to the implementation solution described in the above-mentioned method. Therefore, the specific limitations in the embodiments of one or more near-field sensing positioning and status monitoring devices based on a charging pile provided below can be referred to the limitations of the near-field sensing positioning and status monitoring method based on a charging pile above, and will not be repeated here.
[0092] In an exemplary embodiment, Figure 6 As shown, a near-field sensing positioning and status monitoring device 600 based on a charging pile is provided, comprising:
[0093] The communication tag acquisition module 601 can be used to obtain the near-field sensing communication tag information of the charging pile.
[0094] The device status identification module 602 can be used to obtain the positioning data and occupancy status monitoring data of the charging pile based on the near-field sensing communication tag information. The occupancy status monitoring data is used to indicate whether the charging pile is in an occupied state or in use state.
[0095] The reservation occupancy control module 603 may be configured to generate reservation occupancy control information of the charging pile based on the reservation occupancy request information in response to obtaining the reservation occupancy request information of the charging pile if the occupancy status monitoring data is available tag data.
[0096] The navigation and positioning control module 604 may be configured to generate navigation control information of the charging pile according to the reservation occupancy control information and the positioning data. The navigation control information is configured to indicate the location of the charging pile reserved by the user.
[0097] In an optional embodiment of the present application, the near-field sensing positioning and status monitoring device 600 based on the charging pile can also be used for:
[0098] Based on the reservation occupancy control information, the user-controlled near-field perception pairing information of the charging pile and the charging object near-field perception pairing information are obtained. The user-controlled near-field perception pairing information is used to characterize the pairing status of the near-field perception device between the charging pile and the user, and the charging object near-field perception pairing information is used to characterize the pairing status of the near-field perception device between the charging pile and the charging object.
[0099] If the near-field sensing pairing information of the charging object is connected tag data, the working status monitoring data of the charging pile is obtained according to the near-field sensing communication tag information, and the working status monitoring user feedback report information is generated based on the working status monitoring data. The working status monitoring user feedback report information is used to display the working status data of the charging pile to the user.
[0100] If the user controls the near-field sensing pairing information to be unconnected tag data, the working status monitoring report of the charging pile is obtained based on the near-field sensing communication tag information, and the charging working status monitoring prompt information corresponding to the working status monitoring report is sent to the user.
[0101] In an optional embodiment of the present application, the navigation and positioning control module 604 may also be used to:
[0102] If the user controls the near-field sensing pairing information to be unconnected tag data, the map navigation information of the charging pile is generated based on the near-field sensing communication tag information. The map navigation information is used to display the map location of the charging pile mapped by the near-field sensing communication tag information corresponding to the reservation occupancy control information in the map software of the user terminal.
[0103] If the user controls the near-field sensing pairing information to be connection successful prompt tag data, the location prompt control information of the charging pile is generated based on the near-field sensing communication tag information. The location prompt control information is used to prompt the specific location of the charging pile mapped by the near-field sensing communication tag information corresponding to the reservation occupancy control information in the charging station.
[0104] In an optional embodiment of the present application, the near-field sensing positioning and status monitoring device 600 based on the charging pile can also be used for:
[0105] If the user controls the near-field sensing pairing information to be unconnected tag data, the working state mode information and working state parameter information of the charging pile are obtained based on the near-field sensing communication tag information.
[0106] The consistency of the working status mode information is determined according to the preset determination cycle. If the working status mode information changes, a working status change prompt report is generated.
[0107] If the working state parameter information meets the preset abnormality determination condition, abnormal working state parameter information in the working state parameter information is identified, and a working state parameter abnormality report is generated based on the abnormal working state parameter information.
[0108] In one embodiment, a computer device is provided, including a memory and a processor, wherein the memory stores a computer program, and when the processor executes the computer program, the steps of the near-field sensing positioning and status monitoring method based on a charging pile as described above are implemented.
[0109] In one embodiment, a computer-readable storage medium is provided, on which a computer program is stored. When the computer program is executed by a processor, the steps in the above-mentioned method embodiments are implemented.
[0110] For the device embodiments, since they basically correspond to the method embodiments, the relevant parts can be referred to the partial description of the method embodiments. The device embodiments described above are merely illustrative, wherein the components described as separate parts may or may not be physically separated, and the parts displayed as units may or may not be physical units, that is, they may be located in one place, or they may be distributed on multiple network units. Some or all of the modules can be selected according to actual needs to achieve the purpose of the disclosed solution. A person of ordinary skill in the art can understand and implement it without expending creative work.
[0111] The above-described embodiments merely represent several implementation methods of the embodiments of the present application. While the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the patent application. It should be noted that a person skilled in the art may make various modifications and improvements without departing from the concept of the embodiments of the present application, and these modifications and improvements fall within the scope of protection of the embodiments of the present application.
Claims
1. A near-field sensing positioning and status monitoring method based on a charging pile, characterized in that: The method comprises: Obtaining near-field sensing communication tag information of the charging pile; Acquiring positioning data and occupancy status monitoring data of the charging pile based on the near-field sensing communication tag information, wherein the occupancy status monitoring data is used to indicate whether the charging pile is in an occupied state or in use state; If the occupancy status monitoring data is available tag data, in response to obtaining reservation occupancy request information of the charging pile, generating reservation occupancy control information of the charging pile based on the reservation occupancy request information; Navigation control information of the charging pile is generated according to the reservation occupancy control information and the positioning data, and the navigation control information is used to indicate the location of the charging pile reserved by the user.
2. The method according to claim 1, characterized in that The method further comprises: Acquire user-controlled near-field sensing pairing information and charging object near-field sensing pairing information of the charging pile based on the reservation occupancy control information, wherein the user-controlled near-field sensing pairing information is used to represent the pairing status of the near-field sensing device between the charging pile and the user, and the charging object near-field sensing pairing information is used to represent the pairing status of the near-field sensing device between the charging pile and the charging object; If the charging object near-field sensing pairing information is connected tag data, obtaining the working status monitoring data of the charging pile according to the near-field sensing communication tag information, and generating working status monitoring user feedback report information based on the working status monitoring data, wherein the working status monitoring user feedback report information is used to display the working status data of the charging pile to the user; If the user-controlled near-field sensing pairing information is unconnected tag data, the working status monitoring report of the charging pile is obtained based on the near-field sensing communication tag information, and charging working status monitoring prompt information corresponding to the working status monitoring report is sent to the user.
3. The method according to claim 2, characterized in that The generating of navigation control information of the charging pile according to the reservation occupancy control information and the positioning data includes: If the user-controlled near-field sensing pairing information is unconnected tag data, generating map navigation information of the charging pile based on the near-field sensing communication tag information, the map navigation information being used to display the map location of the charging pile mapped by the near-field sensing communication tag information corresponding to the reservation occupancy control information in the map software of the user terminal; If the user-controlled near-field perception pairing information is connection success prompt tag data, the location prompt control information of the charging pile is generated based on the near-field perception communication tag information, and the location prompt control information is used to prompt the specific location of the charging pile mapped by the near-field perception communication tag information corresponding to the reservation occupancy control information in the charging station.
4. The method according to claim 2, characterized in that The working status monitoring report includes a working status change prompt report and a working status parameter abnormality report. If the user-controlled near-field sensing pairing information is unconnected tag data, obtaining the working status monitoring report of the charging pile based on the near-field sensing communication tag information includes: If the user-controlled near-field sensing pairing information is unconnected tag data, obtaining the working state mode information and working state parameter information of the charging pile based on the near-field sensing communication tag information; Performing consistency determination on the working state mode information according to a preset determination period, and generating a working state change prompt report if the working state mode information changes; If the working state parameter information meets the preset abnormality determination condition, abnormal working state parameter information in the working state parameter information is identified, and the working state parameter abnormality report is generated based on the abnormal working state parameter information.
5. The method according to claim 4, characterized in that The working state mode information includes device available state mode information, device occupied state mode information, charging continuous state mode information and charging completed state mode information.
6. The method according to claim 4, characterized in that The working status parameter information includes charging pile output power parameter information.
7. The method according to any one of claims 1 to 6, characterized in that The near field sensing communication tag information is Bluetooth device address information.
8. A near-field sensing positioning and status monitoring device based on a charging pile, characterized in that: The device comprises: A communication tag acquisition module, configured to acquire the near-field sensing communication tag information of the charging pile; A device status identification module, configured to obtain positioning data and occupancy status monitoring data of the charging pile based on the near-field sensing communication tag information, wherein the occupancy status monitoring data is used to indicate whether the charging pile is occupied or in use; a reservation occupancy control module configured to generate reservation occupancy control information of the charging pile based on the reservation occupancy request information in response to obtaining the reservation occupancy request information of the charging pile if the occupancy status monitoring data is available tag data; The navigation and positioning control module is used to generate navigation control information of the charging pile according to the reservation occupancy control information and the positioning data, wherein the navigation control information is used to indicate the location of the charging pile reserved by the user.
9. A computer device comprising a memory and a processor, wherein the memory stores a computer program, wherein: When the processor executes the computer program, the method according to any one of claims 1 to 7 is implemented.
10. A computer-readable storage medium having a computer program stored thereon, characterized in that: When the computer program is executed by a processor, the method according to any one of claims 1 to 7 is implemented.