Mobile charging system and method based on charging order placing intelligent terminal
Through the mobile charging system based on charging ordering smart terminals, the problems of low coverage and low usage efficiency of traditional charging piles are solved, convenient and efficient mobile charging is achieved, and the impact on grid balance is reduced.
Patent Information
- Application Number
- CN202510084091.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-20
- Publication Date
- 2025-06-03
AI Technical Summary
The low coverage rate of traditional charging piles, fixed location and low usage efficiency, make it difficult to meet the charging needs of electric vehicles.
The mobile charging system based on the charging order intelligent terminal is adopted. The vehicle information to be charged is obtained through the charging order intelligent terminal, the operation platform generates a charging order, and the mobile charging terminal responds to the order and moves to the vehicle to be charged for charging.
It improves the convenience of the charging process, reduces the restrictions on parking lots, improves the efficiency of using mobile charging terminals, avoids waste of resources, and reduces the impact on grid balance.
Smart Images

Figure CN120088901A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of charging piles, and in particular to a mobile charging system and method based on a charging order intelligent terminal. Background Art
[0002] A charging pile is a key device to ensure the normal operation of various machines using batteries as the driving energy, such as electric vehicles. It can be fixed on the ground or wall and installed in places such as residential community parking lots, charging stations, and public parking lots to provide charging for electric vehicles.
[0003] Currently, the commonly used charging facilities are mainly large charging stations, outdoor charging piles, community charging piles, and public parking lot charging piles, etc. However, traditional charging piles have disadvantages such as low coverage rate, fixed location, low usage efficiency, and long queuing time for public charging piles, making it difficult to meet the growing charging needs of electric vehicles.
[0004] Therefore, the existing technology needs to be improved and enhanced. Summary of the Invention
[0005] Aiming at the deficiencies in the prior art, the purpose of the present invention is to provide a mobile charging system and method based on a charging order intelligent terminal to improve the charging efficiency of mobile charging piles.
[0006] To achieve the above purpose, the technical solutions adopted by the present invention are as follows:
[0007] In a first aspect, a mobile charging system based on a charging order intelligent terminal includes
[0008] A charging order intelligent terminal, which is used to obtain relevant information of the vehicle to be charged and can send the relevant information to an operation platform or a user terminal; it is also used to receive the charging order feedback by the operation platform and display the charging order status through an acoustic-optic module;
[0009] An operation platform, which is used to receive the relevant information sent by the charging order intelligent terminal and synchronize the relevant information to the user terminal, and also generate a charging order according to the relevant information;
[0010] A mobile charging terminal, which is used to receive and respond to the charging order, move to the location of the vehicle to be charged according to the charging order, unlock and remove the charging order intelligent terminal, and then provide charging service for the vehicle to be charged. After charging is completed, charging data is sent; the operation platform generates payment information according to the charging data and feeds back the charging data and the payment information to the user terminal;
[0011] A user terminal for receiving the relevant information sent by the intelligent charging order terminal or the relevant information, charging data, and payment information sent by the operation platform.
[0012] In an embodiment of the present invention, the relevant information includes
[0013] Information of the vehicle to be charged obtained by the intelligent charging order terminal through communication connection with the vehicle to be charged;
[0014] Location data of the vehicle to be charged obtained by the intelligent charging order terminal through its own positioning module;
[0015] Peripheral temperature of the vehicle to be charged obtained by the intelligent charging order terminal through the temperature control module;
[0016] A charging request triggered by the intelligent charging order terminal through the HMI interface.
[0017] In an embodiment of the present invention, the information of the vehicle to be charged includes SOC power, vehicle-mounted BMS temperature, and charging voltage.
[0018] In an embodiment of the present invention, the HMI interface includes a touchpad, a touch screen, a MIC, and a fingerprint screen, and the charging request is processed by the main control module and sent to the operation platform through the communication module.
[0019] In an embodiment of the present invention, the operation platform includes an acquisition unit, a processing unit, and a distribution unit;
[0020] The acquisition unit is connected to the mobile charging terminal, and the acquisition unit is used to acquire the power parameter and position parameter of the mobile charging terminal;
[0021] The processing unit is used to receive the relevant information sent by the intelligent charging order terminal, synchronize the relevant information to the user terminal, generate a charging order according to the relevant information, and feedback the charging order to the intelligent charging order terminal;
[0022] The distribution unit is used to send the charging order to the mobile charging terminal according to the power parameter.
[0023] In an embodiment of the present invention, the mobile charging terminal includes a charging management unit;
[0024] The charging management unit is connected to the operation platform; during the charging process of the mobile charging terminal to the vehicle to be charged, the charging management unit is used to obtain the charging data in real time and send the charging data to the operation platform;
[0025] The operation platform is also used to forward the charging data to the user terminal.
[0026] In an embodiment of the present invention, the operation platform further includes a fee management unit;
[0027] The charging data includes the battery information of the vehicle to be charged and the charging information of the mobile charging terminal;
[0028] The fee management unit is connected to the charging management unit. After the mobile charging terminal finishes charging the vehicle to be charged, the charging management unit is also used to send the battery information of the vehicle to be charged and the charging information of the mobile charging terminal to the fee management unit;
[0029] The fee management unit is used to perform payment calculation based on the battery information of the vehicle to be charged and the charging information of the mobile charging terminal to generate payment information, and feedback the payment information to the user terminal, and feedback it to the mobile charging terminal after the user terminal unit completes the payment.
[0030] In an embodiment of the present invention, the user terminal includes a mobile phone, a tablet or a computer.
[0031] In an embodiment of the present invention, the mobile charging terminal includes an energy storage device and a movable carrier; the movable carrier is used to carry the energy storage device, and the energy storage device is used to charge the vehicle to be charged.
[0032] In a second aspect, a mobile charging method based on a charging order intelligent terminal is executed by a mobile charging system, and the mobile charging system includes: a charging order intelligent terminal, an operation platform, a mobile charging terminal and a user terminal;
[0033] The mobile charging method includes:
[0034] The charging order intelligent terminal obtains relevant information of the vehicle to be charged and sends the relevant information to the operation platform or the user terminal;
[0035] The operation platform receives the relevant information sent by the charging order intelligent terminal and generates a charging order according to the relevant information;
[0036] The mobile charging terminal receives and responds to the charging order, moves to the location of the vehicle to be charged according to the charging order, removes the charging order intelligent terminal, and then provides a charging service for the vehicle to be charged, and sends charging data after charging is completed;
[0037] The operation platform generates payment information according to the charging data and feeds back the charging data and the payment information to the user terminal.
[0038] In one embodiment of the present invention, the operation platform includes an acquisition unit, a processing unit, and an allocation unit;
[0039] The mobile charging method includes:
[0040] The acquisition unit acquires the power parameter and the position parameter of the mobile charging terminal;
[0041] The processing unit receives the relevant information sent by the charging order placing intelligent terminal and synchronizes the relevant information to the user terminal, and also generates a charging order according to the relevant information and feeds back the charging order to the charging order placing intelligent terminal;
[0042] The allocation unit sends the charging order to the mobile charging terminal according to the power parameter.
[0043] In one embodiment of the present invention, the mobile charging terminal includes a charging management unit;
[0044] The mobile charging method includes:
[0045] During the process of charging the vehicle to be charged by the mobile charging terminal, the charging management unit real-time acquires the charging data and sends the charging data to the operation platform;
[0046] The operation platform forwards the charging data to the user terminal.
[0047] In one embodiment of the present invention, the operation platform further includes a fee management unit; the charging data includes the battery information of the vehicle to be charged and the charging information of the mobile charging terminal;
[0048] The mobile charging method includes:
[0049] After the mobile charging terminal finishes charging the vehicle to be charged, the charging management unit sends the battery information of the vehicle to be charged and the charging information of the mobile charging terminal to the fee management unit;
[0050] The fee management unit performs payment calculation according to the battery information of the vehicle to be charged and the charging information of the mobile charging terminal to generate payment information, and feeds back the payment information to the user terminal, and also feeds back to the mobile charging terminal after the user terminal unit completes the payment.
[0051] Compared with the prior art, the beneficial effects of the present invention are:
[0052] The mobile charging system provided by the embodiment of the present invention uses a charging order intelligent terminal to simulate the closed state of the charging port of the vehicle to be charged, so that the vehicle to be charged completes the vehicle locking operation, and in combination with the user terminal, the operation platform and the mobile charging terminal, realizes that the charging order intelligent terminal sends relevant information, the operation platform generates a charging order according to the relevant information, and issues it to the mobile charging terminal. The mobile charging terminal responds to the charging order and moves to the location of the vehicle to be charged to realize a non-contact and flexible charging process, thereby improving the convenience of the charging process, reducing the limitation of the parking lot by the non-fixed charging method, and improving the use efficiency of the mobile charging terminal, avoiding resource waste. And based on the energy storage capacity of the mobile charging terminal, the replenishment process of the mobile charging terminal can be set during the low load period, thereby reducing the impact on the grid balance. BRIEF DESCRIPTION OF THE DRAWINGS
[0053] Appendix Figure 1 FIG. 1 is a schematic structural diagram of a mobile charging system according to Embodiment 1 of the present invention;
[0054] Appendix Figure 2 FIG. 2 is a schematic flow diagram of a mobile charging method according to Embodiment 1 of the present invention;
[0055] Appendix Figure 3 FIG. 3 is a schematic structural diagram of a mobile charging system according to Embodiment 2 of the present invention;
[0056] Appendix Figure 4 FIG. 4 is a schematic flow diagram of a mobile charging method according to Embodiment 2 of the present invention. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0057] To make the objectives, technical solutions and advantages of the embodiments of the present invention clearer, the technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are some, but not all, of the embodiments of the present invention. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.
[0058] Embodiment 1:
[0059] Refer to Figure 1 , the present invention provides a schematic structural diagram of a mobile charging system based on a charging order intelligent terminal, including:
[0060] A charging order intelligent terminal 10, configured to obtain relevant information of a vehicle 20 to be charged and send the relevant information to an operation platform 30 or a user terminal 40; and further configured to receive a charging order fed back by the operation platform 30 and display the charging order status through an acoustic-optic module;
[0061] An operation platform 30 is configured to receive the relevant information sent by the intelligent charging order terminal 10 and synchronize the relevant information to the user terminal 40, and also generate a charging order according to the relevant information.
[0062] A mobile charging terminal 50 is configured to receive and respond to the charging order, move to the location of the vehicle to be charged 20 according to the charging order, unlock and remove the intelligent charging order terminal 10, and then provide a charging service to the vehicle to be charged 20. After the charging is completed, charging data is sent; the operation platform 30 generates payment information according to the charging data and feeds back the charging data and the payment information to the user terminal 40.
[0063] A user terminal 40 is configured to receive the relevant information sent by the intelligent charging order terminal 10 or the relevant information, the charging data and the payment information sent by the operation platform 30.
[0064] Specifically, the intelligent charging order terminal 10 is a virtual charging device for the charging port of the vehicle to be charged. Before charging, the user of the vehicle to be charged can insert the intelligent charging order terminal 10 into the charging port of the vehicle to be charged. The intelligent charging order terminal 10 establishes a communication connection with the vehicle to be charged 20 and is connected to the charging port of the vehicle to be charged by means of electronic or mechanical locking, so that the vehicle to be charged completes the locking operation. Exemplarily, the intelligent charging order terminal 10 can be designed based on two national standards, namely GB / T 20234.1-2023 "Connectors for Conductive Charging of Electric Vehicles - Part 1: General Requirements" and GB / T 20234.3-2023 "Connectors for Conductive Charging of Electric Vehicles - Part 3: DC Charging Interfaces", and can be applied to most new energy vehicles, improving the versatility of the intelligent charging order terminal 10. The intelligent charging order terminal 10 also displays the status of the charging order through an acoustic and optical module according to the charging order fed back by the operation platform 30. For example, the order is successful in green and unsuccessful in red.
[0065] Specifically, the relevant information includes the information of the vehicle to be charged 20 obtained by the intelligent charging order terminal 10 through communication connection with the vehicle to be charged 20. The information of the vehicle to be charged 20 includes parameters such as SOC power, vehicle-mounted BMS temperature, charging voltage, model of the vehicle to be charged, license plate information, and estimated charging amount; the positioning data of the vehicle to be charged 20 obtained by the intelligent charging order terminal 10 through its own positioning module; the ambient temperature of the vehicle to be charged 20 obtained by the intelligent charging order terminal 10 through the temperature control module; the charging request triggered by the intelligent charging order terminal 10 through the HMI interface. The HMI interface includes a touchpad, a touch screen, a MIC, and a fingerprint screen. The charging request is processed by the main control module and then sent to the operation platform through the communication module.
[0066] Specifically, the user terminal 40 is used to receive the relevant information sent by the charging order placement intelligent terminal 10 or the relevant information, the charging data, and the payment information sent by the operation platform 30. The user terminal 40 may include a mobile phone, a tablet, or a computer. The user terminal may also be an application program installed on a physical electronic device.
[0067] Specifically, the operation platform 30 receives a charging request and generates a charging order based on the charging request. For example, the estimated charging amount of the vehicle to be charged 20 and the distance between the mobile charging terminal 50 and the vehicle to be charged 20 are used as the order weights. For example, if the specific location of the vehicle to be charged 20 is a certain place, the distance between the mobile charging terminal 50 and the vehicle to be charged 20 is about 3 km, and the estimated charging amount is 40 KWH, a charging order is generated. The operation platform 30 may send the charging order to the mobile charging terminal 50 that meets the requirements. Among them, the situation that meets the requirements may include that the mobile charging terminal 50 is in the surrounding area or surrounding jurisdiction of the vehicle to be charged 20 and is in an idle state, and the power reserve of the mobile charging terminal 50 meets the requirements of the estimated charging amount, etc. The operation platform 30 is also responsible for bundling, unbundling, activating, authenticating, and configuring user information with the charging order placement intelligent terminal 10.
[0068] Specifically, the mobile charging terminal 50 receives the charging order and responds to the charging order, so that it can move to the location of the vehicle to be charged 20 according to the positioning data, the model and license plate information of the vehicle to be charged, etc. Exemplarily, the mobile charging terminal 50 may be a movable carrier, such as a mobile charging vehicle. Among them, the mobile charging vehicle carries an energy storage device, and the energy storage device can charge other vehicles to be charged in the form of AC slow charging or DC fast charging. The response process of the mobile charging terminal 50 can be confirmed by manual operation. For example, after receiving the charging order through an electronic device, if the service personnel confirm that they can provide charging services, they can move the mobile charging terminal 50 to the designated location in a manual driving manner and provide charging services through manual operation. The mobile charging terminal 50 can also respond through its own controller and realize charging services in the form of autonomous driving, cooperation between robots or robotic arms by planning a route. The mobile charging terminal 50 arrives at the location of the vehicle to be charged, removes the charging order placement intelligent terminal 10, inserts the charging gun of the mobile charging terminal 50 into the charging port of the vehicle to be charged 20, and starts charging the vehicle to be charged 20.
[0069] Exemplarily, during the charging process, the mobile charging terminal 50 can send charging data such as charging current, voltage, charging amount, and the status of the vehicle to be charged to the operation platform 30, and the operation platform 30 forwards it to the user terminal 40, facilitating the user to view the current charging status in real time. After the charging is completed, the operation platform 30 generates payment information based on charging data such as charging amount, charging voltage, and current. For example, the operation platform 40 sets different measurement values according to the charging method of AC slow charging or DC fast charging selected by the user, the charging amount, and the moving distance of the mobile charging terminal 50, generates payment information in combination with the pricing formula, and sends the payment information to the user terminal. The payment information may include the fees to be paid by the user. For example, the fee to be paid is the electricity price per kilowatt-hour × the actual output charging amount of the mobile charging terminal 50 + the fee generated by the mobile charging terminal 50 moving the corresponding distance. After the user completes the payment through the user terminal, the charging process is completed. The mobile charging terminal 50 receives the information indicating that the payment is completed and can receive a charging order again or enter the process of replenishing the power of the energy storage device. Among them, the replenishment of the mobile charging terminal 50 can be carried out during the low valley period of the power grid, which can reduce the application cost of the vehicle mobile charging system.
[0070] The mobile charging system based on the charging order intelligent terminal provided by the embodiment of the present invention uses the charging order intelligent terminal 10 to simulate the closed state of the charging port of the vehicle to be charged, so that the vehicle to be charged is locked, and in combination with the user terminal, the operation platform 30 and the mobile charging terminal 50, the charging order intelligent terminal sends a charging request, the operation platform 30 generates a charging order according to the charging request, and issues it to the mobile charging terminal 50. The mobile charging terminal 50 responds to the charging order and moves to the location where the vehicle to be charged 20 is located to achieve non-contact and a flexible charging process, improving the convenience of the charging process; by means of non-fixed charging, the limitation of the parking lot is reduced, and the utilization efficiency of the mobile charging terminal 50 can be improved, avoiding waste of resources, and based on the energy storage capacity of the mobile charging terminal 50, the replenishment process of the mobile charging terminal 50 can be set during the low valley period, thereby reducing the impact on the power grid balance.
[0071] As Figure 2 shown, the mobile charging method of the above embodiment is executed by a mobile charging system, and the mobile charging system includes: a charging order intelligent terminal, an operation platform, a mobile charging terminal, and a user terminal; the device can be implemented in a hardware and / or software manner. The mobile charging method specifically includes the following steps:
[0072] S10. The charging order intelligent terminal 10 obtains relevant information of the vehicle to be charged 20 and sends the relevant information to the operation platform 30 or the user terminal 40;
[0073] S20. The operation platform 30 receives the relevant information sent by the charging order intelligent terminal 10 and generates a charging order according to the relevant information.
[0074] S30. The mobile charging terminal 50 receives and responds to the charging order, moves to the location of the vehicle 20 to be charged according to the charging order, removes the charging order intelligent terminal 10, and then provides a charging service to the vehicle 20 to be charged. After the charging is completed, charging data is sent.
[0075] S40. The operation platform 30 generates payment information according to the charging data and feeds back the charging data and the payment information to the user terminal 40.
[0076] Embodiment 2:
[0077] As Figure 3 shown, the embodiment of the present invention provides a structural schematic diagram of another mobile charging system. The operation platform 30 includes an acquisition unit 31, a processing unit 32, and a distribution unit 33.
[0078] The acquisition unit 31 is connected to the mobile charging terminal 50 and is used to acquire the power parameter of the mobile charging terminal 50.
[0079] The processing unit 32 is used to receive the relevant information sent by the charging order intelligent terminal 10, synchronize the relevant information to the user terminal 40, generate a charging order according to the relevant information, and feed back the charging order to the charging order intelligent terminal 10.
[0080] The distribution unit 33 is used to send the charging order to the mobile charging terminal 50 according to the power parameter.
[0081] Specifically, the acquisition unit 31 is communicatively connected to the mobile charging terminal 50. The acquisition unit 51 can acquire the parameters of the mobile charging terminal 50 in real time. For example, the power parameter currently stored in the mobile charging terminal 50, etc.
[0082] After the user sends a charging request through the charging order intelligent terminal 50, the operation platform 30 receives the charging request and generates a charging order according to the charging request. Exemplarily, the charging order includes the estimated charging amount of the vehicle to be charged and the location information of the vehicle to be charged. The distribution unit 33 issues the charging order to the mobile charging terminal 50 in the area or jurisdiction where the vehicle 20 to be charged is located according to the charging order. For example, the distribution unit 33 can match the location information of the vehicle 20 to be charged with the current location information of the mobile charging terminal 50 to screen out the mobile charging terminal 50 in the nearby area or jurisdiction. Further, the mobile charging terminal 50 that meets the charging amount requirement can also be selected according to the estimated charging amount of the vehicle to be charged and the current stored power parameter of the mobile charging terminal 50. To avoid the actual charging amount requirement of the vehicle to be charged being greater than the estimated charging amount, resulting in the current stored power of the mobile charging terminal 50 being insufficient to support the charging requirement, the current stored power of the mobile charging terminal 50 can be selected to be greater than the estimated charging amount, and the difference between the two is greater than a preset threshold, where the preset threshold can be 2 KWh, 3 KWh, 4 KWh or other values. The distribution unit 33 can issue the charging order to the mobile charging terminal 50 that meets the requirements according to the screening result.
[0083] Specifically, the mobile charging terminal 50 includes a charging management unit 51;
[0084] The charging management unit 51 is connected to the operation platform 30; during the charging process of the mobile charging terminal 50 to the vehicle 20 to be charged, the charging management unit 50 is used to obtain the charging data in real time and send the charging data to the operation platform 30; the operation platform 30 is also used to forward the charging data to the user terminal 40.
[0085] Specifically, the charging management unit 51 can obtain the charging data of the mobile charging terminal 50 during the charging process and the current charging data of the vehicle to be charged in real time. Among them, the charging data of the mobile charging terminal 50 can include charging current, charging voltage, and output charging amount, etc., and the current charging data of the vehicle 20 to be charged can include the battery capacity of the vehicle to be charged, the initial SOC of the battery, and the current SOC of the battery, etc. The operation platform 30 pushes the charging data obtained by the charging management unit 51 to the user terminal 40, and the user can view the current charging status of the vehicle to be charged through the user terminal in real time, thereby improving the user experience.
[0086] Specifically, the operation platform 30 further includes a fee management unit 34;
[0087] The charging data includes the battery information of the vehicle 20 to be charged and the charging information of the mobile charging terminal 50;
[0088] The cost management unit 34 is connected to the charging management unit 51. After the mobile charging terminal 50 finishes charging the vehicle 20 to be charged, the charging management unit 51 is further configured to send the battery information of the vehicle 20 to be charged and the charging information of the mobile charging terminal 50 to the cost management unit 34;
[0089] The cost management unit 34 is configured to perform payment calculation based on the battery information of the vehicle 20 to be charged and the charging information of the mobile charging terminal 50 to generate payment information, and feedback the payment information to the user terminal 40, and feedback to the mobile charging terminal 50 after the user terminal 40 completes the payment.
[0090] Specifically, the cost management unit 34 can obtain the charging data of the mobile charging terminal 50 and the current charging data of the vehicle 20 to be charged through the charging management unit 51. After the vehicle 20 to be charged is charged, the cost management unit 34 can perform payment calculation based on the battery information and charging information of the vehicle 20 to be charged. Among them, the battery information can include the battery capacity of the vehicle to be charged and the current SOC of the battery, etc., and the charging information can include the charging current, charging voltage and output charging amount of the mobile charging terminal 50, etc. The cost management unit 34 generates payment information based on the charging data such as the actual output charging amount, charging voltage and current of the mobile charging terminal 500. For example, the cost management unit 34 sets different measurement values according to the charging method of AC slow charging or DC fast charging selected by the user, the charging amount, and the moving distance of the mobile charging terminal 50, generates payment information according to the pricing formula, and sends the payment information to the user terminal. The payment information can include the fee to be paid by the user. For example, the fee to be paid is the electricity price per kilowatt-hour × the actual output charging amount of the mobile charging terminal 50 + the fee generated by the mobile charging terminal 50 moving the corresponding distance. After the user completes the payment through the user terminal, the charging process is completed. After the user terminal unit completes the payment, it can also feedback the payment information to the mobile charging terminal 50. After receiving the payment completion information, the mobile charging terminal 50 can receive a charging order again or enter the charging process of the energy storage device. Among them, the mobile charging terminal 50 can be charged during the low valley period of the power grid, thereby reducing the application cost of the vehicle mobile charging system.
[0091] As Figure 4 shown, the above-mentioned mobile charging method of the embodiment is executed by a mobile charging system, and the mobile charging system includes: a charging order intelligent terminal 10, an operation platform 30, a mobile charging terminal 20, and a user terminal 40; this device can be implemented in a hardware and / or software manner. The mobile charging method specifically includes the following steps:
[0092] Before the vehicle 20 to be charged is charged, install the charging order intelligent terminal 10 at the charging port of the vehicle 20 to be charged. The vehicle 20 to be charged is in a state of waiting to be charged, and the vehicle 20 to be charged can be locked;
[0093] S200. The charging order intelligent terminal 10 obtains relevant information of the vehicle 20 to be charged and sends the relevant information to the operation platform 30 or the user terminal 40;
[0094] S300. The operation platform 30 receives the relevant information sent by the charging order intelligent terminal 10 and generates a charging order according to the relevant information;
[0095] S400. The mobile charging terminal 50 receives and responds to the charging order, moves to the location of the vehicle 20 to be charged according to the charging order, removes the charging order intelligent terminal 10, and then provides a charging service for the vehicle 20 to be charged;
[0096] S500. After charging is completed, the operator pulls out the charging gun of the mobile charging terminal 50 and places the charging order intelligent terminal in its original position at the charging port. The mobile charging terminal 50 sends the charging data to the cloud operation system platform 30. The operation platform 30 generates payment information according to the charging data such as the charging amount, charging voltage, and current. For example, the operation platform 30 sets different measurement values according to the charging method of AC slow charging or DC fast charging selected by the user, the charging amount, and the moving distance of the mobile charging terminal 50, and generates payment information in combination with the pricing formula, and sends the payment information to the user terminal. The payment information may include the fees to be paid by the user. For example, the fee to be paid is the electricity price per kilowatt-hour × the actual output charging amount of the mobile charging terminal 50 + the fee generated by the mobile charging terminal 50 moving the corresponding distance.
[0097] S600. The operation platform 30 sends the payment information to the user terminal 40, and the user completes the payment at the user terminal. The operation platform 30 may send the payment completion information to the mobile charging terminal 50. After receiving the payment completion information, the mobile charging terminal 50 can receive another charging order or enter the process of replenishing the power of the energy storage device. Among them, the mobile charging terminal 50 can replenish the power during the low grid load period, thereby reducing the application cost of the vehicle mobile charging system.
[0098] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit them; although the present invention has been described in detail with reference to the foregoing embodiments, those of ordinary skill in the art should understand that they can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements for some of the technical features; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the present invention.
Claims
1. A mobile charging system based on a charging order intelligent terminal, characterized in that: include A charging order intelligent terminal, which is used to obtain relevant information of the vehicle to be charged and can send the relevant information to the operation platform or the user terminal; it is also used to receive the charging order feedback from the operation platform and display the charging order status through the sound and light module; an operation platform, configured to receive relevant information sent by the charging order intelligent terminal and synchronize the relevant information to the user terminal, and generate a charging order according to the relevant information; a mobile charging terminal, used to receive and respond to the charging order, and move to the location of the vehicle to be charged according to the charging order, unlock and remove the charging order intelligent terminal, and then provide charging service for the vehicle to be charged, and send charging data after charging is completed; the operation platform generates payment information according to the charging data, and feeds back the charging data and the payment information to the user terminal; A user terminal is used to receive the relevant information sent by the charging order smart terminal or the relevant information, the charging data and the payment information sent by the operation platform.
2. The mobile charging system based on the charging order intelligent terminal according to claim 1 is characterized in that: The relevant information includes The charging order intelligent terminal obtains information of the vehicle to be charged by communicating with the vehicle to be charged; The charging order intelligent terminal obtains the positioning data of the vehicle to be charged through its own positioning module; The ambient temperature of the vehicle to be charged obtained by the charging order intelligent terminal through the temperature control module; The charging order intelligent terminal triggers a charging request through the HMI interface.
3. The mobile charging system based on the charging order intelligent terminal according to claim 2 is characterized in that: The information of the vehicle to be charged includes SOC power, vehicle BMS temperature and charging voltage.
4. The mobile charging system based on the charging order intelligent terminal according to claim 3 is characterized in that: The operation platform includes an acquisition unit, a processing unit and a distribution unit; The acquisition unit is connected to the mobile charging terminal, and is used to acquire the power parameter and location parameter of the mobile charging terminal; The processing unit is used to receive the relevant information sent by the charging order intelligent terminal and synchronize the relevant information to the user terminal, and also generate a charging order according to the relevant information and feed the charging order back to the charging order intelligent terminal; The allocation unit is used to send the charging order to the mobile charging terminal according to the power parameter.
5. The mobile charging system based on the charging order intelligent terminal according to claim 4 is characterized in that: The mobile charging terminal includes a charging management unit; The charging management unit is connected to the operation platform; when the mobile charging terminal is charging the vehicle to be charged, the charging management unit is used to obtain the charging data in real time and send the charging data to the operation platform; The operation platform is also used to forward the charging data to the user terminal.
6. The mobile charging system based on the charging order intelligent terminal according to claim 5 is characterized in that: The operation platform also includes a fee management unit; The charging data includes battery information of the vehicle to be charged and charging information of the mobile charging terminal; The fee management unit is connected to the charging management unit. After the mobile charging terminal completes charging the vehicle to be charged, the charging management unit is further used to send the battery information of the vehicle to be charged and the charging information of the mobile charging terminal to the fee management unit; The fee management unit is used to perform payment calculation and generate payment information based on the battery information of the vehicle to be charged and the charging information of the mobile charging terminal, and to feed back the payment information to the user terminal, and to feed back to the mobile charging terminal after the user terminal unit completes the payment.
7. A mobile charging method based on a charging ordering intelligent terminal, characterized in that: The method is executed by a mobile charging system, wherein the mobile charging system includes: a charging ordering intelligent terminal, an operation platform, a mobile charging terminal and a user terminal; The mobile charging method comprises: The charging order intelligent terminal obtains relevant information of the vehicle to be charged and sends the relevant information to the operation platform or the user terminal; The operation platform receives the relevant information sent by the charging order intelligent terminal, and generates a charging order according to the relevant information; The mobile charging terminal receives and responds to the charging order, and moves to the location of the vehicle to be charged according to the charging order, and after removing the charging order intelligent terminal, provides charging service for the vehicle to be charged, and sends charging data after charging is completed; The operation platform generates payment information according to the charging data, and feeds back the charging data and the payment information to the user terminal.
8. The mobile charging method based on the charging order intelligent terminal according to claim 7 is characterized in that: The operation platform includes an acquisition unit, a processing unit and a distribution unit; The mobile charging method comprises: The acquiring unit acquires a power parameter and a location parameter of the mobile charging terminal; The processing unit receives the relevant information sent by the charging order intelligent terminal and synchronizes the relevant information to the user terminal, and further generates a charging order according to the relevant information and feeds the charging order back to the charging order intelligent terminal; The allocation unit sends the charging order to the mobile charging terminal according to the power parameter.
9. The mobile charging method based on the charging order intelligent terminal according to claim 8 is characterized in that: The mobile charging terminal includes a charging management unit; The mobile charging method comprises: When the mobile charging terminal is charging the vehicle to be charged, the charging management unit acquires the charging data in real time and sends the charging data to the operation platform; The operation platform forwards the charging data to the user terminal.
10. The mobile charging method based on the charging order intelligent terminal according to claim 9 is characterized in that: The operation platform also includes a fee management unit; the charging data includes battery information of the vehicle to be charged and charging information of the mobile charging terminal; The mobile charging method comprises: After the mobile charging terminal completes charging the vehicle to be charged, the charging management unit sends the battery information of the vehicle to be charged and the charging information of the mobile charging terminal to the fee management unit; The fee management unit generates payment information by performing payment calculation based on the battery information of the vehicle to be charged and the charging information of the mobile charging terminal, and feeds back the payment information to the user terminal, and feeds back to the mobile charging terminal after the user terminal unit completes the payment.
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