WO2020042787A1 - 一种租车方法及系统 - Google Patents
一种租车方法及系统 Download PDFInfo
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- WO2020042787A1 WO2020042787A1 PCT/CN2019/096100 CN2019096100W WO2020042787A1 WO 2020042787 A1 WO2020042787 A1 WO 2020042787A1 CN 2019096100 W CN2019096100 W CN 2019096100W WO 2020042787 A1 WO2020042787 A1 WO 2020042787A1
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- G—PHYSICS
- G06—COMPUTING OR CALCULATING; COUNTING
- G06Q—INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
- G06Q30/00—Commerce
- G06Q30/06—Buying, selling or leasing transactions
- G06Q30/0601—Electronic shopping [e-shopping]
- G06Q30/0631—Recommending goods or services
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- G—PHYSICS
- G06—COMPUTING OR CALCULATING; COUNTING
- G06Q—INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
- G06Q30/00—Commerce
- G06Q30/06—Buying, selling or leasing transactions
- G06Q30/0601—Electronic shopping [e-shopping]
- G06Q30/0609—Qualifying participants for shopping transactions
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- G—PHYSICS
- G06—COMPUTING OR CALCULATING; COUNTING
- G06Q—INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
- G06Q30/00—Commerce
- G06Q30/06—Buying, selling or leasing transactions
- G06Q30/0601—Electronic shopping [e-shopping]
- G06Q30/0633—Managing shopping lists, e.g. compiling or processing purchase lists
- G06Q30/0635—Managing shopping lists, e.g. compiling or processing purchase lists replenishment orders; recurring orders
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- G—PHYSICS
- G06—COMPUTING OR CALCULATING; COUNTING
- G06Q—INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
- G06Q30/00—Commerce
- G06Q30/06—Buying, selling or leasing transactions
- G06Q30/0601—Electronic shopping [e-shopping]
- G06Q30/0639—Locating goods or services, e.g. based on physical position of the goods or services within a shopping facility
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- G—PHYSICS
- G06—COMPUTING OR CALCULATING; COUNTING
- G06Q—INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
- G06Q30/00—Commerce
- G06Q30/06—Buying, selling or leasing transactions
- G06Q30/0645—Rental transactions; Leasing transactions
Definitions
- the present application relates to the technical field of Internet of Vehicles, and in particular, to a method and system for car rental.
- One or more embodiments of the present specification provide a car rental method and system to solve or partially solve the cumbersome technical problems of current car rental methods.
- one or more embodiments of the present specification provide a car rental method, which is applied to a time-sharing rental server; the method includes:
- Another aspect of one or more embodiments of the present specification provides a method for renting a car.
- the method is applied to a time-sharing vendor server.
- the method further includes:
- a car rental order sent by a time-sharing rental server the car-renting order being created by the time-sharing rental server based on a target network car selected by the client from a recommended network car rental, the recommended network car rental being the time-sharing A network rental car calculated by the rental server based on the car rental request sent by the client within a preset distance from the location of the client;
- a time-sharing lease server including:
- a first receiving module configured to receive a car rental request sent by a client
- a calculation module configured to calculate, based on the car rental request, obtain a recommended online car rental within a preset distance from the location of the client and recommend it to the client;
- a creation module configured to create a car rental order based on a target network car rental selected by the client from the recommended network car rental;
- a first sending module configured to send the car rental order to a time-sharing vendor server corresponding to the target network car rental, so that the time-sharing vendor server generates a dynamic verification code according to the car rental order and returns it;
- a second sending module configured to send the dynamic verification code to the client, so that the client generates a code to be verified
- a second receiving module configured to receive the to-be-verified code sent by the client, and forward the to-be-verified code to the time-sharing vendor server, so that the time-sharing vendor server performs Code verification; if the verification is passed, controlling the target network car rental to start a car rental service.
- time-sharing vendor server including:
- a first receiving unit is configured to receive a car rental order sent by a time-sharing rental server, where the car-sharing order is created by the time-sharing rental server based on a target network rental car selected by the client from recommended network rental cars, the recommendation
- the network rental car is a network rental car calculated by the time-sharing rental server based on the car rental request sent by the client and located within a preset distance from the client's location;
- the first generating unit is configured to generate a dynamic verification code based on the car rental order and send it back to the time-sharing rental server, so that the time-sharing rental server forwards the dynamic verification code to the client, and in turn A code to be verified generated by the client based on the dynamic verification code;
- a verification unit configured to verify the code to be verified
- the control unit is configured to control the target network car rental to start a car rental service if the verification is passed.
- a time-sharing rental server configured to receive a car rental request sent by a client; based on the car rental request, calculate and obtain a recommended online car rental within a preset distance from the location of the client and recommend it to the client; based on Creating, by the client, a car rental order from a target network rental car selected from the recommended network rental cars; sending the car rental order to a time-sharing vendor server corresponding to the target network rental car;
- the time-sharing leasing vendor server is configured to generate a dynamic verification code according to the car rental order and return it to the time-sharing leasing server;
- the time-sharing lease server configured to send the dynamic verification code to the client, so that the client generates a code to be verified
- the time-sharing lease server is configured to receive the code to be verified sent by the client, and forward the code to be verified to the time-sharing vendor server;
- the time-sharing leasing vendor server is configured to verify the code to be verified; if the verification is successful, control the target network car rental to start a car rental service.
- One or more embodiments of the present specification disclose a car rental method, which includes:
- One or more embodiments of the present specification disclose a computer-readable storage medium having a computer program stored thereon, which is executed by a processor to implement the steps of the above method.
- One or more embodiments of the present specification disclose a computer device including a memory, a processor, and a computer program stored on the memory and executable on the processor. When the processor executes the program, the foregoing method is implemented. step.
- one or more embodiments of this specification have the following beneficial effects or advantages:
- One or more embodiments of the present specification disclose a method and system for renting a car.
- the method is applied to a time-sharing lease server.
- the time-sharing lease server is used instead of the time-sharing vendor server to implement car rental.
- a car rental order is created based on the target network rental car selected by the client from the recommended network rental car; the car rental order is sent to a time-sharing vendor server corresponding to the target network car rental, so that the time-sharing vendor server Generate a dynamic verification code according to the car rental order, and transparently transmit the data through the time-sharing rental server, so that the time-sharing vendor server can verify the code to be verified generated by the verification client, and control the target network car to start the car rental service .
- the client can use the time-sharing leasing server to realize the rental of car rental services provided by different manufacturers. For example, you only need to send a car rental request and enter a verification code to realize car rental. The operation is simple and fast, which can optimize the user experience.
- FIG. 1 illustrates an implementation process diagram of a car rental method on a time-sharing server side according to one or more embodiments of the present specification
- FIG. 2 shows a process diagram of credit exemption according to one or more embodiments of the present specification
- FIG. 3 is a diagram of a car rental process on a server side of a time-sharing vendor according to one or more embodiments of the present specification
- FIG. 4 shows a specific implementation process chart of a car rental according to one or more embodiments of the present specification
- FIG. 5 shows a specific implementation process diagram of returning a car according to one or more embodiments of the present specification
- FIG. 6 is a schematic structural diagram of a rental server according to one or more embodiments of the present specification.
- FIG. 7 is a schematic structural diagram of a time-sharing vendor server according to one or more embodiments of the present specification.
- FIG. 8 shows a schematic diagram of a computer device according to one or more embodiments of the present specification.
- One or more embodiments of the present specification provide a method for renting a car, which is applied to a third-party server.
- One or more embodiments of the present specification are referred to as a time-sharing lease server.
- the time-sharing leasing server is provided with a corresponding application program in the client.
- the application has a built-in applet plug-in for data interaction with the time-sharing leasing vendor server.
- One or more embodiments of this specification insert the applet Seen as a third-party time-sharing platform, all orders for car (automobile) leasing are processed by both the time-sharing server and the time-sharing vendor server.
- the time-sharing server and the time-sharing vendor server are two independent servers.
- Existing car rental methods are generally that the time-sharing leasing manufacturer installs its own APP (software application) on the client and opens the APP to provide users with car rental functions.
- the time-sharing rental vendor does not need to install an APP on the client, but instead uses the application provided by the time-sharing rental server to send the car rental order to the time-sharing rental server.
- the leasing server and the time-sharing leasing vendor server are combined to provide users with car rental functions.
- the basis for realizing this method is that the time-sharing vendor server has a built-in applet plug-in in the application provided by the time-sharing lease server. This applet plug-in (that is, a third-party time-sharing rental platform) can remove user needs from customers.
- the end side sends it to the time-sharing lease server, and then the time-sharing lease server and the time-sharing vendor server perform data interaction, and the two combine to realize the car rental function.
- a total applet (such as named shared car) can be built into the application.
- the applet plug-in After the applet plug-in is turned on, the corresponding time-sharing vendor server can also be displayed.
- Subroutine plug-ins These subroutine plug-ins can be named after their respective brands, such as brand A shared car, brand B shared car, and so on. Each subroutine plug-in can receive the user's operation and send specific operation information to the time-sharing lease server.
- the time-sharing lease server and the corresponding time-sharing vendor server perform data interaction, and the two combine to realize the car rental function.
- FIG. 1 is an implementation process diagram of a car rental method provided by one or more embodiments of this specification.
- the method is executed on a time-sharing server side, and specifically includes the following steps:
- Step 11 Receive a car rental request sent by the client.
- the client includes, but is not limited to, smart phones, computers (notebook computers, desktop computers, all-in-one computers, etc.), PADs, and other smart devices.
- the car rental request is also called a car (also called an auto) car rental request.
- the car (automobile) involved in one or more embodiments of this specification includes but is not limited to: electric cars, gasoline cars, battery cars (electric motorcycles), fuel motorcycles, electric bikes, balance bikes, bicycles, etc.
- An application corresponding to the time-sharing server is installed in the client.
- a user When a user has a car demand, he will operate the application corresponding to the time-sharing rental server on the client to generate a car rental request. For example, log in to the application corresponding to the time-sharing rental server and open the time-sharing rental server to operate to generate a car rental request. And sent to the time-sharing server. On the time-sharing rental server side, the car rental request sent by the client will be received.
- a deposit-free service before receiving a car rental request sent by a client, a deposit-free service can be implemented based on user credit.
- FIG. 2 it is a diagram of an implementation process of credit exemption in one or more embodiments of the present specification.
- the application program corresponding to the time-sharing leasing server can generate credit points based on the user's historical credit (such as repayment, borrowing, buying and selling, etc.). If the user's credit score is higher than a certain value, the user can be provided with a deposit-free service for the user. Without the need to pay a deposit, he can rent a shared car in any scene at will to solve the problem of user funds security and optimize the user experience.
- the time-sharing rental server encrypts and saves the verification image uploaded by the user, and can use the car to output it to the time-sharing rental manufacturer server for saving. Upload once and use multiple times to optimize user experience.
- Step 201 The time-sharing rental server receives a car rental service appointment request sent by the client.
- the car rental service agreement request carries user information, credit points, and the like of the client.
- the time-sharing rental server will retrieve a judgment rule from the credit database based on the car rental service agreement request; the judgment rule may be a judgment rule for credit points, for example, the user ’s credit points must meet a preset credit point threshold, such as 600 points and many more.
- step 202 is performed.
- Step 202 The time-sharing leasing server performs user information verification on the client.
- the user information may be verified in the form of an account password or the like, or the user information may be verified using face recognition, etc., which are not limited in one or more embodiments of the present specification.
- step 203 is executed, and the time-sharing lease server retrieves a judgment rule from a credit database based on the car rental service agreement request.
- the time-sharing leasing server and the time-sharing leasing vendor server perform data communication, and the time-sharing leasing generating server calls the judgment rule from the credit database and transmits it to the time-sharing leasing server.
- Step 204 Use the judgment rule to judge the client; a specific judgment method is to judge whether the credit score corresponding to the client meets a preset credit score threshold, and if it is, it means that the client meets the Judgment rules. For example, if the user score reaches 600 points, it means that the client meets the judgment rule.
- step 205 is executed to receive and save the identity certification image sent by the client.
- the identity certificate image is sent to the time-sharing rental server for encrypted storage if the user agrees to output.
- Step 207 The time-sharing leasing server determines whether the client's free credit limit is zero;
- step 208 is performed, and the time-sharing lease server and the client perform a credit pre-authorization agreement signing. Further, the credit-free amount of the client is determined by using the credit score corresponding to the client. The corresponding rent is then mortgaged according to the unsecured amount.
- Step 209 is executed.
- the time-sharing lease server sends the first contract information obtained after the successful signing of the contract to the time-sharing vendor server for storage.
- step 210 the time-sharing leasing server and the client perform fund pre-authorization agreement signing, and execute step 211, and send the second signing information obtained after the successful signing to the branch Lease manufacturer server to save.
- the above is the specific implementation process of using credit exemption. If the user's credit score is higher than a certain value, the user can be provided with a deposit-free service for the user. Without the need to pay a deposit, he can rent a shared car in any scene at will to solve the problem of user funds security and optimize the user experience.
- step 12 based on the car rental request, a recommended online car rental within a preset distance from the location of the client is calculated and recommended to the client.
- the recommended online car rental is calculated and obtained to the client recommend.
- the basic parameter information of online car rental includes at least one or more of the following dimensions: user experience, location of online car rental, parking lot history, parking cost, operating efficiency, travel frequency, and online car rental power.
- the preset distance range in this embodiment can be arbitrarily set.
- All the internet rental cars are recommended to the client as recommended internet rental cars; the internet rental cars can also be sorted first, and then a preset number of online rental cars ranked first is recommended to the client as recommended internet rental cars.
- the time-sharing rental server first determines all network rental cars (50) that are 500 meters away from the client location.
- weights can be set for each dimension.
- the weight of each dimension can be set the same, or the weight setting proportion of a certain dimension can be increased.
- the weight of the power dimension is set to 0.5
- the total weight of other dimensions is 0.5 (the weight of all dimensions is 1), and so on.
- the sorting can also sort a certain dimension as itself, for example, sorting according to the amount of electricity or sorting according to the parking cost.
- multiple methods can be used for recommendation. For example, you can use the form of a list to sort and recommend the recommended online car rental based on the comprehensive score. You can also display the location of each car rental on the map, and display the license plate number, car model, manufacturer, comprehensive rating, etc., which can be selected by the user.
- Step 13 Create a car rental order based on the target network car rental selected by the client from the recommended network car rental.
- the car rental order carries the basic information (such as the car model and the designated boarding position) of the target online car rental, and the contract information of the time-share rental vendor server.
- the designated boarding position is the boarding position reserved by the user through the client, and may be different from the client's location.
- the car rental order is also sent to a credit database for recording, and a credit database creates a performance record, In order to include this rental car in the user's credit evaluation.
- Step 14 Send the car rental order to a time-sharing rental vendor server corresponding to the target network car rental, so that the time-sharing rental vendor server generates a dynamic verification code according to the car rental order and sends it back.
- the time-sharing leasing vendor server verifies the contract information carried in the car rental order. If the verification passes, it will further generate a dynamic verification code and return it to the time-sharing leasing server.
- Step 15 Send the dynamic verification code to the client, so that the client generates a code to be verified.
- the time-sharing lease server sends a dynamic verification code to the client, and the user corresponding to the client enters a verification code to the client based on the dynamic verification code, so the client can obtain the verification code .
- the verification code to be verified must be consistent with the dynamic verification code. If they are inconsistent (for example, the user entered an error), the verification fails.
- Step 16 receiving the code to be verified sent by the client, and forwarding the code to be verified to the time-sharing vendor server, so that the time-sharing vendor server verifies the code to be verified; If the verification succeeds, controlling the target network car rental to start a car rental service.
- the time-sharing leasing vendor server can control the target network to unlock the car for use by the user.
- the time-sharing leasing manufacturer's server will also control the target network rental car to automatically reach the client's designated car location, which can facilitate the user's use of the car and improve convenience .
- the target network rental car may be locked for a preset time (for example, 15 minutes), if no new instruction is received after the preset time , Control to turn off the car rental service of the target network car rental. If the client needs to use the target network car rental again, it must re-create a car rental order.
- a preset time for example, 15 minutes
- the above method is to implement the car rental implementation process through the combination of a time-sharing rental server and a time-sharing vendor server. For users, it is only necessary to initiate a car rental request to implement a convenient and quick one-click car rental.
- the car rental method is simple and convenient, and Can guarantee the safety of car rental.
- the implementation process of the client returning the car is further included.
- the target network rental car arrives at the destination, parking information is generated and sent to the time-sharing vendor server. Therefore, for the time-sharing rental server, it will receive the parking information forwarded by the time-sharing rental vendor server, where the parking information is generated by the target network rental car after reaching the destination location and sent to the time-sharing rental vendor. Server; then the time-sharing rental server will generate car drop-off reminder information based on the parking information, and send the car drop-off reminder information to the client, so that the client reminds the user, which can be a voice reminder or a It's a text reminder and so on.
- the user when the user needs to return the car, as a time-sharing rental server, it will receive the car return request sent by the client; and then based on the car return request, generate information to be paid and send it to the The client performs payment; generates corresponding result information based on the payment information sent by the client, and sends the result information to the time-sharing leasing vendor server for recording.
- the result information is synchronized to a credit database.
- the client after generating the information to be paid and sending it to the client for payment, it can be determined whether the client has successfully paid based on the payment information sent by the client; if the payment is successful, the result of the successful payment
- the information is sent to the time-sharing leasing vendor server for recording, and the result information of the successful payment is synchronized to the credit database.
- the credit database will record the payment result information, and based on the result information of the payment success, mark the user to complete the performance record, and increase the user's credit score.
- the result information of the payment failure is sent to the time-sharing leasing vendor server for recording, and the result information of the payment failure is synchronized to the credit database, and the credit database generates a repayment reminder. If the payment fails within the specified time, a default record is generated based on the result information of the payment failure, and the user's credit points are deducted.
- an artificial intelligence algorithm is used to calculate and obtain a parking recommended position; and then the parking recommended position is sent to the time-sharing lease.
- the manufacturer server so that the time-sharing rental manufacturer server generates a car return instruction based on the parking recommendation location, and sends it to the target network rental car, so that the target network rental car automatically goes to the parking recommendation location.
- the artificial intelligence algorithm and the basic parameter information of the target network car rental are used to calculate and obtain the parking recommended position.
- the basic parameter information of the target network car rental includes at least one or more of the following dimensions: power, the location of the target network car, the parking lot, the cost of the parking lot, operating efficiency, travel frequency, and power.
- the above dimensions can be set with corresponding weights, and then combined with artificial intelligence algorithms to obtain a comprehensive score for each parking recommended position, and then send one or more calculated parking recommended positions to the user so that the user can Pick.
- Step 31 Receive a car rental order sent by a time-sharing rental server.
- the car rental order is created by the time sharing rental server based on the target network rental car selected by the client from the recommended network rental car
- the recommended network rental car is the car rental sent by the time sharing rental server based on the client.
- a network rental car requesting the calculated distance from the client's location within a preset distance range is requested.
- a car rental instruction may be generated based on the car rental order, and the car rental instruction carries the boarding position and destination specified by the client. Position; sending the car rental instruction to the target network car rental, so that the target network car rental automatically goes to the boarding position designated by the client. Further, the boarding position specified by the client may be different from the current location of the client.
- Step 32 Generate a dynamic verification code based on the car rental order and return it to the time-sharing lease server, so that the time-sharing lease server forwards the dynamic verification code to the client, and the client A code to be verified generated based on the dynamic verification code.
- Step 33 Verify the code to be verified.
- Step 34 If the verification succeeds, control the target network car rental to start a car rental service.
- the target network car rental After controlling the target network car rental to start the car rental service, it will receive the parking information generated and sent by the target network rental car after reaching the destination location; and then forward the parking information to the time-sharing rental server so that all The time-sharing rental server generates a car return reminder information based on the parking information, and sends the car return reminder information to the client.
- the temporary parking location of the target network rental car may not be the destination location.
- a temporary parking message is also generated and sent; the temporary parking message is forwarded to the time-sharing lease server, so that the time-sharing lease
- the server generates corresponding car return reminder information based on the temporary parking message, and sends the corresponding car return reminder information to the client.
- a car return instruction is generated based on the parking recommendation position, and is sent to the target network rental car, so that the target network rental car automatically goes to the parking recommendation position.
- the artificial intelligence algorithm and the basic parameter information of the target network car rental are used to calculate and obtain the parking recommendation. position.
- the basic parameter information of the target network car rental includes at least one or more of the following dimensions: power, the location of the target network car, the parking lot, the cost of the parking lot, operating efficiency, travel frequency, and power.
- the above dimensions can be set with corresponding weights, and then combined with artificial intelligence algorithms to obtain a comprehensive score for each parking recommended position, and then send one or more calculated parking recommended positions to the user so that Users pick.
- FIG. 4 is a process of realizing car rental in terms of a client, a time-sharing rental server, a time-sharing vendor server, a network car rental, and a credit database.
- Step 411 The client sends a car rental request to the time-sharing rental server.
- Step 412 The time-sharing rental server recommends a recommended network rental car near the designated location based on the artificial intelligence algorithm AI algorithm.
- Step 413 Return the recommendation result to the client.
- Step 414 The client selects a target network car rental.
- Step 415 The time-sharing rental server creates a car rental order based on the target network car rental.
- Step 416 The time-sharing lease server sends the car rental order to the time-sharing vendor server for storage.
- Step 417 The time-sharing rental server sends the car rental order to the credit database.
- Step 418 The credit database creates a performance record.
- Step 419 The time-sharing rental manufacturer server generates a car rental instruction based on the car rental order and sends it to the target network car rental.
- Step 420 The target network car rental automatically goes to the boarding position designated by the client based on the car rental instruction.
- Step 421 The information is synchronized to the time-sharing vendor server.
- Step 422 The time-sharing rental manufacturer server generates a dynamic verification code based on the car rental order.
- Step 423 The dynamic verification code is sent to the client.
- Step 424 The client generates a code to be verified.
- Step 425 The time-sharing leasing vendor server performs information verification based on the code to be verified.
- Step 426 After the verification is successful, a door opening instruction is sent to the target network car rental.
- Step 427 The target network car rental starts a car rental service and completes one-click car rental.
- FIG. 5 is the process of realizing the return of the car from the client, the time-sharing platform, the time-sharing vendor server, the online car rental, and the credit database.
- Step 511 The destination network rental car generates parking information after reaching the destination location.
- Step 512 The time-sharing leasing vendor server forwards the parking information to the time-sharing leasing server.
- Step 513 The time-sharing rental server generates a car return reminder information based on the parking information. In addition, parking information is recorded.
- Step 514 The time-sharing lease server sends a car return reminder message to the client.
- Step 515 The client generates and sends a car return request.
- Step 516 The time-sharing rental server calculates a parking recommendation position based on the return request and the AI algorithm.
- Step 517 The time-sharing lease server sends a parking recommendation position to the time-sharing vendor server.
- Step 518 The time-sharing leasing vendor server generates a car return instruction based on the parking recommendation position, and sends the car return instruction to the target network car rental.
- Step 519 The target network rental car automatically goes to the parking recommendation position.
- Step 520 The time-sharing rental server generates information to be paid based on the request for returning the car and sends it to the client for payment.
- Step 521 The time-sharing lease server determines whether the payment is successful based on the payment information sent by the client.
- Step 522 If the payment is successful, synchronize the payment result to the time-sharing vendor server.
- Step 523 If the payment is successful, synchronize the payment result with the credit database.
- Step 524 If the payment fails, the payment result is synchronized to the credit database.
- one or more embodiments of the present specification disclose a method for renting a car, which can be applied to a time-sharing lease server or a time-sharing vendor server.
- the time-sharing rental server will receive a car rental request sent by the client; and then based on the car rental request, calculate the position from the client in a preset Recommend a car rental within a distance range and recommend it to the client; further, the time-sharing rental server may also create a car rental order based on the target web rental car selected by the client from the recommended web rental car; based on the car rental An order obtains a dynamic verification code; and sends the dynamic verification code to the client, so that the client generates a code to be verified; then receives the code to be verified sent by the client, and based on the code to be verified The verification result corresponding to the code controls the target network car rental service.
- the time-sharing rental server itself can generate a dynamic verification code based on the car rental order. It may also be that the car rental order is sent to a time-sharing rental vendor server corresponding to the target network car rental, so that the time-sharing rental vendor server generates a dynamic verification code according to the car rental order and returns it. It can also be a verification code that the time-sharing rental server obtains and stores from the time-sharing vendor server in advance, and after obtaining the car rental order, it can directly provide it to the client based on the car rental order.
- the time-sharing rental server itself controls the target network car rental service to control the target network car rental service to start, or after receiving the to-be-verified code sent by the client, the time-sharing rental server will Forwarding the to-be-verified code to the time-sharing leasing vendor server, so that the time-sharing leasing vendor server verifies the to-be-verified code; if the verification is successful, the time-sharing leasing vendor server controls the target network rental car to open car rental service.
- a time-sharing lease server including:
- a first receiving module 61 configured to receive a car rental request sent by a client
- a calculation module 62 configured to calculate, based on the car rental request, obtain a recommended online car rental within a preset distance from the location of the client and recommend it to the client;
- a creating module 63 configured to create a car rental order based on the target network car rental selected by the client from the recommended network car rental;
- a first sending module 64 configured to send the car rental order to a time-sharing rental vendor server corresponding to the target network car rental, so that the time-sharing rental vendor server generates a dynamic verification code according to the car rental order and returns it;
- a second sending module 65 configured to send the dynamic verification code to the client, so that the client generates a code to be verified
- the second receiving module 66 is configured to receive the to-be-verified code sent by the client, and forward the to-be-verified code to the time-sharing vendor server, so that the time-sharing vendor server sends the The verification code performs verification; if the verification succeeds, controlling the target network car rental to start a car rental service.
- the calculation module 62 is specifically configured to calculate, based on the car rental request, an artificial intelligence algorithm and basic parameter information of all online car rental within the preset distance range. Said recommending a car rental network and recommending to the client.
- the basic parameter information includes one or more of the following dimension information:
- the time-sharing lease server further includes:
- a third receiving module configured to receive a car rental service appointment request sent by the client
- An acquisition module configured to retrieve a judgment rule from a credit database based on the car rental service appointment request
- a first judgment module configured to judge the client by using the judgment rule
- a fourth receiving module configured to, if it is determined that the client meets the determination rule, receive and save an identity certification image sent by the client;
- a second judging module configured to judge whether the client's free credit limit is zero
- a first signing module configured to sign a credit pre-authorization agreement with the client if not, and send the first signing information obtained after the signing is successful to the time-sharing vendor server for storage;
- a second contracting module is configured to perform a fund pre-authorization agreement with the client if yes, and send the second contracting information obtained after the successful signing to the time-sharing vendor server for storage.
- the time-sharing leasing server further includes: a verification module, configured to, after receiving the car rental service appointment request sent by the client, perform user information verification on the client. , Based on the car rental service appointment request, a judgment rule is retrieved from a credit database;
- the first judgment module is specifically configured to judge whether a credit score corresponding to the client meets a preset credit score threshold, and if yes, it indicates that the client satisfies the judgment rule;
- the time-sharing leasing server further includes: a determining module, for determining whether the client's free credit limit is determined by using the credit score corresponding to the client before determining whether the free credit limit of the client is zero.
- the time-sharing lease server further includes:
- the recording module is configured to send the car rental order to a credit database for recording after the car rental order is created based on the target network car rental selected by the client from the recommended network car rental.
- the time-sharing lease server further includes:
- a fifth receiving module configured to receive the parking information forwarded by the time-sharing rental vendor server, where the parking information is generated by the target network rental car after reaching the destination location and sent to the time-sharing vendor server;
- a third sending module is configured to generate a car return reminder information based on the parking information, and send the car return reminder information to the client.
- the time-sharing lease server further includes:
- a sixth receiving module configured to receive a car return request sent by the client
- a generation module configured to generate information to be paid and send the payment to the client for payment based on the return request
- a fourth sending module is configured to generate corresponding result information based on the payment information sent by the client, and send the result information to the time-sharing leasing vendor server for recording.
- the time-sharing lease server further includes:
- a synchronization module configured to synchronize the result information to a credit database.
- the time-sharing lease server further includes:
- An obtaining module configured to obtain a parking recommended position by using an artificial intelligence algorithm based on the return request
- a fifth sending module configured to send the parking recommendation location to the time-sharing rental vendor server, so that the time-sharing rental vendor server generates a car return instruction based on the parking recommendation location, and sends it to the target network rental car, Then, the target network rental car is caused to automatically go to the parking recommendation position.
- the obtaining module is specifically configured to calculate the parking recommended position by combining the artificial intelligence algorithm and basic parameter information of the target network car rental.
- the basic parameter information of the target network car rental includes one or more of the following dimension information:
- Power the location of the target network rental car, parking lot, parking lot cost, operating efficiency, travel frequency, power.
- one or more embodiments of the present specification disclose a time-sharing vendor server, and the method further includes:
- a first receiving unit 71 is configured to receive a car rental order sent by a time-sharing rental server, where the car-sharing order is created by the time-sharing rental server based on a target network rental car selected by the client from a recommended network rental car, where The recommended network car rental is a network rental car that is calculated by the time-sharing rental server based on the car rental request sent by the client and is within a preset distance from the client's location;
- a first generating unit 72 is configured to generate a dynamic verification code based on the car rental order and return it to the time-sharing rental server, so that the time-sharing rental server forwards the dynamic verification code to the client and turns around A code to be verified generated by the client based on the dynamic verification code;
- a verification unit 73 configured to verify the code to be verified
- the control unit 74 is configured to control the target network car rental to start a car rental service if the verification succeeds.
- the time-sharing vendor server further includes:
- a second generating unit configured to generate a car rental instruction based on the car rental order after receiving the car rental order sent by the time-sharing rental server, where the car rental instruction carries a boarding position and a destination position specified by the client;
- a sending unit is configured to send the car rental instruction to the target network car rental, so that the target network car rental automatically goes to a boarding position designated by the client.
- the time-sharing vendor server further includes:
- a second receiving unit configured to control the target network rental car to start the car rental service, and receive the parking information generated and sent by the target network rental car after reaching the destination location;
- a third generating unit configured to forward the parking information to the time-sharing rental server, so that the time-sharing rental server generates a car drop-off reminder information based on the parking information, and sends the car drop-off reminder information to all Mentioned client.
- the time-sharing vendor server further includes:
- a fourth receiving unit configured to control the target network car rental to start a car rental service, and then receive a car return request sent by the client and forwarded by the time sharing rental server;
- a fifth receiving unit configured to receive a parking recommendation position calculated by the time-sharing rental server by using an artificial intelligence algorithm
- a fourth generating unit is configured to generate a car return instruction based on the parking recommendation position, and send the car return instruction to the target network rental car, so that the target network rental car automatically goes to the parking recommendation position.
- a car rental system including:
- a time-sharing rental server configured to receive a car rental request sent by a client; based on the car rental request, calculate and obtain a recommended online car rental within a preset distance from the location of the client and recommend it to the client; based on Creating, by the client, a car rental order from a target network rental car selected from the recommended network rental cars; sending the car rental order to a time-sharing vendor server corresponding to the target network rental car;
- the time-sharing leasing vendor server is configured to generate a dynamic verification code according to the car rental order and return it to the time-sharing leasing server;
- the time-sharing lease server configured to send the dynamic verification code to the client, so that the client generates a code to be verified
- the time-sharing lease server is configured to receive the code to be verified sent by the client, and forward the code to be verified to the time-sharing vendor server;
- the time-sharing leasing vendor server is configured to verify the code to be verified; if the verification is successful, control the target network car rental to start a car rental service.
- one or more embodiments of the present specification also provide a computer-readable storage medium on which a computer program is stored, and the program is executed by a processor to implement any of the foregoing. Method steps.
- FIG. 8 it includes a memory 804, a processor 302, and a computer program stored on the memory 304 and executable on the processor 802.
- the processor 302 executes the program, Implement the steps of any of the methods described above.
- the bus architecture (represented by the bus 800).
- the bus 800 may include any number of interconnected buses and bridges.
- the bus 800 will include one or more processors represented by the processor 802 and memory 804.
- the various circuits of the memory are linked together.
- the bus 800 can also link various other circuits such as peripherals, voltage regulators, and power management circuits, which are well known in the art, and therefore, they are not described further herein.
- the bus interface 805 provides an interface between the bus 800 and the receiver 801 and the transmitter 803.
- the receiver 801 and the transmitter 803 may be the same element, that is, a transceiver, providing a unit for communicating with various other devices on a transmission medium.
- the processor 802 is responsible for managing the bus 800 and general processing, and the memory 804 may be used to store data used by the processor 802 when performing operations.
- one or more embodiments of this specification have the following beneficial effects or advantages:
- One or more embodiments of the present specification disclose a method and system for renting a car.
- the method is applied to a time-sharing lease server.
- the time-sharing lease server is used instead of the time-sharing vendor server to implement car rental.
- a car rental order is created based on the target network rental car selected by the client from the recommended network rental car; the car rental order is sent to a time-sharing vendor server corresponding to the target network car rental, so that the time-sharing vendor server Generate a dynamic verification code according to the car rental order, and transparently transmit the data through the time-sharing rental server, so that the time-sharing vendor server can verify the code to be verified generated by the verification client, and control the target network car to start the car rental service .
- the client can use the time-sharing leasing server to realize the rental of car rental services provided by different manufacturers. For example, you only need to send a car rental request and enter a verification code to realize car rental. The operation is simple and fast, which can optimize the user experience.
- modules in the device in the embodiment can be adaptively changed and set in one or more devices different from the embodiment.
- the modules or units or components in the embodiment may be combined into one module or unit or component, and furthermore, they may be divided into a plurality of sub-modules or sub-units or sub-components. All features disclosed in one or more embodiments of the present specification (including the accompanying claims, abstract, and drawings) may be adopted in any combination, except that at least some of such features and / or processes or units are mutually exclusive. And all processes or units of any method or device so disclosed.
- Each feature disclosed in one or more embodiments of the specification, including the accompanying claims, abstract and drawings may be replaced by alternative features serving the same, equivalent or similar purpose, unless expressly stated otherwise.
- Each component embodiment of one or more embodiments of the present specification may be implemented in hardware, or in a software module running on one or more processors, or in a combination thereof.
- a microprocessor or a digital signal processor (DSP) may be used in practice to implement some or all of the components of a gateway, proxy server, or system according to one or more embodiments of this specification Some or all functions.
- One or more embodiments of the present specification may also be implemented as a device or apparatus program (for example, a computer program and a computer program product) for performing part or all of the method described herein.
- Such a program that implements one or more embodiments of the present specification may be stored on a computer-readable medium or may have the form of one or more signals. Such signals can be downloaded from an Internet website, provided on a carrier signal, or provided in any other form.
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Abstract
本说明书的实施例公开了一种租车方法及系统,通过利用分时租赁服务器的控制实现租车,使得客户端能够只利用分时租赁服务器就能够实现租赁不同厂商提供的租赁汽车服务,并且对于客户端而言,只需要发送租车请求并输入一验证码即可实现租车,操作简单快速,能够优化用户体验。
Description
本申请涉及车联网技术领域,尤其涉及一种租车方法及系统。
随着目前的交通工具的种类越来越多,交通出行也发生着巨大的变化,高效便捷的出行成为目前交通出行的最基本要求。
而随着互联网的出现,互联网的出行方式让出行更加高效便捷。
目前,市面上已经有滴滴、神州等租车APP。但是这类APP需要下载APP登录才能够使用,操作繁琐。
发明内容
本说明书的一个或者多个实施例提供了一种租车方法及系统,以解决或者部分解决目前的租车方式繁琐的技术问题。
为解决上述技术问题,本说明书的一个或者多个实施例提供了一种租车方法,所述方法应用于分时租赁服务器;所述方法包括:
接收由客户端发送的租车请求;
基于所述租车请求,计算获得距离所述客户端的位置在预设距离范围之内的推荐网租车并向所述客户端推荐;
基于所述客户端从所述推荐网租车中选择的目标网租车创建租车订单;
将所述租车订单发送给所述目标网租车对应的分时租赁厂商服务器,使得所述分时租赁厂商服务器根据所述租车订单生成动态验证码并回传;
将所述动态验证码发送给所述客户端,使得所述客户端生成待验证码;
接收所述客户端发送的所述待验证码,并将所述待验证码转发给所述分时租赁厂商服务器,使得所述分时租赁厂商服务器对所述待验证码进行验证;若验证通过,则控制所述目标网租车开启租车服务。
本说明书的一个或者多个实施例的另一个方面,提供了一种租车方法,所述方法应用于分时租赁厂商服务器,所述方法还包括:
接收分时租赁服务器发送的租车订单,所述租车订单是所述分时租赁服务器基于所述客户端从推荐网租车中选择的目标网租车创建而成,所述推荐网租车是所述分时租赁服务器基于所述客户端发送的租车请求计算获得的距离所述客户端的位置在预设距离范围之内的网租车;
基于所述租车订单生成动态验证码并回传给所述分时租赁服务器,使得所述分时租赁服务器将所述动态验证码转发给所述客户端,并回转由所述客户端基于所述动态验证码生成的待验证码;
对所述待验证码进行验证;
若验证通过,则控制所述目标网租车开启租车服务。
本说明书的一个或者多个实施例的另一个方面,提供了一种分时租赁服务器,包括:
第一接收模块,用于接收由客户端发送的租车请求;
计算模块,用于基于所述租车请求,计算获得距离所述客户端的位置在预设距离范围之内的推荐网租车并向所述客户端推荐;
创建模块,用于基于所述客户端从所述推荐网租车中选择的目标网租车创建租车订单;
第一发送模块,用于将所述租车订单发送给所述目标网租车对应的分时租赁厂商服务器,使得所述分时租赁厂商服务器根据所述租车订单生成动态验证码并回传;
第二发送模块,用于将所述动态验证码发送给所述客户端,使得所述客户端生成待验证码;
第二接收模块,用于接收所述客户端发送的所述待验证码,并将所述待验证码转发给所述分时租赁厂商服务器,使得所述分时租赁厂商服务器对所述待验证码进行验证;若验证通过,则控制所述目标网租车开启租车服务。
本说明书的一个或者多个实施例的另一个方面,公开了一种分时租赁厂商服务器,包括:
第一接收单元,用于接收分时租赁服务器发送的租车订单,所述租车订单是所述分时租赁服务器基于所述客户端从推荐网租车中选择的目标网租车创建而成,所述推荐网 租车是所述分时租赁服务器基于所述客户端发送的租车请求计算获得的距离所述客户端的位置在预设距离范围之内的网租车;
第一生成单元,用于基于所述租车订单生成动态验证码并回传给所述分时租赁服务器,使得所述分时租赁服务器将所述动态验证码转发给所述客户端,并回转由所述客户端基于所述动态验证码生成的待验证码;
验证单元,用于对所述待验证码进行验证;
控制单元,用于若验证通过,则控制所述目标网租车开启租车服务。
本说明书的一个或者多个实施例的另一个方面,公开了一种租车系统,包括:
分时租赁服务器,用于接收由客户端发送的租车请求;基于所述租车请求,计算获得距离所述客户端的位置在预设距离范围之内的推荐网租车并向所述客户端推荐;基于所述客户端从所述推荐网租车中选择的目标网租车创建租车订单;将所述租车订单发送给所述目标网租车对应的分时租赁厂商服务器;
所述分时租赁厂商服务器,用于根据所述租车订单生成动态验证码并回传给所述分时租赁服务器;
所述分时租赁服务器,用于将所述动态验证码发送给所述客户端,使得所述客户端生成待验证码;
所述分时租赁服务器,用于接收所述客户端发送的所述待验证码,并将所述待验证码转发给所述分时租赁厂商服务器;
所述分时租赁厂商服务器,用于对所述待验证码进行验证;若验证通过,则控制所述目标网租车开启租车服务。
本说明书的一个或者多个实施例公开了一种租车方法,所述方法包括:
接收由客户端发送的租车请求;
基于所述租车请求,计算获得距离所述客户端的位置在预设距离范围之内的推荐网租车并向所述客户端推荐;
基于所述客户端从所述推荐网租车中选择的目标网租车创建租车订单;
基于所述租车订单获得动态验证码;
将所述动态验证码发送给所述客户端,使得所述客户端生成待验证码;
接收所述客户端发送的所述待验证码,并基于所述待验证码对应的验证结果对所述目标网租车服务进行控制。
本说明书的一个或者多个实施例公开了一种计算机可读存储介质,其上存储有计算机程序,该程序被处理器执行时实现上述方法的步骤。
本说明书的一个或者多个实施例公开了一种计算机设备,包括存储器、处理器及存储在存储器上并可在处理器上运行的计算机程序,所述处理器执行所述程序时实现上述方法的步骤。
通过本说明书的一个或者多个实施例的一个或者多个技术方案,本说明书的一个或者多个实施例具有以下有益效果或者优点:
本说明书的一个或者多个实施例公开了一种租车方法及系统,该方法应用于分时租赁服务器,利用分时租赁服务器来代替分时租赁厂商服务器实现租车,由分时租赁服务器接收由客户端发送的租车请求;并基于所述租车请求,计算获得距离所述客户端的位置在预设距离范围之内的推荐网租车并向所述客户端推荐。然后基于所述客户端从所述推荐网租车中选择的目标网租车创建租车订单;将所述租车订单发送给所述目标网租车对应的分时租赁厂商服务器,使得所述分时租赁厂商服务器根据所述租车订单生成动态验证码,并经由分时租赁服务器的数据透传,使得分时租赁厂商服务器能够对验证客户端生成的待验证码进行验证,并控制所述目标网租车开启租车服务。由上述描述可知,由于将分时租赁服务器和分时租赁厂商服务器进行结合实现租车,故而能够使得客户端能够只利用分时租赁服务器就能够实现租赁不同厂商提供的租赁汽车服务,并且对于客户端来说,只需要发送租车请求并输入一验证码即可实现租车,操作简单快速,能够优化用户体验。
上述说明仅是本说明书的一个或者多个实施例技术方案的概述,为了能够更清楚了解本说明书的一个或者多个实施例的技术手段,而可依照说明书的内容予以实施,并且为了让本说明书的一个或者多个实施例的上述和其它目的、特征和优点能够更明显易懂,以下特举本说明书的一个或者多个实施例的具体实施方式。
通过阅读下文优选实施方式的详细描述,各种其他的优点和益处对于本领域普通技术人员将变得清楚明了。附图仅用于示出优选实施方式的目的,而并不认为是对本说明 书的一个或者多个实施例的限制。而且在整个附图中,用相同的参考符号表示相同的部件。在附图中:
图1示出了根据本说明书的一个或者多个实施例的分时租赁服务器侧的租车方法的实施过程图;
图2示出了根据本说明书的一个或者多个实施例的信用免押的过程图;
图3示出了根据本说明书的一个或者多个实施例的分时租赁厂商服务器侧的租车过程图;
图4示出了根据本说明书的一个或者多个实施例的租车的具体实施过程图;
图5示出了根据本说明书的一个或者多个实施例的还车的具体实施过程图;
图6示出了根据本说明书的一个或者多个实施例的租赁服务器的结构示意图;
图7示出了根据本说明书的一个或者多个实施例的分时租赁厂商服务器的结构示意图;
图8示出了根据本说明书的一个或者多个实施例的计算机设备的示意图。
下面将参照附图更详细地描述本公开的示例性实施例。虽然附图中显示了本公开的示例性实施例,然而应当理解,可以以各种形式实现本公开而不应被这里阐述的实施例所限制。相反,提供这些实施例是为了能够更透彻地理解本公开,并且能够将本公开的范围完整的传达给本领域的技术人员。
本说明书的一个或者多个实施例提供了一种租车方法,该方法应用于第三方服务器,本说明书的一个或者多个实施例称之为分时租赁服务器。分时租赁服务器在客户端中设置有对应的应用程序,该应用程序中内置有用于和分时租赁厂商服务器进行数据交互的小程序插件,本说明书的一个或者多个实施例将该小程序插件看做是为第三方分时租赁平台,所有关于汽车(自动车)租赁的订单都由分时租赁服务器和分时租赁厂商服务器两者结合处理。分时租赁服务器和分时租赁厂商服务器是两个相互独立的服务器。现有的租车方式,一般都是分时租赁厂商在客户端上安装有自身对应的APP(软件应用程序)来,通过开启该APP来为用户提供租车功能。而在本说明书的一个或者多个实施例中,则不需要分时租赁厂商在客户端安装APP,而是利用分时租赁服务器提供的应用程序将 租车订单发送给分时租赁服务器,通过分时租赁服务器和分时租赁厂商服务器相互结合为用户提供租车功能。实现这种方式的基础,是分时租赁厂商服务器在分时租赁服务器提供的应用程序中内置有一小程序插件,该小程序插件(也就是第三方分时租赁平台)能够将用户的需求从客户端侧发送给分时租赁服务器,然后由分时租赁服务器和分时租赁厂商服务器进行数据交互,两者相互结合实现租车功能。当然,由于分时租赁厂商服务器的厂家不同,故而可以在应用程序中内置一总的小程序(例如命名为共享汽车),开启该小程序插件之后,也可以显示各个分时租赁厂商服务器对应的子程序插件,这些子程序插件可以用各自的品牌命名,例如品牌A共享汽车、品牌B共享汽车等等。各子程序插件可以接收用户的操作,将具体的操作信息发送给分时租赁服务器,由分时租赁服务器和对应的分时租赁厂商服务器进行数据交互,两者相互结合实现租车功能。
请参看图1,是本说明书的一个或者多个实施例提供的租车方法的实施过程图,该方法在分时租赁服务器侧执行,具体包括如下步骤:
步骤11,接收由客户端发送的租车请求。
在具体的实施过程中,客户端包括但不限于是:智能手机、计算机(笔记本电脑、台式电脑、一体机等等)、PAD等等智能设备。
租车请求也称汽车(也称自动车)租车请求,本说明书的一个或者多个实施例涉及的汽车(自动车)包括但不限于是:电动汽车、燃油汽车、电瓶车(电动摩托车)、燃油摩托车、电动自行车、平衡车、自行车等等。
客户端中安装有分时租赁服务器对应的应用程序。
当用户具有用车需求时,则会操作客户端上的分时租赁服务器对应的应用程序生成租车请求,例如登录分时租赁服务器对应的应用程序,打开分时租赁服务器进行操作以生成租车请求,并发送给分时租赁服务器。而在分时租赁服务器侧,则会接收由客户端发送的租车请求。
作为一种可选的实施例,在接收由客户端发送的租车请求之前,可以基于用户信用实现免押金服务。参看图2,是本说明书的一个或者多个实施例的信用免押的实施过程图。
在具体的实施过程中,分时租赁服务器对应的应用程序可以根据用户的历史信用(例如还款、借款、买卖等等金额来往)来生成信用积分。如果用户的信用积分高于一定数值,则可以对该用户实现用户免押金服务,无需交押金的情况下,可以随意租赁任意场 景的共享汽车,解决用户资金安全问题,优化用户体验。
另外,用户上传验证图像(例如身份证照片)后,分时租赁服务器会对用户上传的验证图像加密保存,用车时经用户同意可以输出给分时租赁厂商服务器保存。一次上传、多次输出使用,以优化用户体验。
下面请参看具体的实施过程。
步骤201,分时租赁服务器接收由所述客户端发送的租车服务约定请求。所述租车服务约定请求中携带有所述客户端的用户信息,信用积分等等。之后,分时租赁服务器会基于所述租车服务约定请求,从信用数据库中调取判断规则;判断规则可以是信用积分的判断规则,例如用户的信用积分必须满足预设信用积分阈值,例如600分等等。而进一步的,会进行步骤202。
步骤202,分时租赁服务器对所述客户端进行用户信息验证。在验证的过程中,可以通过账户密码等形式对用户信息进行验证,也可以利用人脸识别对用户信息进行验证等等,在此本说明书的一个或者多个实施例不做限制。
若验证通过,则执行步骤203,分时租赁服务器基于所述租车服务约定请求,从信用数据库中调取判断规则。此处,是分时租赁服务器和分时租赁厂商服务器进行数据通信,由分时租赁产生服务器从信用数据库中调出判断规则传输给分时租赁服务器。
步骤204,利用所述判断规则对所述客户端进行判断;具体的判断方式,是判断所述客户端对应的信用积分是否满足预设信用积分阈值,若是,则表示所述客户端满足所述判断规则。例如用户积分达到600分,表示客户端满足该判断规则。
若判断出所述客户端满足所述判断规则,则执行步骤205,接收所述客户端发送的身份证明图像并保存。而为了更加安全的保护客户端发送的身份证明图像,可以对其进行加密保存。进一步的,会执行步骤206,用车时,在用户同意输出的情况下,将身份证明图像发送给分时租赁产生服务器进行加密保存。
步骤207,分时租赁服务器判断所述客户端的免押额度是否为零;
若否,表示免押额度>0,则执行步骤208,分时租赁服务器和所述客户端进行信用预授权协议签约。进一步的,会利用所述客户端对应的信用积分确定出所述客户端的免押额度。然后根据免押额度抵押相应的租金。
执行步骤209,分时租赁服务器将签约成功后获得的第一签约信息发送给所述分时 租赁厂商服务器进行保存。
若是,表示免押额度=0,则执行步骤210,分时租赁服务器和所述客户端进行资金预授权协议签约,并执行步骤211,将签约成功后获得的第二签约信息发送给所述分时租赁厂商服务器进行保存。
以上便是利用信用免押的具体实施过程。如果用户的信用积分高于一定数值,则可以对该用户实现用户免押金服务,无需交押金的情况下,可以随意租赁任意场景的共享汽车,解决用户资金安全问题,优化用户体验。
步骤12,基于所述租车请求,计算获得距离所述客户端的位置在预设距离范围之内的推荐网租车并向所述客户端推荐。
在具体的计算过程中,可基于所述租车请求,结合人工智能算法和所述预设距离范围之内的所有网租车各自的基本参数信息,计算获得所述推荐网租车并向所述客户端推荐。
网租车的基本参数信息至少包括以下一个或者多个维度信息:用户体验,网租车所在位置,停车场历史记录,停车花费,运营效率,出行频率,网租车电量。
本实施例中的预设距离范围可以任意设置,分时租赁服务器在推荐的过程中,可以在计算获得结合人工智能算法和所述预设距离范围之内的所有网租车各自的基本参数信息之后,将所有网租车都作为推荐网租车推荐给客户端;也可以先将各网租车进行排序,然后将排序靠前的预设个数的网租车作为推荐网租车推荐给客户端。例如,分时租赁服务器在推荐的过程中,首先确定出距离客户端位置的500米的所有网租车(50辆)。然后结合人工智能算法和网租车的基本参数信息,从用户体验,所在位置,停车场历史记录,停车花费,运营效率,出行频率,电量等等方面综合分析,按照综合评价从高到低的顺序进行排序。进一步的,将这50辆网租车全部推荐给客户端,或者从50辆网租车中选择出排序靠前的10辆车推荐给客户端。
另外,在推荐的过程中,针对各维度可以设置权重。各维度的权重可设置成一样,也可以将某个维度的权重设置比例增大。例如将电量维度的权重设置成0.5,其他维度的总权重0.5(所有维度的权重和为1)等等。当然,排序也可以将某个维度作为自身进行排序,例如按照电量进行排序或者按照停车花费进行排序等等。
进一步的,在推荐时可以使用多种方式进行推荐。例如,可以使用列表的形式将推荐网租车以综合评分的高低进行排序推荐。也可以在地图上显示出各网租车的位置,并 显示出车牌号、车型号、厂商、综合评分等等,由用户自行挑选。
步骤13,基于所述客户端从所述推荐网租车中选择的目标网租车创建租车订单。
在创建租车订单的具体实施过程中,租车订单中携带有目标网约车的基本信息(例如车型号、指定的上车位置)、和分时租赁厂商服务器的签约信息等等。指定的上车位置是用户通过客户端预约的上车位置,可能和客户端所在位置不同。
作为一种可选的实施例,在客户端从所述推荐网租车中选择的目标网租车创建租车订单之后,还会将所述租车订单发送给信用数据库进行记录,由信用数据库创建履约记录,以将该次租车也纳入用户的信用考评中。
步骤14,将所述租车订单发送给所述目标网租车对应的分时租赁厂商服务器,使得所述分时租赁厂商服务器根据所述租车订单生成动态验证码并回传。
在具体的实施过程中,分时租赁厂商服务器会验证该租车订单携带的签约信息,若验证通过,则会进一步生成动态验证码并回传给分时租赁服务器。
步骤15,将所述动态验证码发送给所述客户端,使得所述客户端生成待验证码。
在具体的实施过程中,分时租赁服务器会将动态验证码发送给客户端,由客户端对应的用户基于该动态验证码输入一个待验证码给客户端,故而客户端可以得到该待验证码。一般来说,待验证码必须和动态验证码一致才会予以验证通过。若不一致(例如用户输入错误),则验证不通过。
步骤16,接收所述客户端发送的所述待验证码,并将所述待验证码转发给所述分时租赁厂商服务器,使得所述分时租赁厂商服务器对所述待验证码进行验证;若验证通过,则控制所述目标网租车开启租车服务。
在具体的实施过程中,若验证通过,则分时租赁厂商服务器可控制目标网约车开锁供用户使用。另外,由于客户端指定的上车位置和客户端本身所在位置不同,故而分时租赁厂商服务器还会控制目标网租车自动前往到客户端指定的上车位置,能够方便用户用车,提高便捷性。
作为一种可选的实施例,在控制所述目标网租车开启租车服务的过程中,可控制锁定该目标网租车预设时间(例如15分钟),若预设时间后并未接收到新指令,则控制关闭目标网租车的租车服务,若客户端需要再次使用该目标网租车,则必须重新创建租车订单。
上述方式便是通过分时租赁服务器和分时租赁厂商服务器相结合实现租车的实施过程,对于用户来说,只需要发起租车请求便可以实现方便快捷的一键式租车,租车方式简单方便,并且能够保证租车的安全性。
作为一种可选的实施例,在所述接收所述客户端发送的所述待验证码,并将所述待验证码转发给所述分时租赁厂商服务器,使得所述分时租赁厂商服务器对所述待验证码进行验证;若验证通过,则控制所述目标网租车开启租车服务之后,还包括客户端还车的实施过程。
下面将具体介绍还车的过程。
作为一种可选的实施例,在目标网租车到达目的地时,会生成停车信息并发送给分时租赁厂商服务器。故而对于分时租赁服务器来说,则会接收所述分时租赁厂商服务器转发的停车信息,所述停车信息由所述目标网租车在到达目的地位置之后生成并发送给所述分时租赁厂商服务器;然后分时租赁服务器会基于所述停车信息生成还车提醒信息,并将所述还车提醒信息发送给所述客户端,使客户端提醒用户,提醒的方式可以是语音提醒,也可以是文字提醒等等。
作为一种可选的实施例,到用户需要还车时,作为分时租赁服务器,会接收所述客户端发送的还车请求;然后基于所述还车请求,生成待支付信息发送给所述客户端进行支付;基于所述客户端发送的支付信息生成对应的结果信息,并将所述结果信息发送给所述分时租赁厂商服务器进行记录。另外,还会将所述结果信息同步到信用数据库中。
在具体的实施过程中,生成待支付信息发送给所述客户端进行支付之后,可基于所述客户端发送的支付信息判断所述客户端是否支付成功;若支付成功,则将支付成功的结果信息发送给所述分时租赁厂商服务器进行记录,并将所述支付成功的结果信息同步到信用数据库中。此时信用数据库会记录该次支付结果信息,并基于该支付成功的结果信息,标记用户完成履约记录,并增加用户信用积分。若支付失败,则将支付失败的结果信息发送给所述分时租赁厂商服务器进行记录,并将所述支付失败的结果信息同步到信用数据库中,由信用数据库生成再次支付提醒。若在规定时间内仍旧支付失败,则基于该次支付失败的结果信息生成违约记录,扣除用户信用积分。
在具体的实施过程中,接收所述客户端发送的还车请求之后,基于所述还车请求,利用人工智能算法计算获得停车推荐位置;然后将所述停车推荐位置发送给所述分时租赁厂商服务器,使得所述分时租赁厂商服务器基于所述停车推荐位置生成还车指令, 发送给所述目标网租车,进而使得所述目标网租车自动前往所述停车推荐位置。
进一步的,在利用人工智能算法计算获得停车推荐位置的具体实施过程中,结合所述人工智能算法和所述目标网租车的基本参数信息,计算获得所述停车推荐位置。而目标网租车的基本参数信息至少包括以下一个或者多个维度信息:电量,所述目标网租车的所在位置,停车场,停车场的费用,运营效率,出行频率,电量。
在计算推荐位置的实施过程中,可以将上述维度设置相应的权重,然后结合人工智能算法获得各停车推荐位置的综合评分,然后将一个或者多个计算得到的停车推荐位置发送给用户,以便用户挑选。
另外,对于分时租赁厂商服务器侧来说,租车方法的实施过程请参看图3如下:
步骤31,接收分时租赁服务器发送的租车订单。
其中,租车订单是所述分时租赁服务器基于所述客户端从推荐网租车中选择的目标网租车创建而成,所述推荐网租车是所述分时租赁服务器基于所述客户端发送的租车请求计算获得的距离所述客户端的位置在预设距离范围之内的网租车。
而作为一种可选的实施例,在接收分时租赁服务器发送的租车订单之后,可基于所述租车订单生成租车指令,所述租车指令中携带所述客户端指定的上车位置和目的地位置;将所述租车指令发送给所述目标网租车,使得所述目标网租车自动前往所述客户端指定的上车位置。进一步的,客户端指定的上车位置和客户端当前所在位置可能不同。
步骤32,基于所述租车订单生成动态验证码并回传给所述分时租赁服务器,使得所述分时租赁服务器将所述动态验证码转发给所述客户端,并回转由所述客户端基于所述动态验证码生成的待验证码。
步骤33,对所述待验证码进行验证。
步骤34,若验证通过,则控制所述目标网租车开启租车服务。
而在控制所述目标网租车开启租车服务之后,会接收所述目标网租车在到达目的地位置之后生成并发送的停车信息;然后将所述停车信息转发给所述分时租赁服务器,使得所述分时租赁服务器基于所述停车信息生成还车提醒信息,并将所述还车提醒信息发送给所述客户端。
进一步的,目标网租车的临时停车地点可能并不是目的地位置。当目标网租车 在临时停车地点的停靠位置超过了预设时间阈值,则也会生成并发送的临时停车消息;将所述临时停车消息转发给所述分时租赁服务器,使得所述分时租赁服务器基于所述临时停车消息生成对应的还车提醒信息,并将所述对应的还车提醒信息发送给所述客户端。
作为一种可选的实施例,在控制所述目标网租车开启租车服务之后,还会执行下面的步骤:
接收由所述分时租赁服务器转发的由所述客户端发送的还车请求;
接收由所述分时租赁服务器利用人工智能算法计算获得的停车推荐位置;
基于所述停车推荐位置生成还车指令,发送给所述目标网租车,进而使得所述目标网租车自动前往所述停车推荐位置。
而在具体的实施过程中,进一步的,在利用人工智能算法计算获得停车推荐位置的具体实施过程中,结合所述人工智能算法和所述目标网租车的基本参数信息,计算获得所述停车推荐位置。而目标网租车的基本参数信息至少包括以下一个或者多个维度信息:电量,所述目标网租车的所在位置,停车场,停车场的费用,运营效率,出行频率,电量。
在计算停车推荐位置的实施过程中,可以将上述维度设置相应的权重,然后结合人工智能算法获得各停车推荐位置的综合评分,然后将一个或者多个计算得到的停车推荐位置发送给用户,以便用户挑选。
以上便是从分时租赁厂商服务器侧进行描述的租车过程和还车过程。
在下面的实施过程中,请参看图4,是客户端、分时租赁服务器、分时租赁厂商服务器、网租车、信用数据库这几个方面实现租车的过程。
步骤411、客户端发送租车请求给分时租赁服务器。
步骤412、分时租赁服务器基于人工智能算法AI算法推荐指定位置附近的推荐网租车。
步骤413、返回推荐结果给客户端。
步骤414、客户端选择目标网租车。
步骤415、分时租赁服务器基于目标网租车创建租车订单。
步骤416、分时租赁服务器将租车订单发送给分时租赁厂商服务器进行保存。
步骤417、分时租赁服务器将租车订单发送给信用数据库。
步骤418、信用数据库创建履约记录。
步骤419、分时租赁厂商服务器基于租车订单生成租车指令发送给目标网租车。
步骤420、目标网租车基于租车指令自动前往客户端指定的上车位置。
步骤421、信息同步至分时租赁厂商服务器。
步骤422、分时租赁厂商服务器基于租车订单生成动态验证码。
步骤423、动态验证码发送至客户端。
步骤424、客户端生成待验证码。
步骤425、分时租赁厂商服务器基于待验证码进行信息验证。
步骤426、验证成功之后,发送开门指令给目标网租车。
步骤427、目标网租车开启租车服务,完成一键租车。
请参看图5,是客户端、分时租赁平台、分时租赁厂商服务器、网租车、信用数据库这几个方面实现还车的过程。
步骤511、目标网租车到达目的地位置后生成停车信息。
步骤512、分时租赁厂商服务器转发停车信息给分时租赁服务器。
步骤513、分时租赁服务器基于停车信息生成还车提醒信息。另外,还会记录停车信息。
步骤514、分时租赁服务器发送还车提醒信息给客户端。
步骤515、客户端生成并发送还车请求。
步骤516、分时租赁服务器基于还车请求和AI算法计算停车推荐位置。
步骤517、分时租赁服务器发送停车推荐位置给分时租赁厂商服务器。
步骤518、分时租赁厂商服务器基于所述停车推荐位置生成还车指令,发送给所述目标网租车。
步骤519、目标网租车自动前往所述停车推荐位置。
步骤520、分时租赁服务器基于还车请求,生成待支付信息发送给客户端进行支付。
步骤521、分时租赁服务器基于所述客户端发送的支付信息判断是否支付成功。
步骤522、若支付成功,将支付结果同步到分时租赁厂商服务器。
步骤523、若支付成功,将支付结果同步信用数据库。
步骤524、若支付失败,支付结果同步到信用数据库。
基于相同的发明构思,本说明书的一个或者多个实施例公开了一种租车方法,该方法可以应用于分时租赁服务器,也可以应用于分时租赁厂商服务器。
若该方法应用于分时租赁服务器,那么在具体的实施过程中,分时租赁服务器会接收由客户端发送的租车请求;然后基于所述租车请求,计算获得距离所述客户端的位置在预设距离范围之内的推荐网租车并向所述客户端推荐;进一步的,分时租赁服务器还可以基于所述客户端从所述推荐网租车中选择的目标网租车创建租车订单;基于所述租车订单获得动态验证码;并将所述动态验证码发送给所述客户端,使得所述客户端生成待验证码;然后接收所述客户端发送的所述待验证码,并基于所述待验证码对应的验证结果对所述目标网租车服务进行控制。
而在具体的实施过程中,基于所述租车订单获得动态验证码,可以有一种或者多种实施方式。例如,可由分时租赁服务器自身基于所述租车订单生成动态验证码。也可以是将所述租车订单发送给所述目标网租车对应的分时租赁厂商服务器,使得所述分时租赁厂商服务器根据所述租车订单生成动态验证码并回传。还可以是分时租赁服务器预先从分时租赁厂商服务器获取并存储的验证码,当获得租车订单之后,可以基于租车订单直接提供给客户端。
作为一种可选的实施例,在基于所述待验证码对应的验证结果对所述目标网租车服务进行控制的过程中,也可以有一种或者多种实施方式。例如,可以是分时租赁服务器自身控制对所述目标网租车服务进行控制,控制目标网租车开启服务,也可以是在接收所述客户端发送的所述待验证码之后,分时租赁服务器将所述待验证码转发给所述分时租赁厂商服务器,使得所述分时租赁厂商服务器对所述待验证码进行验证;若验证通过,则由分时租赁厂商服务器控制所述目标网租车开启租车服务。
基于相同的发明构思,参看图6,本说明书的一个或者多个实施例公开了一种分时租赁服务器,包括:
第一接收模块61,用于接收由客户端发送的租车请求;
计算模块62,用于基于所述租车请求,计算获得距离所述客户端的位置在预设距离范围之内的推荐网租车并向所述客户端推荐;
创建模块63,用于基于所述客户端从所述推荐网租车中选择的目标网租车创建租车订单;
第一发送模块64,用于将所述租车订单发送给所述目标网租车对应的分时租赁厂商服务器,使得所述分时租赁厂商服务器根据所述租车订单生成动态验证码并回传;
第二发送模块65,用于将所述动态验证码发送给所述客户端,使得所述客户端生成待验证码;
第二接收模块66,用于接收所述客户端发送的所述待验证码,并将所述待验证码转发给所述分时租赁厂商服务器,使得所述分时租赁厂商服务器对所述待验证码进行验证;若验证通过,则控制所述目标网租车开启租车服务。
作为一种可选的实施例,所述计算模块62,具体用于基于所述租车请求,结合人工智能算法和所述预设距离范围之内的所有网租车各自的基本参数信息,计算获得所述推荐网租车并向所述客户端推荐。
作为一种可选的实施例,所述基本参数信息包括以下一个或者多个维度信息:
用户体验,所在位置,停车场历史记录,停车花费,运营效率,出行频率,电量。
作为一种可选的实施例,所述分时租赁服务器还包括:
第三接收模块,用于接收由所述客户端发送的租车服务约定请求
调取模块,用于基于所述租车服务约定请求,从信用数据库中调取判断规则;
第一判断模块,用于利用所述判断规则对所述客户端进行判断;
第四接收模块,用于若判断出所述客户端满足所述判断规则,则接收所述客户端发送的身份证明图像并保存;
第二判断模块,用于判断所述客户端的免押额度是否为零;
第一签约模块,用于若否,则和所述客户端进行信用预授权协议签约,并将签约成功后获得的第一签约信息发送给所述分时租赁厂商服务器进行保存;
第二签约模块,用于若是,则和所述客户端进行资金预授权协议签约,并将签 约成功后获得的第二签约信息发送给所述分时租赁厂商服务器进行保存。
作为一种可选的实施例,所述分时租赁服务器还包括:验证模块,用于接收由所述客户端发送的租车服务约定请求之后,对所述客户端进行用户信息验证,若验证通过,则基于所述租车服务约定请求,从信用数据库中调取判断规则;
所述第一判断模块,具体用于判断所述客户端对应的信用积分是否满足预设信用积分阈值,若是,则表示所述客户端满足所述判断规则;
所述分时租赁服务器还包括:确定模块,用于在判断所述客户端的免押额度是否为零之前,利用所述客户端对应的信用积分确定出所述客户端的免押额度。
作为一种可选的实施例,所述分时租赁服务器还包括:
记录模块,用于在基于所述客户端从所述推荐网租车中选择的目标网租车创建租车订单之后,将所述租车订单发送给信用数据库进行记录。
作为一种可选的实施例,所述分时租赁服务器还包括:
第五接收模块,用于接收所述分时租赁厂商服务器转发的停车信息,所述停车信息由所述目标网租车在到达目的地位置之后生成并发送给所述分时租赁厂商服务器;
第三发送模块,用于基于所述停车信息生成还车提醒信息,并将所述还车提醒信息发送给所述客户端。
作为一种可选的实施例,所述分时租赁服务器还包括:
第六接收模块,用于接收所述客户端发送的还车请求;
生成模块,用于基于所述还车请求,生成待支付信息发送给所述客户端进行支付;
第四发送模块,用于基于所述客户端发送的支付信息生成对应的结果信息,并将所述结果信息发送给所述分时租赁厂商服务器进行记录。
作为一种可选的实施例,所述分时租赁服务器还包括:
同步模块,用于将所述结果信息同步到信用数据库中。
作为一种可选的实施例,所述分时租赁服务器还包括:
获得模块,用于基于所述还车请求,利用人工智能算法计算获得停车推荐位置;
第五发送模块,用于将所述停车推荐位置发送给所述分时租赁厂商服务器,使 得所述分时租赁厂商服务器基于所述停车推荐位置生成还车指令,发送给所述目标网租车,进而使得所述目标网租车自动前往所述停车推荐位置。
作为一种可选的实施例,所述获得模块,具体用于结合所述人工智能算法和所述目标网租车的基本参数信息,计算获得所述停车推荐位置。
作为一种可选的实施例,所述目标网租车的基本参数信息包括以下一个或者多个维度信息:
电量,所述目标网租车的所在位置,停车场,停车场的费用,运营效率,出行频率,电量。
基于相同的发明构思,参看图7,本说明书的一个或者多个实施例公开了一种分时租赁厂商服务器,所述方法还包括:
第一接收单元71,用于接收分时租赁服务器发送的租车订单,所述租车订单是所述分时租赁服务器基于所述客户端从推荐网租车中选择的目标网租车创建而成,所述推荐网租车是所述分时租赁服务器基于所述客户端发送的租车请求计算获得的距离所述客户端的位置在预设距离范围之内的网租车;
第一生成单元72,用于基于所述租车订单生成动态验证码并回传给所述分时租赁服务器,使得所述分时租赁服务器将所述动态验证码转发给所述客户端,并回转由所述客户端基于所述动态验证码生成的待验证码;
验证单元73,用于对所述待验证码进行验证;
控制单元74,用于若验证通过,则控制所述目标网租车开启租车服务。
作为一种可选的实施例,所述分时租赁厂商服务器还包括:
第二生成单元,用于接收分时租赁服务器发送的租车订单之后,基于所述租车订单生成租车指令,所述租车指令中携带所述客户端指定的上车位置和目的地位置;
发送单元,用于将所述租车指令发送给所述目标网租车,使得所述目标网租车自动前往所述客户端指定的上车位置。
作为一种可选的实施例,所述分时租赁厂商服务器还包括:
第二接收单元,用于控制所述目标网租车开启租车服务之后,接收所述目标网租车在到达目的地位置之后生成并发送的停车信息;
第三生成单元,用于将所述停车信息转发给所述分时租赁服务器,使得所述分时租赁服务器基于所述停车信息生成还车提醒信息,并将所述还车提醒信息发送给所述客户端。
作为一种可选的实施例,所述分时租赁厂商服务器还包括:
第四接收单元,用于控制所述目标网租车开启租车服务之后,接收由所述分时租赁服务器转发的由所述客户端发送的还车请求;
第五接收单元,用于接收由所述分时租赁服务器利用人工智能算法计算获得的停车推荐位置;
第四生成单元,用于基于所述停车推荐位置生成还车指令,发送给所述目标网租车,进而使得所述目标网租车自动前往所述停车推荐位置。
基于相同的发明构思,本说明书的一个或者多个实施例公开了一种租车系统,包括:
分时租赁服务器,用于接收由客户端发送的租车请求;基于所述租车请求,计算获得距离所述客户端的位置在预设距离范围之内的推荐网租车并向所述客户端推荐;基于所述客户端从所述推荐网租车中选择的目标网租车创建租车订单;将所述租车订单发送给所述目标网租车对应的分时租赁厂商服务器;
所述分时租赁厂商服务器,用于根据所述租车订单生成动态验证码并回传给所述分时租赁服务器;
所述分时租赁服务器,用于将所述动态验证码发送给所述客户端,使得所述客户端生成待验证码;
所述分时租赁服务器,用于接收所述客户端发送的所述待验证码,并将所述待验证码转发给所述分时租赁厂商服务器;
所述分时租赁厂商服务器,用于对所述待验证码进行验证;若验证通过,则控制所述目标网租车开启租车服务。
基于与前述实施例中同样的发明构思,本说明书的一个或者多个实施例还提供一种计算机可读存储介质,其上存储有计算机程序,该程序被处理器执行时实现前文任一所述方法的步骤。
基于与前述实施例中同样的发明构思,参看图8,包括存储器804、处理器302 及存储在存储器304上并可在处理器802上运行的计算机程序,所述处理器302执行所述程序时实现前文任一所述方法的步骤。
其中,在图8中,总线架构(用总线800来代表),总线800可以包括任意数量的互联的总线和桥,总线800将包括由处理器802代表的一个或多个处理器和存储器804代表的存储器的各种电路链接在一起。总线800还可以将诸如外围设备、稳压器和功率管理电路等之类的各种其他电路链接在一起,这些都是本领域所公知的,因此,本文不再对其进行进一步描述。总线接口805在总线800和接收器801和发送器803之间提供接口。接收器801和发送器803可以是同一个元件,即收发机,提供用于在传输介质上与各种其他装置通信的单元。处理器802负责管理总线800和通常的处理,而存储器804可以被用于存储处理器802在执行操作时所使用的数据。
通过本说明书的一个或者多个实施例的一个或者多个实施例,本说明书的一个或者多个实施例具有以下有益效果或者优点:
本说明书的一个或者多个实施例公开了一种租车方法及系统,该方法应用于分时租赁服务器,利用分时租赁服务器来代替分时租赁厂商服务器实现租车,由分时租赁服务器接收由客户端发送的租车请求;并基于所述租车请求,计算获得距离所述客户端的位置在预设距离范围之内的推荐网租车并向所述客户端推荐。然后基于所述客户端从所述推荐网租车中选择的目标网租车创建租车订单;将所述租车订单发送给所述目标网租车对应的分时租赁厂商服务器,使得所述分时租赁厂商服务器根据所述租车订单生成动态验证码,并经由分时租赁服务器的数据透传,使得分时租赁厂商服务器能够对验证客户端生成的待验证码进行验证,并控制所述目标网租车开启租车服务。由上述描述可知,由于将分时租赁服务器和分时租赁厂商服务器进行结合实现租车,故而能够使得客户端能够只利用分时租赁服务器就能够实现租赁不同厂商提供的租赁汽车服务,并且对于客户端来说,只需要发送租车请求并输入一验证码即可实现租车,操作简单快速,能够优化用户体验。
在此提供的算法和显示不与任何特定计算机、虚拟系统或者其它设备固有相关。各种通用系统也可以与基于在此的示教一起使用。根据上面的描述,构造这类系统所要求的结构是显而易见的。此外,本说明书的一个或者多个实施例也不针对任何特定编程语言。应当明白,可以利用各种编程语言实现在此描述的本说明书的一个或者多个实施例的内容,并且上面对特定语言所做的描述是为了披露本说明书的一个或者多个实施例的最佳实施方式。
在此处所提供的说明书中,说明了大量具体细节。然而,能够理解,本说明书的一个或者多个实施例的实施例可以在没有这些具体细节的情况下实践。在一些实例中,并未详细示出公知的方法、结构和技术,以便不模糊对本说明书的一个或者多个实施例的理解。
类似地,应当理解,为了精简本公开并帮助理解各个发明方面中的一个或多个,在上面对本说明书的一个或者多个实施例的示例性实施例的描述中,本说明书的一个或者多个实施例的各个特征有时被一起分组到单个实施例、图、或者对其的描述中。然而,并不应将该公开的方法解释成反映如下意图:即所要求保护的本说明书的一个或者多个实施例要求比在每个权利要求中所明确记载的特征更多的特征。更确切地说,如下面的权利要求书所反映的那样,发明方面在于少于前面公开的单个实施例的所有特征。因此,遵循具体实施方式的权利要求书由此明确地并入该具体实施方式,其中每个权利要求本身都作为本说明书的一个或者多个实施例的单独实施例。
本领域那些技术人员可以理解,可以对实施例中的设备中的模块进行自适应性地改变并且把它们设置在与该实施例不同的一个或多个设备中。可以把实施例中的模块或单元或组件组合成一个模块或单元或组件,以及此外可以把它们分成多个子模块或子单元或子组件。除了这样的特征和/或过程或者单元中的至少一些是相互排斥之外,可以采用任何组合对本说明书的一个或者多个实施例(包括伴随的权利要求、摘要和附图)中公开的所有特征以及如此公开的任何方法或者设备的所有过程或单元进行组合。除非另外明确陈述,本说明书的一个或者多个实施例(包括伴随的权利要求、摘要和附图)中公开的每个特征可以由提供相同、等同或相似目的的替代特征来代替。
此外,本领域的技术人员能够理解,尽管在此的一些实施例包括其它实施例中所包括的某些特征而不是其它特征,但是不同实施例的特征的组合意味着处于本说明书的一个或者多个实施例的范围之内并且形成不同的实施例。例如,在下面的权利要求书中,所要求保护的实施例的任意之一都可以以任意的组合方式来使用。
本说明书的一个或者多个实施例的各个部件实施例可以以硬件实现,或者以在一个或者多个处理器上运行的软件模块实现,或者以它们的组合实现。本领域的技术人员应当理解,可以在实践中使用微处理器或者数字信号处理器(DSP)来实现根据本说明书的一个或者多个实施例的网关、代理服务器、系统中的一些或者全部部件的一些或者全部功能。本说明书的一个或者多个实施例还可以实现为用于执行这里所描述的方法的一部分或者全部的设备或者装置程序(例如,计算机程序和计算机程序产品)。这样 的实现本说明书的一个或者多个实施例的程序可以存储在计算机可读介质上,或者可以具有一个或者多个信号的形式。这样的信号可以从因特网网站上下载得到,或者在载体信号上提供,或者以任何其他形式提供。
应该注意的是上述实施例对本说明书的一个或者多个实施例进行说明而不是对本说明书的一个或者多个实施例进行限制,并且本领域技术人员在不脱离所附权利要求的范围的情况下可设计出替换实施例。在权利要求中,不应将位于括号之间的任何参考符号构造成对权利要求的限制。单词“包含”不排除存在未列在权利要求中的元件或步骤。位于元件之前的单词“一”或“一个”不排除存在多个这样的元件。本说明书的一个或者多个实施例可以借助于包括有若干不同元件的硬件以及借助于适当编程的计算机来实现。在列举了若干装置的单元权利要求中,这些装置中的若干个可以是通过同一个硬件项来具体体现。单词第一、第二、以及第三等的使用不表示任何顺序。可将这些单词解释为名称。
Claims (22)
- 一种租车方法,所述方法应用于分时租赁服务器;所述方法包括:接收由客户端发送的租车请求;基于所述租车请求,计算获得距离所述客户端的位置在预设距离范围之内的推荐网租车并向所述客户端推荐;基于所述客户端从所述推荐网租车中选择的目标网租车创建租车订单;将所述租车订单发送给所述目标网租车对应的分时租赁厂商服务器,使得所述分时租赁厂商服务器根据所述租车订单生成动态验证码并回传;将所述动态验证码发送给所述客户端,使得所述客户端生成待验证码;接收所述客户端发送的所述待验证码,并将所述待验证码转发给所述分时租赁厂商服务器,使得所述分时租赁厂商服务器对所述待验证码进行验证;若验证通过,则控制所述目标网租车开启租车服务。
- 如权利要求1所述的方法,所述基于所述租车请求,计算获得距离所述客户端的位置在预设距离范围之内的推荐网租车并向所述客户端推荐,具体包括:基于所述租车请求,结合人工智能算法和所述预设距离范围之内的所有网租车各自的基本参数信息,计算获得所述推荐网租车并向所述客户端推荐。
- 如权利要求2所述的方法,所述基本参数信息包括以下一个或者多个维度信息:用户体验,所在位置,停车场历史记录,停车花费,运营效率,出行频率,电量。
- 如权利要求1所述的方法,在所述接收由客户端发送的租车请求之前,所述方法还包括:接收由所述客户端发送的租车服务约定请求;基于所述租车服务约定请求,从信用数据库中调取判断规则;利用所述判断规则对所述客户端进行判断;若判断出所述客户端满足所述判断规则,则接收所述客户端发送的身份证明图像并保存;判断所述客户端的免押额度是否为零;若否,则和所述客户端进行信用预授权协议签约,并将签约成功后获得的第一签约信息发送给所述分时租赁厂商服务器进行保存;若是,则和所述客户端进行资金预授权协议签约,并将签约成功后获得的第二签约信息发送给所述分时租赁厂商服务器进行保存。
- 如权利要求4所述的方法,所述接收由所述客户端发送的租车服务约定请求之 后,所述方法还包括:所述利用所述判断规则对所述客户端进行判断,具体包括:判断所述客户端对应的信用积分是否满足预设信用积分阈值,若是,则表示所述客户端满足所述判断规则;所述判断所述客户端的免押额度是否为零之前,所述方法还包括:利用所述客户端对应的信用积分确定出所述客户端的免押额度。
- 如权利要求1所述的方法,所述基于所述客户端从所述推荐网租车中选择的目标网租车创建租车订单之后,所述方法还包括:将所述租车订单发送给信用数据库进行记录。
- 如权利要求1所述的方法,在所述接收所述客户端发送的所述待验证码,并将所述待验证码转发给所述分时租赁厂商服务器,使得所述分时租赁厂商服务器对所述待验证码进行验证;若验证通过,则控制所述目标网租车开启租车服务之后,所述方法还包括:接收所述分时租赁厂商服务器转发的停车信息,所述停车信息由所述目标网租车在到达目的地位置之后生成并发送给所述分时租赁厂商服务器;基于所述停车信息生成还车提醒信息,并将所述还车提醒信息发送给所述客户端。
- 如权利要求1所述的方法,在所述接收所述客户端发送的所述待验证码,并将所述待验证码转发给所述分时租赁厂商服务器,使得所述分时租赁厂商服务器对所述待验证码进行验证;若验证通过,则控制所述目标网租车开启租车服务之后,所述方法还包括:接收所述客户端发送的还车请求;基于所述还车请求,生成待支付信息发送给所述客户端进行支付;基于所述客户端发送的支付信息生成对应的结果信息,并将所述结果信息发送给所述分时租赁厂商服务器进行记录。
- 如权利要求8所述的方法,所述基于所述客户端发送的支付信息生成对应的结果信息之后,所述方法还包括:将所述结果信息同步到信用数据库中。
- 如权利要求8所述的方法,所述接收所述客户端发送的还车请求之后,所述方法还包括:基于所述还车请求,利用人工智能算法计算获得停车推荐位置;将所述停车推荐位置发送给所述分时租赁厂商服务器,使得所述分时租赁厂商服务 器基于所述停车推荐位置生成还车指令,发送给所述目标网租车,进而使得所述目标网租车自动前往所述停车推荐位置。
- 如权利要求10所述的方法,所述基于所述还车请求,利用人工智能算法计算获得停车推荐位置,具体包括:结合所述人工智能算法和所述目标网租车的基本参数信息,计算获得所述停车推荐位置。
- 如权利要10所述的方法,所述目标网租车的基本参数信息包括以下一个或者多个维度信息:电量,所述目标网租车的所在位置,停车场,停车场的费用,运营效率,出行频率,电量。
- 一种租车方法,所述方法应用于分时租赁厂商服务器,所述方法还包括:接收分时租赁服务器发送的租车订单,所述租车订单是所述分时租赁服务器基于所述客户端从推荐网租车中选择的目标网租车创建而成,所述推荐网租车是所述分时租赁服务器基于所述客户端发送的租车请求计算获得的距离所述客户端的位置在预设距离范围之内的网租车;基于所述租车订单生成动态验证码并回传给所述分时租赁服务器,使得所述分时租赁服务器将所述动态验证码转发给所述客户端,并回转由所述客户端基于所述动态验证码生成的待验证码;对所述待验证码进行验证;若验证通过,则控制所述目标网租车开启租车服务。
- 如权利要求13所述的方法,所述接收分时租赁服务器发送的租车订单之后,所述方法还包括:基于所述租车订单生成租车指令,所述租车指令中携带所述客户端指定的上车位置和目的地位置;将所述租车指令发送给所述目标网租车,使得所述目标网租车自动前往所述客户端指定的上车位置。
- 如权利要求13所述的方法,所述控制所述目标网租车开启租车服务之后,所述方法还包括:接收所述目标网租车在到达目的地位置之后生成并发送的停车信息;将所述停车信息转发给所述分时租赁服务器,使得所述分时租赁服务器基于所述停车信息生成还车提醒信息,并将所述还车提醒信息发送给所述客户端。
- 如权利要求13所述的方法,所述控制所述目标网租车开启租车服务之后,所述方法还包括:接收由所述分时租赁服务器转发的由所述客户端发送的还车请求;接收由所述分时租赁服务器利用人工智能算法计算获得的停车推荐位置;基于所述停车推荐位置生成还车指令,发送给所述目标网租车,进而使得所述目标网租车自动前往所述停车推荐位置。
- 一种分时租赁服务器,包括:第一接收模块,用于接收由客户端发送的租车请求;计算模块,用于基于所述租车请求,计算获得距离所述客户端的位置在预设距离范围之内的推荐网租车并向所述客户端推荐;创建模块,用于基于所述客户端从所述推荐网租车中选择的目标网租车创建租车订单;第一发送模块,用于将所述租车订单发送给所述目标网租车对应的分时租赁厂商服务器,使得所述分时租赁厂商服务器根据所述租车订单生成动态验证码并回传;第二发送模块,用于将所述动态验证码发送给所述客户端,使得所述客户端生成待验证码;第二接收模块,用于接收所述客户端发送的所述待验证码,并将所述待验证码转发给所述分时租赁厂商服务器,使得所述分时租赁厂商服务器对所述待验证码进行验证;若验证通过,则控制所述目标网租车开启租车服务。
- 一种分时租赁厂商服务器,还包括:第一接收单元,用于接收分时租赁服务器发送的租车订单,所述租车订单是所述分时租赁服务器基于所述客户端从推荐网租车中选择的目标网租车创建而成,所述推荐网租车是所述分时租赁服务器基于所述客户端发送的租车请求计算获得的距离所述客户端的位置在预设距离范围之内的网租车;第一生成单元,用于基于所述租车订单生成动态验证码并回传给所述分时租赁服务器,使得所述分时租赁服务器将所述动态验证码转发给所述客户端,并回转由所述客户端基于所述动态验证码生成的待验证码;验证单元,用于对所述待验证码进行验证;控制单元,用于若验证通过,则控制所述目标网租车开启租车服务。
- 一种租车系统,包括:分时租赁服务器,用于接收由客户端发送的租车请求;基于所述租车请求,计算获 得距离所述客户端的位置在预设距离范围之内的推荐网租车并向所述客户端推荐;基于所述客户端从所述推荐网租车中选择的目标网租车创建租车订单;将所述租车订单发送给所述目标网租车对应的分时租赁厂商服务器;所述分时租赁厂商服务器,用于根据所述租车订单生成动态验证码并回传给所述分时租赁服务器;所述分时租赁服务器,用于将所述动态验证码发送给所述客户端,使得所述客户端生成待验证码;所述分时租赁服务器,用于接收所述客户端发送的所述待验证码,并将所述待验证码转发给所述分时租赁厂商服务器;所述分时租赁厂商服务器,用于对所述待验证码进行验证;若验证通过,则控制所述目标网租车开启租车服务。
- 一种租车方法,所述方法包括:接收由客户端发送的租车请求;基于所述租车请求,计算获得距离所述客户端的位置在预设距离范围之内的推荐网租车并向所述客户端推荐;基于所述客户端从所述推荐网租车中选择的目标网租车创建租车订单;基于所述租车订单获得动态验证码;将所述动态验证码发送给所述客户端,使得所述客户端生成待验证码;接收所述客户端发送的所述待验证码,并基于所述待验证码对应的验证结果对所述目标网租车服务进行控制。
- 一种计算机可读存储介质,其上存储有计算机程序,该程序被处理器执行时实现权利要求1-12任一项所述方法的步骤。
- 一种计算机设备,包括存储器、处理器及存储在存储器上并可在处理器上运行的计算机程序,所述处理器执行所述程序时实现权利要求1-12任一项所述方法的步骤。
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| CN201810981002.1A CN109242617B (zh) | 2018-08-27 | 2018-08-27 | 一种租车方法及系统 |
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Cited By (6)
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| CN111445310A (zh) * | 2020-03-27 | 2020-07-24 | 杭州蚁租网络科技有限公司 | 一种电动车信用免押的租车方法 |
| CN113191511A (zh) * | 2021-04-20 | 2021-07-30 | 汉海信息技术(上海)有限公司 | 网上约车方法及装置,电子设备及可读存储介质 |
| CN113538076A (zh) * | 2020-04-15 | 2021-10-22 | 长城汽车股份有限公司 | 基于人脸识别的无钥匙进入的租车方法 |
| CN115409561A (zh) * | 2022-09-20 | 2022-11-29 | 北京悟空出行科技有限公司 | 租车推荐方法和计算机可读存储介质 |
| CN117592587A (zh) * | 2023-11-14 | 2024-02-23 | 北京悟空出行科技有限公司 | 一种基于还车预约数据的车辆调度系统 |
| CN118521310A (zh) * | 2024-06-20 | 2024-08-20 | 广州雕马快租科技有限公司 | 一种基于信用免押的租金自动代扣系统及其方法 |
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| CN109242617B (zh) * | 2018-08-27 | 2021-09-28 | 创新先进技术有限公司 | 一种租车方法及系统 |
| CN110245288A (zh) * | 2019-05-17 | 2019-09-17 | 深圳市元征科技股份有限公司 | 一种基于多维评价系统的车辆匹配方法及装置 |
| CN110853365A (zh) * | 2019-11-20 | 2020-02-28 | 上海博泰悦臻网络技术服务有限公司 | 一种车辆的共享方法及装置 |
| CN111275418A (zh) * | 2020-01-16 | 2020-06-12 | 深圳市元征科技股份有限公司 | 租车管理方法及相关设备 |
| CN113160541A (zh) * | 2020-01-22 | 2021-07-23 | 光阳工业股份有限公司 | 电动车的返还方法 |
| CN112258699B (zh) * | 2020-10-10 | 2022-12-27 | 上海擎感智能科技有限公司 | 车辆钥匙及控制方法 |
| CN113724448A (zh) * | 2021-07-22 | 2021-11-30 | 量道(深圳)储能科技有限公司 | 基于移动电源智能共享租赁的方法、云服务器及系统 |
| JP7553415B2 (ja) * | 2021-09-16 | 2024-09-18 | ウーブン・バイ・トヨタ株式会社 | 認証方法、認証システム、及び認証サーバ |
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| CN109242617B (zh) | 2021-09-28 |
| CN109242617A (zh) | 2019-01-18 |
| TW202009837A (zh) | 2020-03-01 |
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