New energy charging method based on bluetooth beacon and related device thereof
By automatically matching the charging station identifier and triggering charging through Bluetooth beacon technology, the problem of cumbersome charging process for new energy vehicles is solved, and convenient and efficient charging operation is achieved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- ZHEJIANG HAOHAN ENERGY TECH CO LTD
- Filing Date
- 2022-06-15
- Publication Date
- 2026-04-21
AI Technical Summary
The current charging process for new energy vehicles is cumbersome, requiring users to interact with charging stations multiple times, which makes charging inconvenient, especially when charging frequently, which can easily lead to queuing.
Using Bluetooth beacon technology, the client receives the Bluetooth beacon identifier and matches it with a unique charging station identifier. After verification by the server, charging is automatically triggered and fee information is fed back. Users only need to plug and unplug the charging gun to complete the charging operation.
It simplifies the charging process, improves the convenience of charging new energy vehicles, avoids charging queues, improves charging efficiency, and saves users' operation time.
Smart Images

Figure CN114987251B_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of gate detection technology, and in particular to a new energy charging method, system, device and storage medium based on Bluetooth beacons. Background Technology
[0002] With the development of new energy vehicles, there will be a great demand for charging new energy vehicles. The current charging process for new energy vehicles is generally as follows: The car owner (user) removes the charging gun from the charging pile and inserts it into the vehicle's charging port. After insertion, the car owner selects the charging operation on the charging pile (or charging gun) screen, generating charging amount information. The charging pile sends the charging amount information to the server. The server generates a payment order based on the charging amount information and returns it to the charging pile screen. The user scans the payment QR code displayed on the charging pile screen to complete the payment operation. The charging pile then sends a payment success message to the server. The server sends a charging instruction to the charging pile based on the payment result. The charging pile begins charging the vehicle. When charging is complete, the car owner (user) unplugs the charging gun to finish charging.
[0003] The above charging process has the problem of being cumbersome. In other words, in addition to plugging and unplugging the charging gun, users have to interact with the charging station twice (including selecting the charging level and paying for the charging order on the charging station screen). In high-frequency situations, charging queues may occur.
[0004] In other words, existing technologies for new energy vehicles suffer from complex and inconvenient charging processes. Summary of the Invention
[0005] In view of this, embodiments of this application provide a new energy charging method, system, device and storage medium based on Bluetooth beacons, aiming to improve the convenience of new energy vehicles and solve the technical problems of complex and inconvenient charging processes in the prior art.
[0006] This application provides a new energy charging method based on Bluetooth beacons, applied to a client, the method comprising:
[0007] Receive the Bluetooth beacon identifier broadcast by the Bluetooth beacon and determine the first charging pile identifier that uniquely matches the Bluetooth beacon identifier;
[0008] Send the preset user information and the first charging pile identifier to the server used for charging services;
[0009] If the client meets the preset charging conditions, it receives the charging fee association information fed back by the server.
[0010] The server receives a charging instruction from the charging pile containing the second charging pile identifier. Based on the charging instruction, if it is determined that the first charging pile identifier and the second charging pile identifier are consistent, the server triggers the charging pile to charge the vehicle corresponding to the client. If it is detected that the charging pile has finished charging, the server generates and feeds back the charging fee association information to the client.
[0011] In one possible embodiment of this application, the step of determining a first charging pile identifier that uniquely matches the Bluetooth beacon identifier includes:
[0012] Receive the first charging pile identifier that uniquely matches the Bluetooth beacon identifier pushed by the backend configuration terminal;
[0013] Alternatively, the first charging pile identifier that uniquely matches the Bluetooth beacon identifier can be retrieved from the backend configuration terminal.
[0014] In one possible implementation of this application, the step of receiving charging fee association information from the server if the client meets preset charging conditions includes:
[0015] If the client meets the preset charging conditions, it receives the charging order from the server.
[0016] If a confirmation operation to confirm the charging order is received, the charging fee association information fed back by the server is received.
[0017] The server generates a pre-charging order based on the preset user information and the first charging pile identifier, receives a charging instruction from the charging pile containing the second charging pile identifier, and if the first charging pile identifier and the second charging pile identifier in the pre-charging order are consistent, it triggers the charging pile to charge the vehicle corresponding to the client, generates the charging order based on the pre-charging order and the charging instruction, and sends the pre-charging order back to the client for confirmation. If the client confirms the completion, and if the charging pile finishes charging, the server generates and sends the charging fee association information back to the client.
[0018] In one possible implementation of this application, the Bluetooth beacon and the charging station are within a preset location range.
[0019] This application also provides a new energy charging method based on Bluetooth beacons, applied on a server side, the method comprising:
[0020] The client receives preset user information and a first charging pile identifier sent by the client, wherein the client receives a Bluetooth beacon identifier broadcast by a Bluetooth beacon and determines a first charging pile identifier that uniquely matches the Bluetooth beacon identifier;
[0021] Receive a charging instruction sent by the charging pile containing a second charging pile identifier. Based on the charging instruction, if it is determined that the first charging pile identifier and the second charging pile identifier are consistent, trigger the charging pile to charge the vehicle corresponding to the client.
[0022] If the charging station detects that charging has ended, the charging fee association information is generated and fed back to the client.
[0023] In one possible implementation of this application, the step of receiving a charging instruction containing a second charging pile identifier from a charging pile, and triggering the charging pile to charge the vehicle corresponding to the client when it is determined that the first charging pile identifier and the second charging pile identifier are consistent based on the charging instruction, includes:
[0024] A pre-charging order is generated based on the preset user information and the first charging pile identifier;
[0025] Receive a charging instruction sent by the charging pile containing the second charging pile identifier of the charging pile; if it is determined that the first charging pile identifier and the second charging pile identifier in the pre-charging order are consistent, trigger the charging pile to charge the vehicle corresponding to the client.
[0026] The step of generating and feeding back the charging fee association information to the client when the charging pile is detected to have finished charging includes:
[0027] The charging order is generated based on the pre-charging order and the charging instruction, and the pre-charging order is sent back to the client for the client to confirm.
[0028] If the client confirms completion, and if the charging pile finishes charging, the charging fee association information is generated and fed back to the client.
[0029] This application also provides a new energy charging method based on Bluetooth beacons, applied to charging piles, the method comprising:
[0030] Send a charging instruction containing the second charging pile identifier of the charging pile to the server, so that the server can determine whether the second charging pile identifier is consistent with the first charging pile identifier in the pre-charging order. The server receives preset user information and the corresponding first charging pile identifier sent by the client, and generates a pre-charging order based on the information. The first charging pile identifier is determined by the client based on the received Bluetooth beacon identifier.
[0031] If the server determines that the first charging pile identifier and the second charging pile identifier are the same, it will charge the vehicle corresponding to the client.
[0032] If a charging end command is detected, charging will stop.
[0033] This application also provides a new energy charging system based on Bluetooth beacons, the new energy charging system based on Bluetooth beacons includes the client described above, the server described above, and the charging pile described above.
[0034] The Bluetooth beacon-based new energy charging system also includes a backend configuration terminal, which is used for:
[0035] The first charging station identifier that uniquely matches the Bluetooth beacon identifier is pushed to the client.
[0036] Alternatively, when a pull command is detected from the client to actively pull the first charging pile identifier that uniquely matches the Bluetooth beacon identifier, the first charging pile identifier is fed back to the client.
[0037] This application also provides a new energy charging device based on Bluetooth beacons. The new energy charging device based on Bluetooth beacons is a physical node device. The new energy charging device based on Bluetooth beacons includes: a memory, a processor, and a program of the new energy charging method based on Bluetooth beacons stored in the memory and executable on the processor. When the program of the new energy charging method based on Bluetooth beacons is executed by the processor, it can implement the steps of the new energy charging method based on Bluetooth beacons as described above.
[0038] To achieve the above objectives, a storage medium is also provided, on which a new energy charging program based on Bluetooth beacons is stored. When the new energy charging program based on Bluetooth beacons is executed by a processor, it implements the steps of any of the above-described new energy charging methods based on Bluetooth beacons.
[0039] This application provides a new energy vehicle charging method, system, device, and storage medium based on Bluetooth beacons. Compared with existing methods that require users to interact with the charging pile twice in addition to plugging and unplugging the charging gun, making charging inconvenient, this application receives a Bluetooth beacon identifier broadcast by a Bluetooth beacon and determines a first charging pile identifier that uniquely matches the Bluetooth beacon identifier; sends preset user information and the first charging pile identifier to a server for charging services; if the client meets preset charging conditions, it receives charging fee association information fed back by the server; wherein, the server receives a charging instruction sent by the charging pile containing a second charging pile identifier of the charging pile; based on the charging instruction, if it is determined that the first charging pile identifier and the second charging pile identifier are consistent, the charging pile is triggered to charge the vehicle corresponding to the client; and if it is detected that the charging pile has finished charging, the charging fee association information is generated and fed back to the client. In this application, as long as the user is within the range of the Bluetooth beacon, they can receive the Bluetooth beacon identifier broadcast by the Bluetooth beacon. Since the Bluetooth beacon is bound to the corresponding charging pile, the client does not need user operation to determine the first charging pile identifier that uniquely matches the Bluetooth beacon identifier. Furthermore, the client can send preset user information and the first charging pile identifier to the server for charging services without the user's awareness. If the server determines that the first charging pile identifier and the second charging pile identifier sent by the charging pile are consistent, it can trigger the charging pile to charge the client's corresponding vehicle. The client then receives the charging fee association information fed back by the server. That is, in this application, the user only needs to plug and unplug the charging gun to complete the charging operation of the new energy vehicle, which improves the charging convenience of the new energy vehicle. Attached Figure Description
[0040] Figure 1 This is a flowchart illustrating the first embodiment of the new energy charging method based on Bluetooth beacons in this application;
[0041] Figure 2 This is a detailed flowchart of step S10 in the first embodiment of the new energy charging method based on Bluetooth beacons in this application;
[0042] Figure 3 This is a schematic diagram of the device structure of the hardware operating environment involved in the embodiments of this application;
[0043] Figure 4 This is a schematic diagram illustrating the scenario involved in the embodiments of this application;
[0044] Figure 5 This is a schematic diagram of the overall process involved in the embodiments of this application. Detailed Implementation
[0045] It should be understood that the specific embodiments described herein are merely illustrative of this application and are not intended to limit this application.
[0046] This application provides a new energy charging method based on Bluetooth beacons. In one embodiment of this new energy charging method based on Bluetooth beacons, it is applied to a client, as shown below. Figure 1 The method includes:
[0047] Step S10: Receive the Bluetooth beacon identifier broadcast by the Bluetooth beacon and determine the first charging pile identifier that uniquely matches the Bluetooth beacon identifier;
[0048] Step S20: Send the preset user information and the first charging pile identifier to the server for charging services;
[0049] Step S30: If the client meets the preset charging conditions, it receives the charging fee association information fed back by the server.
[0050] The server receives a charging instruction from the charging pile containing the second charging pile identifier. Based on the charging instruction, if it is determined that the first charging pile identifier and the second charging pile identifier are consistent, the server triggers the charging pile to charge the vehicle corresponding to the client. If it is detected that the charging pile has finished charging, the server generates and feeds back the charging fee association information to the client.
[0051] This embodiment aims to improve the convenience of charging new energy sources based on Bluetooth beacons.
[0052] Specifically, in this application, as long as the user is within the range of the Bluetooth beacon, they can receive the Bluetooth beacon identifier broadcast by the Bluetooth beacon. Since the Bluetooth beacon is bound to the corresponding charging pile, the client does not need user operation to determine the first charging pile identifier that uniquely matches the Bluetooth beacon identifier. Furthermore, the client can send preset user information and the first charging pile identifier to the server for charging services without the user's awareness. If the server determines that the first charging pile identifier and the second charging pile identifier sent by the charging pile are consistent, it can trigger the charging pile to charge the client's corresponding vehicle. The client then receives the charging fee association information fed back by the server. That is, in this application, the user only needs to plug and unplug the charging gun to complete the charging operation of the new energy vehicle, improving the charging convenience of the new energy vehicle.
[0053] Furthermore, in this application, the server generates a pre-charging order based on the preset user information sent by the client and the first charging pile identifier. Based on the generated pre-charging order, it determines whether the first charging pile identifier in the pre-charging order is consistent with the second charging pile identifier sent by the charging pile, and determines whether to trigger the charging pile to charge the vehicle corresponding to the client. Since charging is triggered when a pre-charging order is generated, rather than when a charging order is generated, charging queuing is avoided and charging efficiency is improved.
[0054] Furthermore, in this application, the Bluetooth beacon and the charging station are within a preset location range, thus avoiding situations where the Bluetooth beacon and the charging station are too far apart, making it difficult to match, or where the Bluetooth beacon matches other charging stations, causing chaotic charging.
[0055] Furthermore, in this application, the first charging pile identifier that uniquely matches the Bluetooth beacon identifier can be determined by either pulling or server pushing. Since the user does not need to participate in the process of the client actively pulling the first charging pile identifier or passively pushing the first charging pile identifier, the charging process is saved and the charging efficiency is improved.
[0056] The specific steps are as follows:
[0057] Step S10: Receive the Bluetooth beacon identifier broadcast by the Bluetooth beacon and determine the first charging pile identifier that uniquely matches the Bluetooth beacon identifier;
[0058] It should be noted that the Bluetooth beacon is an external device for the client (mobile phone) application. Its working principle is to send a unique Bluetooth beacon ID to the surrounding area via Bluetooth Low Energy. The application software on the client can receive and parse the Bluetooth beacon ID. Based on this, the Bluetooth beacon can push indoor location information to the client. It should be noted that the Bluetooth beacon itself does not have the function of collecting data and will not steal the client user's identity information, but it has the function of locating the mobile phone and pushing information.
[0059] Compared to traditional GPS positioning, Bluetooth beacons offer advantages such as low power consumption, accurate positioning, and ease of indoor use. They also possess both the "message" function (transmitting information) and the "beacon" function (marking location). Furthermore, because Bluetooth beacons can continuously transmit signals, once a client enters the beacon's signal range, an automatic response mechanism is established, enabling information reception without requiring any manual user intervention.
[0060] As an example, the Bluetooth beacon continuously broadcasts to the signal coverage area. After receiving the Bluetooth beacon broadcast, the client extracts the Bluetooth beacon identifier from the broadcast and determines the first charging pile identifier that uniquely matches the Bluetooth beacon identifier.
[0061] It should be noted that the client determines the first charging pile identifier that uniquely matches the Bluetooth beacon identifier from the backend configuration terminal by communicating with the backend configuration terminal.
[0062] The configuration personnel first configure the relationship between the Bluetooth beacon and the charging station, and then store the configuration in the background.
[0063] It should be noted that the relationship between Bluetooth beacons and charging stations is a unique mapping.
[0064] In other words, one Bluetooth beacon corresponds to one charging station, rather than multiple Bluetooth beacons corresponding to multiple charging stations, or one Bluetooth beacon corresponding to multiple charging stations.
[0065] As an example, the communication relationships between the server, client, charging station, and backend configuration are as follows: Figure 5 As shown in the diagram. The Bluetooth beacon and the charging station are within a preset location range; specifically, the Bluetooth beacon can be attached to the charging station.
[0066] like Figure 2 As shown, the step of determining the first charging pile identifier that uniquely matches the Bluetooth beacon identifier includes:
[0067] Step S11: Receive the first charging pile identifier that uniquely matches the Bluetooth beacon identifier pushed by the background configuration terminal;
[0068] In this embodiment, it should be noted that the client can passively receive the first charging pile identifier that uniquely matches the Bluetooth beacon identifier pushed by the background configuration terminal. The background configuration terminal is equipped with a push program segment, which pushes the first charging pile identifier that uniquely matches the Bluetooth beacon identifier to the client when it detects that the Bluetooth beacon identifier has been received by the client.
[0069] When the Bluetooth beacon detects that its identifier has been received by the client, it notifies the backend configuration terminal of the received information.
[0070] Alternatively, in step S12, the first charging pile identifier that uniquely matches the Bluetooth beacon identifier is actively retrieved from the background configuration terminal.
[0071] In this embodiment, the client can actively retrieve the first charging pile identifier that uniquely matches the Bluetooth beacon identifier from the background configuration terminal. During this process, the user may be unaware of it or may be aware of it.
[0072] The specific process by which the user is unaware of retrieving the first charging pile identifier that uniquely matches the Bluetooth beacon identifier from the backend configuration terminal can be as follows:
[0073] The client has a preset fetch program segment. After receiving the Bluetooth beacon identifier, the preset fetch program segment directly fetches the first charging pile identifier that uniquely matches the Bluetooth beacon identifier from the background configuration terminal.
[0074] The specific process by which the user perceives the retrieval of the first charging pile identifier, which uniquely matches the Bluetooth beacon identifier, from the backend configuration terminal can be as follows:
[0075] After detecting the Bluetooth beacon identifier, the client displays it on the client application interface. Then, if a user's pull command is detected, the client pulls the first charging pile identifier that uniquely matches the Bluetooth beacon identifier from the background configuration terminal.
[0076] Step S20: Send the preset user information and the first charging pile identifier to the server for charging services;
[0077] In this embodiment, the client sends the preset user information and the first charging pile identifier to the server for charging services, or the client sends the preset user information and the first charging pile identifier together to the server for charging services.
[0078] The user information includes at least the user's unique identifier.
[0079] Step S30: If the client meets the preset charging conditions, it receives the charging fee association information fed back by the server.
[0080] The server receives a charging instruction from the charging pile containing the second charging pile identifier. Based on the charging instruction, if it is determined that the first charging pile identifier and the second charging pile identifier are consistent, the server triggers the charging pile to charge the vehicle corresponding to the client. If it is detected that the charging pile has finished charging, the server generates and feeds back the charging fee association information to the client.
[0081] In this embodiment, the preset charging condition can be that the charging rights points of the new energy vehicle's corresponding client are greater than preset points or the charging amount of the new energy vehicle's corresponding client is greater than preset amount.
[0082] In this embodiment, the server verifies whether the client's charging rights points or charging amount are sufficient for charging.
[0083] After the charging pile finishes charging the new energy vehicle, the client will receive charging fee association information fed back by the server. The server receives a charging instruction sent by the charging pile, which includes the second charging pile identifier of the charging pile. Based on the charging instruction, if it is determined that the first charging pile identifier and the second charging pile identifier are consistent, the server will trigger the charging pile to charge the vehicle corresponding to the client. If it is detected that the charging pile has finished charging, the server will generate and feed back the charging fee association information to the client.
[0084] If the client meets the preset charging conditions, it receives the charging fee association information fed back by the server. The server receives a charging instruction sent by the charging pile containing the second charging pile identifier of the charging pile. Based on the charging instruction, if it is determined that the first charging pile identifier and the second charging pile identifier are consistent, the server issues an instruction to the charging pile. Then the charging pile charges the vehicle corresponding to the client. If the server detects that the charging pile has finished charging, it generates and feeds back the charging fee association information to the client.
[0085] As an example, such as Figure 4 As shown, when a user drives into a charging space, the mobile client scans the Bluetooth beacon signal and obtains the charging pile information according to the configuration relationship. The mobile client sends information including at least the user's identifier and the charging pile information to the server. The server verifies whether a pre-charging order can be generated based on the user's charging rights information. If the charging rights are insufficient, the user is prompted to recharge; if the rights are sufficient, a pre-charging order is generated. The user inserts the charging gun (from the charging pile) into the new energy vehicle's charging port. At this time, the charging pile sends a charging instruction containing at least the charging pile information to the server. The server matches the charging pile information in the pre-charging order to generate a charging order. After charging is accepted, the server completes the rights deduction and the charging is finished.
[0086] This application provides a new energy vehicle charging method, system, device, and storage medium based on Bluetooth beacons. Compared with existing methods that require users to interact with the charging pile twice in addition to plugging and unplugging the charging gun, making charging inconvenient, this application receives a Bluetooth beacon identifier broadcast by a Bluetooth beacon and determines a first charging pile identifier that uniquely matches the Bluetooth beacon identifier; sends preset user information and the first charging pile identifier to a server for charging services; if the client meets preset charging conditions, it receives charging fee association information fed back by the server; wherein, the server receives a charging instruction sent by the charging pile containing a second charging pile identifier of the charging pile; based on the charging instruction, if it is determined that the first charging pile identifier and the second charging pile identifier are consistent, the charging pile is triggered to charge the vehicle corresponding to the client; and if it is detected that the charging pile has finished charging, the charging fee association information is generated and fed back to the client. In this application, as long as the user is within the range of the Bluetooth beacon, they can receive the Bluetooth beacon identifier broadcast by the Bluetooth beacon. Since the Bluetooth beacon is bound to the corresponding charging pile, the client does not need user operation to determine the first charging pile identifier that uniquely matches the Bluetooth beacon identifier. Furthermore, the client can send preset user information and the first charging pile identifier to the server for charging services without the user's awareness. If the server determines that the first charging pile identifier and the second charging pile identifier sent by the charging pile are consistent, it can trigger the charging pile to charge the client's corresponding vehicle. The client then receives the charging fee association information fed back by the server. That is, in this application, the user only needs to plug and unplug the charging gun to complete the charging operation of the new energy vehicle, which improves the charging convenience of the new energy vehicle.
[0087] Furthermore, based on the first embodiment of this application, another embodiment of this application is provided. In this embodiment, the step of receiving charging fee association information fed back by the server if the client meets the preset charging conditions includes:
[0088] Step A1: If the client meets the preset charging conditions, it receives the charging order from the server.
[0089] Step A2: If a confirmation operation to confirm the charging order is received, then the charging fee association information fed back by the server is received.
[0090] The server generates a pre-charging order based on the preset user information and the first charging pile identifier, receives a charging instruction from the charging pile containing the second charging pile identifier, and if the first charging pile identifier and the second charging pile identifier in the pre-charging order are consistent, it triggers the charging pile to charge the vehicle corresponding to the client, generates the charging order based on the pre-charging order and the charging instruction, and sends the pre-charging order back to the client for confirmation. If the client confirms the completion, and if the charging pile finishes charging, the server generates and sends the charging fee association information back to the client.
[0091] In this embodiment, the pre-charging order includes at least the user's unique identifier, charging pile information, and pre-charging order number.
[0092] The charging order must include at least the user's unique identifier, the charging station information, and the order number.
[0093] In this embodiment, charging orders are pre-generated using Bluetooth broadcast data, saving users' waiting time. Furthermore, Bluetooth beacons have low power consumption, are easy to deploy, and have controllable implementation costs.
[0094] In this embodiment, the system receives preset user information and a first charging pile identifier from the client. The client receives a Bluetooth beacon identifier broadcast by a Bluetooth beacon and identifies a first charging pile identifier that uniquely matches the Bluetooth beacon identifier. It then receives a charging command from the charging pile containing a second charging pile identifier. Based on the charging command, if the first and second charging pile identifiers match, the charging pile is triggered to charge the client's vehicle. If the charging pile finishes charging, the system generates and feeds back the charging fee association information to the client. In this embodiment, charging orders are pre-generated using Bluetooth broadcasts, saving user waiting time. Furthermore, Bluetooth beacons have low power consumption, are easy to deploy, and have controllable implementation costs.
[0095] Furthermore, based on the first and second embodiments of this application, another embodiment of this application is provided. In this embodiment, the method is applied to the server side and includes:
[0096] Step B1: Receive preset user information and a first charging pile identifier sent by the client, wherein the client receives the Bluetooth beacon identifier broadcast by the Bluetooth beacon and determines the first charging pile identifier that uniquely matches the Bluetooth beacon identifier;
[0097] Step B2: Receive a charging instruction containing a second charging pile identifier from the charging pile. Based on the charging instruction, if it is determined that the first charging pile identifier and the second charging pile identifier are consistent, trigger the charging pile to charge the vehicle corresponding to the client.
[0098] Step B3: If the charging pile is detected to have finished charging, the charging fee association information is generated and fed back to the client.
[0099] The step of receiving a charging instruction containing a second charging pile identifier from a charging pile, and, based on the charging instruction, triggering the charging pile to charge the vehicle corresponding to the client when it is determined that the first charging pile identifier and the second charging pile identifier are consistent, includes:
[0100] A pre-charging order is generated based on the preset user information and the first charging pile identifier;
[0101] Receive a charging instruction sent by the charging pile containing the second charging pile identifier of the charging pile; if it is determined that the first charging pile identifier and the second charging pile identifier in the pre-charging order are consistent, trigger the charging pile to charge the vehicle corresponding to the client.
[0102] The step of generating and feeding back the charging fee association information to the client when the charging pile is detected to have finished charging includes:
[0103] The charging order is generated based on the pre-charging order and the charging instruction, and the pre-charging order is sent back to the client for the client to confirm.
[0104] If the client confirms completion, and if the charging pile finishes charging, the charging fee association information is generated and fed back to the client.
[0105] The specific implementation method of the new energy charging method based on Bluetooth beacons in this application is basically the same as the above embodiments, and will not be repeated here.
[0106] Furthermore, based on the first, second, and third embodiments of this application, another embodiment of this application is provided, in which the method is applied to a charging pile and includes:
[0107] Send a charging instruction containing the second charging pile identifier of the charging pile to the server, so that the server can determine whether the second charging pile identifier is consistent with the first charging pile identifier in the pre-charging order. The server receives preset user information and the corresponding first charging pile identifier sent by the client, and generates a pre-charging order based on the information. The first charging pile identifier is determined by the client based on the received Bluetooth beacon identifier.
[0108] If the server determines that the first charging pile identifier and the second charging pile identifier are the same, it will charge the vehicle corresponding to the client.
[0109] If a charging end command is detected, charging will stop.
[0110] The specific implementation method of the new energy charging method based on Bluetooth beacons in this application is basically the same as the above embodiments, and will not be repeated here.
[0111] Reference Figure 3 , Figure 3 This is a schematic diagram of the device structure of the hardware operating environment involved in the embodiments of this application.
[0112] like Figure 3 As shown, the new energy charging device based on Bluetooth beacons may include: a processor 1001, a memory 1005, and a communication bus 1002. The communication bus 1002 is used to realize the connection and communication between the processor 1001 and the memory 1005.
[0113] Optionally, the Bluetooth beacon-based new energy charging device may also include a user interface, a network interface, a camera, RF (Radio Frequency) circuitry, sensors, a WiFi module, etc. The user interface may include a display screen and an input submodule such as a keyboard; optional user interfaces may also include standard wired or wireless interfaces. The network interface may include standard wired or wireless interfaces (such as a Wi-Fi interface).
[0114] Those skilled in the art will understand that Figure 3 The structure of the new energy charging device based on Bluetooth beacons shown does not constitute a limitation on the new energy charging device based on Bluetooth beacons. It may include more or fewer components than shown, or combine certain components, or have different component arrangements.
[0115] like Figure 3 As shown, the memory 1005, serving as a storage medium, may include an operating system, a network communication module, and a Bluetooth beacon-based new energy charging program. The operating system is a program that manages and controls the hardware and software resources of the Bluetooth beacon-based new energy charging device, supporting the operation of the Bluetooth beacon-based new energy charging program and other software and / or programs. The network communication module is used to enable communication between the various components within the memory 1005, as well as communication with other hardware and software in the Bluetooth beacon-based new energy charging system.
[0116] exist Figure 3In the Bluetooth beacon-based new energy charging device shown, the processor 1001 is used to execute the Bluetooth beacon-based new energy charging program stored in the memory 1005 to implement the steps of the Bluetooth beacon-based new energy charging method described above.
[0117] The specific implementation method of the new energy charging device based on Bluetooth beacons in this application is basically the same as the embodiments of the new energy charging method based on Bluetooth beacons described above, and will not be repeated here.
[0118] This application also provides a new energy charging system based on Bluetooth beacons, the new energy charging system based on Bluetooth beacons includes the client described above, the server described above, and the charging pile described above.
[0119] The Bluetooth beacon-based new energy charging system also includes a backend configuration terminal, which is used for:
[0120] The first charging station identifier that uniquely matches the Bluetooth beacon identifier is pushed to the client.
[0121] Alternatively, when a pull command is detected from the client to actively pull the first charging pile identifier that uniquely matches the Bluetooth beacon identifier, the first charging pile identifier is fed back to the client.
[0122] The specific implementation of the new energy charging system based on Bluetooth beacons in this application is basically the same as the embodiments of the new energy charging method based on Bluetooth beacons described above, and will not be repeated here.
[0123] This application provides a storage medium that stores one or more programs, which can be executed by one or more processors to implement the steps of the Bluetooth beacon-based new energy charging method described above.
[0124] The specific implementation of the storage medium in this application is basically the same as the embodiments of the new energy charging method based on Bluetooth beacons described above, and will not be repeated here.
[0125] This application also provides a computer program product, including a computer program that, when executed by a processor, implements the steps of the above-described Bluetooth beacon-based new energy charging method.
[0126] The specific implementation of the computer program product in this application is basically the same as the above-described embodiments of the new energy charging method based on Bluetooth beacons, and will not be repeated here.
[0127] It should be noted that, in this document, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Unless otherwise specified, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes that element.
[0128] The sequence numbers of the above embodiments of the present invention are for descriptive purposes only and do not represent the superiority or inferiority of the embodiments.
[0129] Through the above description of the embodiments, those skilled in the art can clearly understand that the methods of the above embodiments can be implemented by means of a software plus hardware platform, or by hardware, but in many cases the former is a better implementation. Based on this understanding, the technical solution of the present invention, or the part that contributes to the prior art, can be embodied in the form of a software product. This computer software product is stored in a storage medium (such as ROM / RAM, magnetic disk, optical disk), and includes several instructions to cause a terminal device (which may be a mobile phone, computer, server, air conditioner, or network device, etc.) to execute the methods described in the various embodiments of the present invention.
[0130] The above are merely preferred embodiments of the present invention and do not limit the scope of the patent. Any equivalent structural or procedural transformations made based on the description and drawings of the present invention, or direct or indirect applications in other related technical fields, are similarly included within the scope of patent protection of the present invention.
Claims
1. A new energy charging method based on Bluetooth beacons, characterized in that, Applied to a client, the method includes: Receive the Bluetooth beacon identifier broadcast by the Bluetooth beacon and determine the first charging pile identifier that uniquely matches the Bluetooth beacon identifier; The preset user information and the first charging pile identifier are sent to the server for charging services, so that the server can verify whether a pre-charging order can be generated based on the user's charging rights information. If the charging rights information is sufficient, a pre-charging order is generated. If the client meets the preset charging conditions, it receives the charging fee association information fed back by the server, including receiving the charging order fed back by the server if the client meets the preset charging conditions. The server receives a charging instruction from the charging pile containing the second charging pile identifier. Based on the charging instruction, if it is determined that the first charging pile identifier and the second charging pile identifier are consistent, the server triggers the charging pile to charge the vehicle corresponding to the client. The server generates a charging order based on the pre-charging order and the charging instruction, and sends the pre-charging order back to the client. If the charging pile finishes charging, the server generates and sends the charging fee association information back to the client. The server then completes the deduction of benefits and finishes the charging.
2. The new energy charging method based on Bluetooth beacons as described in claim 1, characterized in that, The step of determining the first charging pile identifier that uniquely matches the Bluetooth beacon identifier includes: Receive the first charging pile identifier that uniquely matches the Bluetooth beacon identifier pushed by the backend configuration terminal; Alternatively, the first charging pile identifier that uniquely matches the Bluetooth beacon identifier can be retrieved from the backend configuration terminal.
3. The new energy charging method based on Bluetooth beacons as described in claim 1, characterized in that, The step of receiving charging fee association information from the server if the client meets the preset charging conditions further includes: If a confirmation operation to confirm the charging order is received, the charging fee association information fed back by the server is received. The server generates a pre-charging order based on the preset user information and the first charging pile identifier, receives a charging instruction from the charging pile containing the second charging pile identifier, and if the first charging pile identifier and the second charging pile identifier in the pre-charging order are consistent, it triggers the charging pile to charge the vehicle corresponding to the client, generates the charging order based on the pre-charging order and the charging instruction, and sends the pre-charging order back to the client for confirmation. If the client confirms the completion, and if the charging pile finishes charging, the server generates and sends the charging fee association information back to the client.
4. The new energy charging method based on Bluetooth beacons as described in claim 1, characterized in that, The Bluetooth beacon and the charging station are within a preset location range.
5. A new energy charging method based on Bluetooth beacons, characterized in that, Applied to charging piles, the method includes: A charging instruction containing the second charging pile identifier of the charging pile is sent to the server, so that the server can determine whether the second charging pile identifier and the first charging pile identifier in the pre-charging order are consistent. The first charging pile identifier is a Bluetooth beacon identifier received by the client from the Bluetooth beacon broadcast and uniquely matched with the Bluetooth beacon identifier. The server receives the preset user information and the first charging pile identifier sent by the client, and verifies whether a pre-charging order can be generated based on the user's charging rights information. If the charging rights information is sufficient, the pre-charging order is generated based on the preset user information and the first charging pile identifier. If the server determines that the first charging pile identifier and the second charging pile identifier are consistent, it will charge the vehicle corresponding to the client. The server generates a charging order based on the pre-charging order and the charging instruction, and sends the pre-charging order back to the client. If a charging end command is detected, charging is stopped. This allows the server to detect when local charging has ended, generate and send charging fee information back to the client, and then deduct the required benefits to complete the charging process.
6. A new energy charging method based on Bluetooth beacons, characterized in that, Applied to the server side, the method includes: The client receives preset user information and a first charging pile identifier sent by the client, wherein the client receives a Bluetooth beacon identifier broadcast by a Bluetooth beacon and determines a first charging pile identifier that uniquely matches the Bluetooth beacon identifier; The system verifies whether a pre-charging order can be generated based on the user's charging rights information. If the charging rights information is sufficient, a pre-charging order is generated. Receive a charging instruction sent by a charging pile containing a second charging pile identifier. Based on the charging instruction, if it is determined that the first charging pile identifier and the second charging pile identifier are consistent, trigger the charging pile to charge the vehicle corresponding to the client. Generate a charging order based on the pre-charging order and the charging instruction, and feed back the pre-charging order to the client. If the charging pile is detected to have finished charging, the server generates and sends charging fee information to the client, and then completes the deduction of the user's rights to finish the charging process.
7. The new energy charging method based on Bluetooth beacons as described in claim 6, characterized in that, The step of receiving a charging instruction containing a second charging pile identifier from a charging pile, and based on the charging instruction, triggering the charging pile to charge the vehicle corresponding to the client when it is determined that the first charging pile identifier and the second charging pile identifier are consistent, includes: A pre-charging order is generated based on the preset user information and the first charging pile identifier; Receive a charging instruction sent by the charging pile containing the second charging pile identifier of the charging pile; if it is determined that the first charging pile identifier and the second charging pile identifier in the pre-charging order are consistent, trigger the charging pile to charge the vehicle corresponding to the client. The step of generating and feeding back the charging fee association information to the client when the charging pile is detected to have finished charging includes: The charging order is generated based on the pre-charging order and the charging instruction, and the pre-charging order is sent back to the client for the client to confirm. If the client confirms completion, and if the charging pile finishes charging, the charging fee association information is generated and fed back to the client.
8. A new energy charging device based on Bluetooth beacons, characterized in that, The device includes a memory, a processor, and a Bluetooth beacon-based new energy charging program stored in the memory and executable on the processor. When the processor executes the Bluetooth beacon-based new energy charging program, it implements the steps of the Bluetooth beacon-based new energy charging method according to any one of claims 1 to 7.
9. A storage medium, characterized in that, The storage medium stores a new energy charging program based on Bluetooth beacons, which, when executed by a processor, implements the steps of the new energy charging method based on Bluetooth beacons as described in any one of claims 1 to 7.
Citation Information
Patent Citations
Article utilization control method, equipment, system, article and server
CN107293057A
Automatic Plug-And-Pay With Multi-Factor Authentication For Fueling Vehicles
CN110363536A
Apparatuses and methods for managing electric vehicle charging stations based on user location
WO2022049327A1