Charging rescue system and method for all-electric vehicles
11529874 ยท 2022-12-20
Assignee
Inventors
Cpc classification
Y02T90/16
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
Y02T10/72
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
H02J7/342
ELECTRICITY
B60L3/0046
PERFORMING OPERATIONS; TRANSPORTING
Y02T90/14
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
B60L50/60
PERFORMING OPERATIONS; TRANSPORTING
B60L58/10
PERFORMING OPERATIONS; TRANSPORTING
H02J7/00034
ELECTRICITY
Y02T10/70
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
B60L53/11
PERFORMING OPERATIONS; TRANSPORTING
B60L53/665
PERFORMING OPERATIONS; TRANSPORTING
H02J7/00
ELECTRICITY
Y02T90/12
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
B60L53/57
PERFORMING OPERATIONS; TRANSPORTING
Y02T90/167
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
Y04S30/14
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
Y02T10/7072
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
International classification
B60L3/00
PERFORMING OPERATIONS; TRANSPORTING
H02J7/00
ELECTRICITY
B60L50/60
PERFORMING OPERATIONS; TRANSPORTING
B60L53/57
PERFORMING OPERATIONS; TRANSPORTING
H02J7/34
ELECTRICITY
B60L53/10
PERFORMING OPERATIONS; TRANSPORTING
B60L53/66
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A charging rescue system and method for all-electric vehicles comprises: a rescue vehicle APP, a charging rescue vehicle, a rescued vehicle APP, and a rescue platform. The rescue vehicle APP comprises a user module, an order module, a monitoring module, and a communication module. The charging rescue vehicle comprises a controller, a GPS device, a direct current battery charger, an alternating current battery charger, and a measuring module. The rescued vehicle APP comprises a user module, an order module, a payment module, and a communication module. The rescue platform comprises an access module, an order execution module, a vehicle selection module, a rescue vehicle monitoring module, a bill management module, and a user authentication module.
Claims
1. A charging rescue system for all-electric vehicles, comprising: a rescue vehicle APP, a charging rescue vehicle, a rescued vehicle APP, and a rescue platform, wherein the rescue vehicle APP comprises a user module, an order module, a monitoring module, and a communication module; the charging rescue vehicle comprises a controller, a GPS device, a direct current battery charger, an alternating current battery charger, and a measuring module; the rescued vehicle APP comprises a user module, an order module, a payment module, and a communication module; and the rescue platform comprises an access module, an order execution module, a vehicle selection module, a rescue vehicle monitoring module, a bill management module, and a user authentication module; a serial port of the controller in the charging rescue vehicle is connected to the direct current battery charger, the alternating current battery charger and the measuring module simultaneously, the other serial port of the controller is connected to the GPS device, and a third serial port of the controller is connected to the monitoring module of the rescue vehicle APP; the user module, the order module and the monitoring module of the rescue vehicle APP are connected to the communication module simultaneously; the user module, the order module and the payment module of the rescued vehicle APP are connected to the communication module simultaneously; and the communication modules of the rescue vehicle APP and the rescued vehicle APP are connected to the access module of the rescue platform through internet, and the access module of the rescue platform is connected to the order execution module, the vehicle selection module, the bill management module, the rescue vehicle monitoring module and the user authentication module.
2. A charging rescue method for all-electric vehicles, comprising: 1). An electric vehicle driver selects a one-key rescue function on a rescued vehicle APP; 2). The rescued vehicle APP packages user information and GPS information and sends a rescue application; 3). A rescue platform acquires the rescue application, parses the user information and the GPS information, and generates an order table; 4). a vehicle selection module of the rescue platform calculates a priority using an optimal algorithm according to the GPS information of the current charging rescue vehicle; 5). the rescue platform pushes a charging rescue vehicle list to operating personnel according to a descending order of the priority; 6). the operating personnel select a charging rescue vehicle having the highest priority and assign a rescue order; 7). the rescue platform estimates a rescue expense and time according to the GPS information of the charging rescue vehicle that accepts the order; 8). the charging rescue vehicle acquires the order, and accepts the order; 9). the rescue platform pushes the estimated expense and time and a charging rescue vehicle state to the rescued vehicle APP; 10). the electric vehicle driver selects whether to accept the rescue order; 11). an order execution module of the rescue platform informs a rescue vehicle APP when the rescue is accepted, and a rescue action is started; 12). in a rescue process, a rescue vehicle monitoring module of the rescue platform acquires the GPS of the charging rescue vehicle in real time, and pushes the GPS to the rescued vehicle APP, so that the electric vehicle driver could know a position, a speed and an expected arrival time of the charging rescue vehicle in real time; 13). when the charging rescue vehicle is arrived, the electric vehicle driver selects a charging mode, and the rescue vehicle charges the rescued vehicle; 14). in a charging process, the charging rescue vehicle sends data of a battery charger and a measuring module to the rescue platform in real time; 15). the rescue platform pushes real-time charging data of the charging rescue vehicle to the rescued vehicle APP through the order execution module; 16). a user could see the charging process on the rescued vehicle APP; 17). when charging is completed, order information pushed by the rescue vehicle APP is sent to the rescued vehicle APP via the rescue platform; 18). the rescued vehicle APP informs the user of payment and evaluation; 19). the rescued vehicle APP sends payment and evaluation information to the rescue platform; and 20). the rescue platform finishes the rescue and presses the rescue order into a bill management module.
3. The charging rescue method for the all-electric vehicles is specifically as follows: 1) Firstly, the rescued vehicle APP is installed on a mobile phone of the electric vehicle driver; a user module in the rescued vehicle APP is connected to the access module of the rescue platform through a communication module and internet; the user information is registered in a user authentication module of the rescue platform; and relevant information of the all-electric vehicles is bound; 2) When the all-electric vehicles break down due to power shortage, the driver runs the rescued vehicle APP on the mobile phone; the rescued vehicle APP automatically starts the user module; the user module is connected to the access module of the rescue platform with a 3G/4G network through the communication module and internet; and the driver enters a main page of the rescued vehicle APP after passing the authentication of the rescue platform and the user authentication module; at this time, the driver uses the one-key rescue function, and the order module is immediately started to send rescue application information, user data and current GPS position data of the user to the rescue platform through the communication module and internet, and the access module of the rescue platform acquires the data and immediately pushes such data to the order execution module; 3) A complete order form is generated in the order execution module, and meanwhile, the acquired user information is matched with vehicle data in a database by virtue of the order form; and the vehicle data and the GPS data are packaged and pushed to the vehicle selection module; 4) the vehicle selection module acquires a vehicle optimization application from the order execution module, then acquires related GPS data, idle state data and vehicle type matching data from the monitoring module of the rescue vehicle APP according to the GPS information of the rescued data and the vehicle data, and synthesizes the data; and each rescue vehicle is subjected to optimizing degree grading according to an optimal strategy algorithm, and the data is pushed to the order execution module according to a descending order of grades; 5) the operating personnel of the rescue platform select the most suitable vehicle according to the optimizing degree grades, and allocate the order to the rescue vehicle; 6) the rescue vehicle APP is installed on a display terminal of the rescue vehicle, and when the rescue vehicle works, the display terminal is started, and the rescue vehicle APP is connected to the rescue platform through the communication module and internet, and is authenticated by the user authentication module on the rescue platform; a monitoring module is provided in the rescue vehicle APP, and is in communication with a controller of the charging rescue vehicle through Bluetooth, the serial port, WIFI or Ethernet, and the controller of the charging rescue vehicle is connected to the direct current battery charger, the alternating current battery charger, the measuring module and the GPS device through the serial port; the monitoring module of the rescue vehicle APP acquires related data on a current, a voltage and a temperature of the direct current battery charger and the alternating current battery charger from the controller of the charging rescue vehicle; related data on electric quantity and a charging time of the measuring module and the GPS position data of the charging rescue vehicle are packaged and sent to the access module of the rescue platform through the communication module and internet, and the access module sends the data to the monitoring module of the rescue vehicle APP; and the monitoring module of the rescue vehicle APP monitors a position of each rescue vehicle, an alternating current, states of the direct current and alternating current battery chargers and measuring module data; 7) when the order data is sent to the rescue vehicle APP by the order execution module of the rescue platform through the communication module and internet, the order module in the rescue vehicle APP acquires order information and displays the order information to the rescue vehicle driver, and a rescue vehicle worker selects to accept or refuse according to his situation; the rescue platform reselects the rescue vehicle in case of selecting to refuse; the rescue platform calculates a distance and an expected rescue expense according to GPS of both the rescue vehicle and the rescued vehicle in case of selecting to accept; the rescue platform sends the expected expense, an expected arrival time and the relevant information of the charging rescue vehicle to the rescued vehicle APP; the rescued vehicle APP receives the information; the all-electric vehicle driver reviews whether to accept an order content; the order takes effect when the all-electric vehicle driver selects to accept the order; the order execution module of the rescue platform tracks an order execution process; and the order execution module acquires rescue vehicle data in the monitoring module of the rescue vehicle APP and shares the rescue vehicle data to the order module of the rescued vehicle APP through the communication module and internet; and the all-electric vehicle driver may inquire a position, a speed and an expected arrival time state of the rescued vehicle in the order module in real time; 8) the charging rescue vehicle arrives at the position of the rescued vehicle; the user selects a charging mode and the rescued vehicle is charged by the charging rescue vehicle; the monitoring module in the rescue vehicle APP acquires data of the rescue vehicle measuring module, the alternating current battery charger and the direct current battery charger in real time; the data is packaged and sent to the rescue vehicle monitoring module of the rescue platform through the communication module and internet t, and shared through the order execution module and the order module of the rescued vehicle APP; and the all-electric vehicle driver sees a real-time charging situation of the charging rescue vehicle from the order module; 9) when charging is completed, the rescued vehicle APP packages the related data of the charging and sends such data to the rescue vehicle monitoring module of the rescue platform through the communication module and internet; the rescue vehicle monitoring module transfers the data to the order execution module; the order execution module generates a bill and pushes the bill to the rescued vehicle APP through the access module; the rescued vehicle APP invokes a payment module to pay by the user; the user evaluates the service after the payment is completed; the rescued vehicle APP sends a payment state and evaluation information to the order execution module of the rescue platform through the communication module and internet after the payment and evaluation are completed; and the order execution module finishes the order, and then presses an order record into a bill management module for storage, so as to facilitate query of the user.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
DETAILED DESCRIPTION OF THE EMBODIMENTS
(3) Referring to
(4) A charging rescue method for all-electric vehicles comprises:
(5) 1). An electric vehicle driver selects a one-key rescue function on a rescued vehicle APP;
(6) 2). The rescued vehicle APP packages user information and GPS information and sends a rescue application;
(7) 3). A rescue platform acquires the rescue application, parses the user information and the GPS information, and generates an order table;
(8) 4). A vehicle selection module of the rescue platform calculates a priority using an optimal algorithm according to the GPS information of the current charging rescue vehicle;
(9) 5). The rescue platform pushes a charging rescue vehicle list to operating personnel according to a descending order of the priority;
(10) 6). The operating personnel select a charging rescue vehicle having the highest priority and assign a rescue order;
(11) 7). The rescue platform estimates an rescue expense and time according to the GPS information of the charging rescue vehicle accepting the order;
(12) 8). The charging rescue vehicle acquires the order, and accepts the order;
(13) 9). The rescue platform pushes the estimated expense and time and a charging rescue vehicle state to the rescued vehicle APP;
(14) 10). The electric vehicle driver selects whether to accept the rescue order;
(15) 11). The rescue platform and an order execution module inform a rescue vehicle APP when selecting to accept the rescue, and a rescue action is started;
(16) 12). In a rescue process, a rescue vehicle monitoring module of the rescue platform acquires the GPS of the charging rescue vehicle in real time, and pushes the GPS to the rescued vehicle APP, so that the electric vehicle driver could know a position, a speed and an expected arrival time of the charging rescue vehicle in real time;
(17) 13). When the charging rescue vehicle arrives, the electric vehicle driver selects a charging mode, and the rescue vehicle charges the rescued vehicle;
(18) 14). In a charging process, the charging rescue vehicle sends data of a battery charger and a measuring module to the rescue platform in real time;
(19) 15). The rescue platform pushes real-time charging data of the charging rescue vehicle to the rescued vehicle APP through an order execution module;
(20) 16). A user could see the charging process on the rescued vehicle APP;
(21) 17). When charging is completed, order information pushed by the rescue vehicle APP is sent to the rescued vehicle APP via the rescue platform;
(22) 18). The rescued vehicle APP informs the user of payment and evaluation;
(23) 19). The rescued vehicle APP sends payment and evaluation information to the rescue platform;
(24) 20). The rescue platform finishes the rescue and presses the rescue order into a bill management module.
(25) The charging rescue method for the all-electric vehicles is specifically as follows:
(26) 1) Firstly, the rescued vehicle APP is installed on a mobile phone of the electric vehicle driver; a user module in the rescued vehicle APP is connected to the access module of the rescue platform through a communication module and Intelnet; the user information is registered in a user authentication module of the rescue platform; and relevant information of the all-electric vehicles is bound;
(27) 2) When the all-electric vehicles break down due to power shortage, the driver runs the rescued vehicle APP on the mobile phone; the rescued vehicle APP automatically starts the user module; the user module is connected to the access module of the rescue platform with a 3G/4G network through the communication module and Intelnet; and the driver enters a main page of the rescued vehicle APP after passing the authentication of the rescue platform and the user authentication module; at this time, the driver users the one-key rescue function, and the order module is immediately started to send rescue application information, user data and current GPS position data of the user to the rescue platform through the communication module and Intelnet; and the access module of the rescue platform acquires the partial data and immediately pushes such data to the order execution module;
(28) 3) A complete order form is generated in the order execution module, and meanwhile, the acquired user information is matched with vehicle data in a database by virtue of the order form; and the vehicle data and the GPS data are packaged and pushed to the vehicle selection module;
(29) 4) The vehicle selection module acquires a vehicle optimization application from the order execution module, then acquires related GPS data, idle state data and vehicle type matching data from the monitoring module of the rescue vehicle APP according to the GPS information of the rescued data and the vehicle data, and synthesizes the data; and each rescue vehicle is subjected to optimizing degree grading according to an optimal strategy algorithm, and the data is pushed to the order execution module according to a descending order of grades;
(30) 5) The operating personnel of the rescue platform select the most suitable vehicle according to the optimizing degree grading, and allocate the order to the rescue vehicle;
(31) 6) The rescue vehicle APP is installed on a display terminal of the rescue vehicle, and when the rescue vehicle works, the display terminal is started, and the rescue vehicle APP is connected to the rescue platform through the communication module and Intelnet, and is authenticated by the user authentication module on the rescue platform; a monitoring module is provided in the rescue vehicle APP, and is in communication with a controller of the charging rescue vehicle through Bluetooth, the serial port, WIFI or Ethernet; and the controller of the charging rescue vehicle is connected to the direct current battery charger, the alternating current battery charger, the measuring module and the GPS device through the serial port; the monitoring module of the rescue vehicle APP acquires related data on a current, a voltage and a temperature of the direct current battery charger and the alternating current battery charger from the controller of the charging rescue vehicle; related data on electric quantity and a charging time of the measuring module and the GPS position data of the charging rescue vehicle are packaged and sent to the access module of the rescue platform through the communication module and Intelnet; the access module sends the data to the monitoring module of the rescue vehicle APP; and the monitoring module of the rescue vehicle APP monitors a position of each rescue vehicle, an alternating current, states of the direct current and alternating current battery chargers and measuring module data;
(32) 7) When the order data is sent to the rescue vehicle APP by the order execution module of the rescue platform through the communication module and internet, the order module in the rescue vehicle APP acquires order information and displays the order information to the rescue vehicle driver, and a rescue vehicle worker selects to accept or refuse according to his situation; the rescue platform reselects the rescue vehicle in case of selecting to refuse; the rescue platform calculates a distance and an expected rescue expense according to GPS of both the rescue vehicle and the rescued vehicle in case of selecting to accept; the rescue platform sends the expected expense, an expected arrival time and the relevant information of the charging rescue vehicle to the rescued vehicle APP; the rescued vehicle APP receives the information; the all-electric vehicle driver reviews whether to accept an order content; the order takes effect when the all-electric vehicle driver selects to accept the order; the order execution module of the rescue platform tracks an order execution process; and the order execution module acquires rescue vehicle data in the monitoring module of the rescue vehicle APP and shares the rescue vehicle data to the order module of the rescued vehicle APP through the communication module and Intelnet; and the all-electric vehicle driver could inquires a position, a speed and an expected arrival time state of the rescued vehicle in the order module in real time;
(33) 8) The charging rescue vehicle arrives at the position of the rescued vehicle; the user selects a charging mode and the rescued vehicle is charged by the charging rescue vehicle; the monitoring module in the rescue vehicle APP acquires data of the rescue vehicle measuring module, the alternating current battery charger and the direct current battery charger in real time; the data is packaged and sent to the rescue vehicle monitoring module of the rescue platform through the communication module and Intelnet, and shared through the order execution module and the order module of the rescued vehicle APP; and the all-electric vehicle driver sees a real-time charging situation of the charging rescue vehicle from the order module;
(34) 9) When charging is completed, the rescued vehicle APP packages the related data of the charging and sends such data to the rescue vehicle monitoring module of the rescue platform through the communication module and Intelnet; the rescue vehicle monitoring module transfers the data to the order execution module; the order execution module generates a bill and pushes the bill to the rescued vehicle APP through the access module; the rescued vehicle APP calls a payment module to pay by the user; the user evaluates the service after the payment is completed; the rescued vehicle APP sends a payment state and evaluation information to the order execution module of the rescue platform through the communication module and Intelnet after the payment and evaluation are completed; and the order execution module finishes the order, and then presses an order record into a bill management module for storage, so as to facilitate query of the user.