Charging method of shared charging pile, shared charging pile system and storage medium
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-10-10
- Publication Date
- 2026-08-11
AI Technical Summary
[0005]本发明提供一种共享充电桩的充电方法、共享充电桩系统和存储介质,用以解决现有技术中应用场景操作单一、用户操作体验不佳的缺陷
[0017]本发明提供的共享充电桩的充电方法、共享充电桩系统和存储介质,共享充电桩系统包括至少一个部署于地面的无线充电单元以及与每一无线充电单元连接的总控单元;总控单元响应于充电指令向用户提示空闲状态的无线充电单元;充电指令包括本地充电指令和云端充电指令;本地充电指令由总控单元或无线充电单元触发;云端充电指令由服务器生成;根据用户的选择指令,从空闲状态的无线充电单元中确定目标无线充电单元以及充电方式;当车辆充电组件到达目标无线充电单元的充电范围时,目标无线充电单元基于充电方式为车辆充电组件进行充电。通过上述方式,本发明可以提示用户空闲状态的无线充电设备,并且提供了不同场景充电操作,可处理本地充电指令和云端充电指令;充电操作更加简便,提高了用户的使用体验和用户的满意度。
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Figure CN117360306B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of electric vehicle technology, and in particular to a charging method, a shared charging pile system, and a storage medium for a shared charging pile. Background Technology
[0002] In existing technologies, electric vehicle charging typically uses a 220V AC power interface, and the facilities providing charging services to shared electric vehicles are usually mains outlets. Users activate the outlet by scanning a QR code to pay. Users then obtain power from the outlet using rented or their own cables.
[0003] Currently, some manufacturers have proposed more efficient and faster wireless charging solutions: users only need to bring their electric vehicles equipped with wireless receivers close to the transmitter of the charging station to achieve wireless charging.
[0004] However, wireless charging services differ from wired charging services. Wired charging solutions are relatively simple, essentially consisting of a switch-controlled AC outlet. Each outlet can be equipped with a QR code for easy user selection of charging units. For some wireless solutions, the charging units are deployed on the ground, without barriers or other barriers around the parking spaces. Placing QR codes on the ground would obviously not ensure their clarity and integrity. Therefore, such technologies typically use a central control device that numbers the parking spaces. Users select the corresponding number using this device. If a central control device manages many wireless charging units, users might not have noticed the parking space number and would need to go back and forth to confirm, degrading the user experience. Summary of the Invention
[0005] This invention provides a charging method, a shared charging pile system, and a storage medium for shared charging piles, in order to solve the shortcomings of existing technologies, such as limited application scenarios and poor user experience.
[0006] This invention provides a charging method for shared charging piles, applied to a shared charging pile system. The shared charging pile system includes at least one wireless charging unit deployed on the ground and a central control unit connected to each wireless charging unit. The charging method includes: the central control unit responding to a charging command by indicating idle wireless charging units to the user; the charging command includes a local charging command and a cloud charging command; the local charging command is triggered by the central control unit or a wireless charging unit; the cloud charging command is generated by a server; the central control unit determines a target wireless charging unit and a charging method from the idle wireless charging units according to the user's selection command; when the vehicle charging component reaches the charging range of the target wireless charging unit, the target wireless charging unit charges the vehicle charging component based on the charging method.
[0007] According to a charging method for a shared charging pile provided by the present invention, the local charging instruction includes a first local charging instruction; the central control unit responds to the charging instruction by generating the first local charging instruction based on the interaction information between the user and the display screen of the central control unit.
[0008] According to a charging method for a shared charging pile provided by the present invention, the local charging instruction includes a second local charging instruction; the central control unit responds to the charging instruction by: receiving connection information that enables electrical connection between the vehicle charging component and the wireless charging unit, and generating the second local charging instruction based on the connection information.
[0009] According to a charging method for a shared charging pile provided by the present invention, before the central control unit responds to a charging command, the method includes: the central control unit receiving a cloud charging command sent by a server; the cloud charging command is generated based on a charging order determined by a user terminal accessing the server.
[0010] According to a charging method for a shared charging station provided by the present invention, before the wireless charging unit charges the vehicle charging component based on the charging method when the vehicle charging component reaches the charging range of the target wireless charging unit, the method includes: determining whether the vehicle charging component has reached the charging range of the target wireless charging unit based on weight detection and / or coil communication.
[0011] This invention also provides a charging method for a shared charging pile, applied to a shared charging pile system. The shared charging pile system includes at least one wireless charging unit deployed on the ground and a central control unit connected to each wireless charging unit. The shared charging pile charging method includes:
[0012] The central control unit obtains the user information bound to the vehicle charging component based on cloud charging instructions; the user information includes the charging method and vehicle identification; when the vehicle charging component is electrically connected to any wireless charging unit, the wireless charging unit obtains the vehicle identification and sends the vehicle identification to the central control unit, so that the central control unit can determine the target wireless charging unit corresponding to the vehicle charging component; the central control unit controls the target wireless charging unit to charge the vehicle charging component according to the charging method.
[0013] This invention also provides a charging method for a shared charging pile, applied to a shared charging pile system. The shared charging pile system includes at least one wireless charging unit deployed on the ground and a central control unit connected to each wireless charging unit. The shared charging pile charging method includes: when the vehicle charging component is electrically connected to any wireless charging unit, the wireless charging unit acquires user information and sends the user information to the central control unit; the user information includes a one-click charging indicator and a charging mode; in response to the one-click charging indicator, the central control unit controls the wireless charging unit to directly charge the vehicle charging component according to the charging mode.
[0014] This invention also provides a charging system for a shared charging pile, including at least one wireless charging unit deployed on the ground and a central control unit connected to each wireless charging unit; the central control unit is used to respond to charging commands and prompt users for available wireless charging units; according to the user's selection command, it determines the target wireless charging unit and charging method from the available wireless charging units; the charging commands include local charging commands and cloud charging commands; the local charging commands are triggered by the central control unit or the wireless charging units; the cloud charging commands are generated by a server; the wireless charging units are used to charge the vehicle charging components based on the charging method when the vehicle charging components reach the charging range of the target wireless charging unit.
[0015] The present invention also provides a charging system for shared charging piles, comprising: at least one server for sending cloud-based charging instructions to a central control unit according to user terminal requests; a central control unit connected to each wireless charging unit for obtaining user information bound to the vehicle charging component based on the cloud-based charging instructions; wherein the user information includes charging method and vehicle identification; at least one ground-deployed wireless charging unit for obtaining the vehicle identification when establishing an electrical connection with the vehicle charging component and sending the vehicle identification to the central control unit; the central control unit is further configured to determine the target wireless charging unit corresponding to the vehicle charging component and control the target wireless charging unit to charge the vehicle charging component according to the charging method.
[0016] The present invention also provides a charging system for a shared charging pile, comprising: at least one wireless charging unit deployed on the ground, used to acquire user information when the vehicle charging component is electrically connected to any wireless charging unit, and send the user information to a central control unit; the user information includes a one-click charging identifier and a charging method; and a central control unit connected to each wireless charging unit, used to respond to the one-click charging identifier to control the wireless charging unit to directly charge the vehicle charging component according to the charging method.
[0017] This invention provides a charging method, a shared charging pile system, and a storage medium for shared charging piles. The shared charging pile system includes at least one wireless charging unit deployed on the ground and a central control unit connected to each wireless charging unit. The central control unit responds to charging commands by indicating idle wireless charging units to the user. Charging commands include local charging commands and cloud charging commands. Local charging commands are triggered by the central control unit or the wireless charging unit; cloud charging commands are generated by a server. Based on the user's selection command, a target wireless charging unit and charging method are determined from the idle wireless charging units. When the vehicle charging component reaches the charging range of the target wireless charging unit, the target wireless charging unit charges the vehicle charging component based on the charging method. Through the above methods, this invention can indicate idle wireless charging devices to the user and provides charging operations for different scenarios, handling both local and cloud charging commands. Charging operations are simpler, improving user experience and satisfaction. Attached Figure Description
[0018] To more clearly illustrate the technical solutions in this invention or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of this invention. For those skilled in the art, other drawings can be obtained from these drawings without creative effort.
[0019] Figure 1 This is a flowchart illustrating an embodiment of the charging method for the shared charging station of the present invention;
[0020] Figure 2 This is a schematic flowchart of another embodiment of the charging method for the shared charging pile of the present invention;
[0021] Figure 3 This is a flowchart illustrating another embodiment of the charging method for the shared charging station of the present invention;
[0022] Figure 4 This is a flowchart illustrating another embodiment of the charging method for the shared charging station of the present invention;
[0023] Figure 5 This is a schematic diagram of an embodiment of the shared charging pile system of the present invention. Detailed Implementation
[0024] To make the objectives, technical solutions, and advantages of this invention clearer, the technical solutions of this invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of this invention. All other embodiments obtained by those skilled in the art based on the embodiments of this invention without creative effort are within the scope of protection of this invention.
[0025] This invention provides a charging method for shared charging stations. Please refer to [link / reference]. Figure 1 , Figure 1 This is a flowchart illustrating an embodiment of the charging method for a shared charging station according to the present invention. In this embodiment, the charging method for the shared charging station includes steps S110 to S120, each step of which is detailed below:
[0026] S110: The central control unit responds to the charging command and notifies the user of the wireless charging unit's idle status.
[0027] The shared charging station system includes at least one wireless charging unit deployed on the ground and a central control unit connected to each wireless charging unit. The central control unit is used to control the wireless charging units.
[0028] Charging commands can include local charging commands and cloud charging commands; local charging commands are triggered by the central control unit or the wireless charging unit; cloud charging commands are generated by the server.
[0029] Optionally, the local charging command may include a first local charging command triggered by the central control unit and a second local charging command triggered by the wireless charging unit.
[0030] S120: The central control unit determines the target wireless charging unit and charging method from the idle wireless charging units according to the user's selection command.
[0031] The prompting method can include marking the wireless charging unit with a preset shape and color, adding a prompt message, or displaying a separate prompt. Those skilled in the art can also design other prompting methods according to the actual situation.
[0032] S130: When the vehicle charging component reaches the charging range of the target wireless charging unit, the target wireless charging unit charges the vehicle charging component based on the charging method.
[0033] Alternatively, the vehicle charging component can be a component on the electric vehicle's kickstand, on which a wireless charging head can be installed to enable wireless charging.
[0034] In this embodiment, the central control unit uses sensors to detect whether each inactive wireless charging unit has reached the charging range of the target wireless charging unit. Specifically:
[0035] Weight detection: The wireless charging unit can be equipped with strain gauges and sensors to detect whether an object is placed on it. When the weight exceeds a certain limit, it will trigger a mechanical / electronic sensor. At this point, it can detect that an object is placed on it.
[0036] Coil Communication: The vehicle charging component and the wireless charging unit communicate via a coil. Information is exchanged before charging begins, such as negotiating the charging protocol and reading component information. Based on this communication interaction, more fields can be defined to provide information during the interaction. In this scheme, the central control unit can control the wireless charging unit to detect contacts at regular intervals. If a vehicle charging component makes contact with the wireless charging unit, communication is established, and necessary information is exchanged.
[0037] This embodiment provides a charging method for a shared charging pile, applied to a shared charging pile system. The method includes: a central control unit responding to a charging command to prompt the user to select an idle wireless charging unit; wherein the charging command includes a local charging command and a cloud charging command; wherein the local charging command is generated by the central control unit or the wireless charging unit; and the cloud charging command is generated by a server; based on the user's selection command, a target wireless charging unit and a charging method are determined from the idle wireless charging units; when the vehicle charging component reaches the charging range of the target wireless charging unit, the target wireless charging unit charges the vehicle charging component based on the charging method. Through the above method, this invention can prompt the user to select an idle wireless charging device and provides charging operations for different scenarios, handling both local and cloud charging commands; the charging operation is simpler, improving the user experience and user satisfaction. In some embodiments, the local charging command includes a first local charging command; before the central control unit responds to the charging command, the method includes: the central control unit generating the first local charging command based on the interaction information between the user and the central control unit's display screen.
[0038] In some embodiments, the local charging instruction includes a second local charging instruction; in response to the charging instruction, the central control unit includes: receiving connection information that enables electrical connection between the vehicle charging component and the wireless charging unit, and generating a second local charging instruction based on the connection information.
[0039] Optionally, when the vehicle charging component reaches the charging range of the target wireless charging unit and establishes an electrical connection with the target wireless charging unit, the target wireless charging unit charges the vehicle charging component based on the charging method, including: the central control unit obtains the user information bound to the vehicle charging component based on the cloud charging command; wherein the user information includes the vehicle identifier; when the vehicle charging component establishes an electrical connection with the wireless charging unit, the target wireless charging unit corresponding to the vehicle charging component is determined according to the vehicle identifier, and the central control unit controls the target wireless charging unit to charge the vehicle charging component.
[0040] In some embodiments, before responding to a charging command, the central control unit includes: receiving a cloud charging command sent by a server; the cloud charging command is generated based on a charging order determined by the user terminal accessing the server.
[0041] Optionally, when the vehicle charging component reaches the charging range of the target wireless charging unit and establishes an electrical connection with the target wireless charging unit, the target wireless charging unit charges the vehicle charging component based on the charging method, including: the central control unit obtains the user information bound to the vehicle charging component based on the second local charging command, wherein the user information includes a one-click charging identifier; in response to the one-click charging identifier, the wireless charging unit directly charges the vehicle charging component.
[0042] Please see Figure 2 , Figure 2 This is a schematic flowchart of another embodiment of the charging method for the shared charging pile of the present invention.
[0043] When a user enters the charging interface, the shared charging station system checks if any new vehicles have been parked. If so, the user is taken to the interface for selecting a wireless charging unit. The shared charging station system will then recommend available wireless charging units to the user. After the user selects and confirms the unit, the user pays and settles the payment, and the shared charging station system begins charging.
[0044] If the shared charging station system detects no new vehicles parked, it will enter the wireless charging unit selection interface. After the user selects and confirms, the user will be prompted to park the vehicle according to the selected wireless charging unit. Finally, the user pays and settles the payment, and the shared charging station system will start charging.
[0045] Optionally, when a new vehicle is detected by weight detection or when the user-bound vehicle charging component information is obtained based on coil communication, some user selection steps can be skipped, reducing the number of user selection steps in the above scenarios and making the charging operation more convenient for the user.
[0046] It should be noted that this embodiment can be applied to different interaction scenarios. For example, users can enter the charging interface by interacting with the display screen of the central control unit or by interacting with a mobile terminal.
[0047] The above embodiments can be freely combined without conflict. To better illustrate the technical solution of the present invention, several examples embodying different application scenarios are provided below:
[0048] Example 1:
[0049] The central control unit is equipped with a display screen. Users interact with the central control unit through the display screen. In this solution, the central control unit will detect whether there is a vehicle charging component (the component on the kickstand) on each inactive wireless charging unit. The detection method can be based on weight sensing or communication response using coils.
[0050] At this point, when the user operates the screen and clicks the charging button to enter the selection interface, the system will prompt the user to confirm whether to use the wireless charging unit that has detected a vehicle charging component. In some embodiments, the wireless charging unit can also obtain vehicle information and indicate the vehicle owner's model when prompting the user to use the charging unit.
[0051] The user then proceeds to checkout. Optionally, the user can select a service plan and charging method after choosing a unit, and then pay / authorize the deduction.
[0052] Understandably, in the business process of this solution, apart from routine information reporting, the mobile terminal only needs to communicate with the server during order settlement. This provides a better user experience compared to operating with the mobile terminal, and it also reduces the difficulty of user selection and improves user selection efficiency.
[0053] Example 2:
[0054] The central control unit in this solution lacks a display screen, or the display screen is non-interactive and only used to display prompts. In this solution, users need to use a mobile terminal to access the server by scanning a QR code, and then interact with the server to control the central control unit to activate the relevant wireless charging units.
[0055] In this solution, the central control unit can trigger checks based on orders to determine which wireless charging units currently have vehicles parked, or it can perform periodic checks. When the server queries the system, the results are directly reported to the server. When a user scans a QR code to access the wireless charging unit selection page, the server matches the user's choices based on the central control unit's detection results, displaying potential wireless charging units. After the user selects a unit and completes order settlement, the server sends a control command to the central control unit, which then activates the wireless charging unit to begin charging.
[0056] It should be noted that if the central control unit does not detect any newly parked vehicle charging components during the detection phase, the central control unit can make a special note to remind the user to select it, thereby optimizing the efficiency of the user's selection.
[0057] Example 3:
[0058] The central control unit obtains the user information bound to the vehicle charging component based on cloud charging instructions; the user information includes the charging method and vehicle identification; when the vehicle charging component is electrically connected to any wireless charging unit, the wireless charging unit obtains the vehicle identification and sends the vehicle identification to the central control unit, so that the central control unit can determine the target wireless charging unit corresponding to the vehicle charging component; the central control unit controls the target wireless charging unit to charge the vehicle charging component according to the charging method.
[0059] When user information includes a vehicle identifier, the user pre-configures their information in the vehicle charging component, and the wireless charging unit obtains this information when communicating with the vehicle charging component. Under this scheme, when a user enters via a mini-program or by scanning a QR code, the server can query the corresponding central control unit to see if a user-bound vehicle charging component is parked there; alternatively, the central control unit can detect the presence of a vehicle charging component and report it to the server.
[0060] By pre-binding user information to the vehicle charging components, users can directly send charging commands by scanning a QR code or launching a mini-program without needing to make a selection. Similarly, in scenarios where users place an order before charging, or where users complete the order and then park the vehicle, the central control unit can locate the corresponding vehicle information based on server instructions and provide charging when the corresponding vehicle is parked.
[0061] Understandably, in this solution, user information can be obtained through communication with the vehicle charging component via the wireless charging unit, thus linking the user to this information. In this case, the user does not need to make a selection; they can directly place a charging order or place the vehicle in any location after placing a charging order. This solution further simplifies the charging process for users by binding their user information to the vehicle charging component.
[0062] Understandably, when a user does not bind a vehicle charging component, or chooses an unbound vehicle charging component for charging, the method in Example 2 can be used to detect whether a vehicle is parked and provide a prompt on the user's wireless charging interface.
[0063] Please see Figure 3 , Figure 3 This is a flowchart illustrating another embodiment of the charging method for the shared charging station of the present invention.
[0064] Users access the charging interface by scanning a QR code or opening the app. Based on the scanned information or location information, the system determines the main control unit the user intends to use and checks if the user has bound a vehicle charging component. If the user has bound a vehicle charging component, the server queries the wireless charging unit status of the main control unit to determine if the bound vehicle charging component has been detected. If the bound vehicle charging component is detected, the system identifies the corresponding wireless charging unit and redirects the user to the order page for payment / authorization.
[0065] If no vehicle charging component bound to the user is detected, the user is asked whether they want to use the bound vehicle charging component for charging. If the user does use the bound vehicle charging component, they are prompted to select any wireless charging unit for charging. After selecting the corresponding wireless charging unit, the user is redirected to the order page for payment / authorization. At the same time, the server sends information to the central control unit to detect the user's corresponding vehicle charging component. Once the user's vehicle charging component is detected, charging begins directly, and the central control unit sends feedback on the charging status to the mobile terminal through the server.
[0066] If the user does not use the bound vehicle charging component for charging, or if the user has not bound the vehicle charging component, the page for selecting the wireless charging unit will redirect to the order page after confirming the corresponding wireless charging unit, where payment / authorization can be completed.
[0067] Example 4:
[0068] When the vehicle charging component is electrically connected to any wireless charging unit, the wireless charging unit acquires user information and sends the user information to the central control unit. The user information includes a one-click charging indicator and a charging method. In response to the one-click charging indicator, the central control unit controls the wireless charging unit to directly charge the vehicle charging component according to the charging method.
[0069] When the user information includes a one-click charging icon, the information of the vehicle charging component is bound to the user account. With the authorization of the user account, when the vehicle charging component is placed on top of the wireless charging unit, the central control unit obtains the information of the vehicle charging component through the wireless charging unit, queries the corresponding user, and the server pushes information to the user (or the user actively enters the charging interface), allowing the user to charge with one click.
[0070] Please see Figure 4 , Figure 4 This is a flowchart illustrating another embodiment of the charging method for the shared charging station of the present invention.
[0071] The central control unit monitors the status of the wireless charging unit and determines whether it detects information about a vehicle charging component bound to a user. If detected, it reports the vehicle charging component information to the server, which then queries the corresponding user and sends service information to the user. The user places an order based on the server information. The server controls the central control unit to use the corresponding wireless charging unit for charging based on the user's order. If the central control unit does not detect information about a vehicle charging component bound to a user, it continues to monitor the status of the wireless charging unit.
[0072] The present invention also provides a shared charging pile system. The shared charging pile system provided by the present invention will be described below. The shared charging pile system described below and the charging method of the shared charging pile described above can be referred to each other.
[0073] Please see Figure 5 , Figure 5 This is a schematic diagram of a shared charging pile system according to an embodiment of the present invention. In this embodiment, the shared charging pile system includes at least one wireless charging unit 520 deployed on the ground and a central control unit 510 connected to each wireless charging unit.
[0074] A central control unit 510 is used to respond to charging commands and prompt the user for available wireless charging units; based on the user's selection command, it determines the target wireless charging unit and charging method from the available wireless charging units; the charging command includes a local charging command and a cloud charging command; the local charging command is triggered by the central control unit or the wireless charging unit; the cloud charging command is generated by a server. A wireless charging unit 520 is used to charge the vehicle charging component based on the charging method when the vehicle charging component reaches the charging range of the target wireless charging unit.
[0075] In some embodiments, the shared charging pile system further includes at least one server, which is used to issue instructions to the shared charging pile system according to user terminal requests.
[0076] In some embodiments, the local charging instruction includes a first local charging instruction; the central control unit generates the first local charging instruction based on the interaction information between the user and the central control unit's display screen.
[0077] In some embodiments, the local charging instruction includes a second local charging instruction; the central control unit receives connection information that enables electrical connection between the vehicle charging component and the wireless charging unit, and generates the second local charging instruction based on the connection information.
[0078] In some embodiments, the central control unit receives a cloud charging instruction sent by the server; the cloud charging instruction is generated based on a charging order determined by the user terminal accessing the server.
[0079] In some embodiments, the central control unit determines whether the vehicle charging component has reached the charging range of the target wireless charging unit based on weight detection and / or coil communication.
[0080] In some embodiments, the central control unit obtains user information bound to the vehicle charging component based on cloud charging instructions; wherein the user information includes a vehicle identifier; when the vehicle charging component is electrically connected to the wireless charging unit, the wireless charging unit corresponding to the vehicle charging component is determined according to the vehicle identifier, and the central control unit controls the wireless charging unit to charge the vehicle charging component.
[0081] In some embodiments, the central control unit obtains user information bound to the vehicle charging component based on a second local charging command, wherein the user information includes a one-click charging identifier; in response to the one-click charging identifier, the wireless charging unit directly charges the vehicle charging component.
[0082] In other embodiments, the shared charging station system includes:
[0083] At least one server is used to send cloud charging instructions to the central control unit based on user terminal requests;
[0084] The central control unit, connected to each wireless charging unit, is used to obtain user information bound to the vehicle charging components based on cloud charging commands; the user information includes charging method and vehicle identification.
[0085] At least one ground-deployed wireless charging unit is used to acquire a vehicle identifier when it is electrically connected to the vehicle charging components, and to send the vehicle identifier to the central control unit;
[0086] The central control unit is also used to determine the target wireless charging unit corresponding to the vehicle charging component, and to control the target wireless charging unit to charge the vehicle charging component according to the charging method.
[0087] In other embodiments, the shared charging station system includes:
[0088] At least one ground-deployed wireless charging unit is used to acquire user information and send the user information to the central control unit when the vehicle charging component is electrically connected to any wireless charging unit; the user information includes a one-click charging icon and charging method;
[0089] The central control unit, connected to each wireless charging unit, is used to respond to a one-touch charging indicator to control the wireless charging unit to directly charge the vehicle charging components according to the charging method.
[0090] On the other hand, the present invention also provides a non-transitory computer-readable storage medium storing a computer program thereon, which, when executed by a processor, implements the charging method for a shared charging pile provided by the methods described above, the method comprising:
[0091] The central control unit responds to charging commands and prompts the user for available wireless charging units. Charging commands include local charging commands and cloud charging commands. Local charging commands are triggered by the central control unit or the wireless charging unit. Cloud charging commands are generated by the server. Based on the user's selection command, the central control unit determines the target wireless charging unit and charging method from the available wireless charging units. When the vehicle charging component reaches the charging range of the target wireless charging unit, the target wireless charging unit charges the vehicle charging component based on the charging method.
[0092] Non-transitory computer-readable storage media can be any available medium or data storage device that can be accessed by a processor, including but not limited to magnetic storage (e.g., floppy disks, hard disks, magnetic tapes, magneto-optical disks (MOs), etc.), optical storage (e.g., CDs, DVDs, BDs, HVDs, etc.), and semiconductor storage (e.g., ROMs, EPROMs, EEPROMs, non-volatile memory (NAND flash), solid-state drives (SSDs)).
[0093] In summary, the shared charging pile charging method, shared charging pile system, and storage medium provided by this invention include a shared charging pile system comprising at least one wireless charging unit deployed on the ground and a central control unit connected to each wireless charging unit. The central control unit responds to charging commands by indicating idle wireless charging units to the user. The charging commands include local charging commands and cloud charging commands. Local charging commands are generated by the central control unit or the wireless charging units; cloud charging commands are generated by a server. Based on the user's selection command, a target wireless charging unit and charging method are determined from the idle wireless charging units. When the vehicle charging component reaches the charging range of the target wireless charging unit, the target wireless charging unit charges the vehicle charging component based on the charging method. Through this method, this invention can indicate idle wireless charging devices to the user and provides charging operations for different scenarios, handling both local and cloud charging commands. The charging operation is simpler, improving the user experience and user satisfaction.
[0094] The device embodiments described above are merely illustrative. The units described as separate components may or may not be physically separate. The components shown as units may or may not be physical units; that is, they may be located in one place or distributed across multiple network units. Some or all of the modules can be selected to achieve the purpose of this embodiment according to actual needs. Those skilled in the art can understand and implement this without any creative effort.
[0095] Through the above description of the embodiments, those skilled in the art can clearly understand that each embodiment can be implemented by means of software plus necessary general-purpose hardware platforms, and of course, it can also be implemented by hardware. Based on this understanding, the above technical solutions, in essence or the part that contributes to the prior art, can be embodied in the form of a software product. This computer software product can be stored in a computer-readable storage medium, such as ROM / RAM, magnetic disk, optical disk, etc., and includes several instructions to cause a computer device (which may be a personal computer, server, or network device, etc.) to execute the methods described in the various embodiments or some parts of the embodiments.
[0096] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention, and not to limit them; although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features; and these modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of the present invention.
Claims
1. A charging method for a shared charging station, characterized in that, An application to a shared charging pile system, the shared charging pile system including at least one ground-deployed wireless charging unit and a central control unit connected to each of the wireless charging units; the shared charging pile charging method includes: The central control unit obtains user information bound to the vehicle charging component based on cloud charging commands; the user information includes charging method and vehicle identification. When the vehicle charging component is electrically connected to any wireless charging unit, the wireless charging unit acquires the vehicle identifier and sends the vehicle identifier to the central control unit, so that the central control unit can determine the target wireless charging unit corresponding to the vehicle charging component. The central control unit controls the target wireless charging unit to charge the vehicle charging components according to the charging method.
2. A shared charging pile system, characterized in that, include: At least one server is used to send cloud charging instructions to the central control unit based on user terminal requests; A central control unit connected to each wireless charging unit is used to obtain user information bound to the vehicle charging component based on cloud charging commands; wherein the user information includes charging method and vehicle identification. At least one ground-deployed wireless charging unit is used to acquire the vehicle identifier when it is electrically connected to the vehicle charging assembly, and to send the vehicle identifier to the central control unit; The central control unit is also used to determine the target wireless charging unit corresponding to the vehicle charging component, and control the target wireless charging unit to charge the vehicle charging component according to the charging method.
Citation Information
Patent Citations
Electric vehicle swiping card charging parking lot and swiping card charging method
CN105406565A
Non-inductive charging method for electric vehicle
CN113085640A