WO2020142994A1 - 一种控制方法、售票规则服务器、检票规则服务器及装置 - Google Patents
一种控制方法、售票规则服务器、检票规则服务器及装置 Download PDFInfo
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- WO2020142994A1 WO2020142994A1 PCT/CN2019/071211 CN2019071211W WO2020142994A1 WO 2020142994 A1 WO2020142994 A1 WO 2020142994A1 CN 2019071211 W CN2019071211 W CN 2019071211W WO 2020142994 A1 WO2020142994 A1 WO 2020142994A1
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- ticket
- rule
- checking
- inspection
- control method
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L9/00—Cryptographic mechanisms or cryptographic arrangements for secret or secure communications; Network security protocols
- H04L9/40—Network security protocols
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- G—PHYSICS
- G07—CHECKING-DEVICES
- G07C—TIME OR ATTENDANCE REGISTERS; REGISTERING OR INDICATING THE WORKING OF MACHINES; GENERATING RANDOM NUMBERS; VOTING OR LOTTERY APPARATUS; ARRANGEMENTS, SYSTEMS OR APPARATUS FOR CHECKING NOT PROVIDED FOR ELSEWHERE
- G07C9/00—Individual registration on entry or exit
Definitions
- This application relates to the technical field of ticket inspection systems, in particular to a control method, a ticket sales rule server, a ticket inspection rule server and a device.
- the current ticket inspection system has three main methods.
- the first method is manual ticket inspection. This method requires manual operation, which is more troublesome.
- the ticket inspection system In the second method, the ticket inspection system must be used together. Tickets can be checked manually; the third method is offline electronic tickets, where the ticket or recharged money is placed in an electronic device (such as a card), and the deduction is recorded in this electronic device when checking the ticket. This method can be achieved to a certain extent. Offline ticket checking, but electronic equipment needs to be purchased in advance, which is very inconvenient and flexible for users.
- the inventor of the present application has found in long-term research and development that in places where ticket checking is required, such as exhibitions or scenic spots, if the network is disconnected, the ticket checking can only be performed manually, making the ticket checking process cumbersome.
- the main problem solved by this application is to provide a control method, a ticket selling rule server, a ticket checking rule server control method, a ticket selling system, a ticket checking system and a device, which can realize offline ticket selling and checking.
- the technical solution adopted by the present application is to provide a control method of the ticket inspection rule server, wherein the control method of the ticket inspection rule server includes: processing the number of tickets to be inspected within a preset time period according to rule processing logic, To generate a first ticket checking rule; wherein, the first ticket checking rule includes: at least one of a ticket information rule, a ticket encryption rule, a time rule, and a meta rule, and the ticket information rule includes a combination of ticket information and ticket information arrangement, ticket encryption
- the rules include the encryption method, signature and password of the ticket, the time rule includes the valid ticket checking period, and the meta rule includes the explanation of the ticket information rule, the order of ticket issuance and the order of ticket checking; the first ticket checking rule is sent to the ticketing rule server.
- the technical solution adopted by the present application is to provide a ticket checking rule server, wherein the ticket checking rule server is used to execute the control method of the aforementioned ticket checking rule server.
- the technical solution adopted by the present application is to provide a method for controlling the ticketing rule server, wherein the method for controlling the ticketing rule server includes: obtaining the first ticket checking rule generated by the aforementioned ticket checking rule server; A ticket checking rule generates a first ticket checking token; sends the first ticket checking token to the ticketing system, so that the ticket selling system generates a ticket based on the first ticket checking token; wherein, the first ticket checking token includes at least: rule index, encrypted information, signature At least one of information, ciphertext, and key ciphertext, as well as the first ticket inspection rule and ticket information.
- the technical solution adopted by the present application is to provide a ticketing rule server, wherein the ticketing rule server is used to execute the control method of the aforementioned ticketing rule server.
- the technical solution adopted by the present application is to provide a control method of the ticket inspection system, wherein the control method of the ticket inspection system includes: obtaining a ticket generated by the ticketing system based on the first ticket inspection token, wherein the first ticket inspection The token is generated as the aforementioned ticketing rule server responds to the first ticket checking rule; verifies the ticket and generates a verification result; and sends the verification result to the ticketing system.
- the technical solution adopted by the present application is to provide a ticket inspection system, wherein the ticket inspection system is used to execute the control method of the aforementioned ticket inspection system.
- the technical solution adopted in this application is to provide a control method of the ticketing system, wherein the control method of the ticketing system includes: acquiring the first ticketing token generated by the ticketing rule server as described above in response to the first ticketing rule; Generate a ticket based on the first ticket checking token.
- the technical solution adopted by the present application is to provide a ticketing system, wherein the control method for the ticketing system as described above is executed.
- the technical solution adopted in this application is to provide a ticket inspection system, which includes a ticketing system, a mobile terminal and at least one ticket inspection system connected in sequence, the ticket inspection system includes a ticket inspection rule server, and the ticket sales system includes a ticket inspection rule server ;
- the ticket inspection rule server is used to process the number of tickets to be inspected within a preset time period according to the rule processing logic to generate a first ticket inspection rule, and sends the first ticket inspection rule to the ticket sales rule server;
- the ticket sales rule server is used to obtain the first ticket inspection Rules, generate a first ticket checking token in response to the first ticket checking rule, and send the first ticket checking token to the ticketing system;
- the ticket selling system is used to obtain the first ticket checking token and generate a ticket based on the first ticket checking token;
- the ticket checking rule The server includes a first interface, and the ticketing rule server includes a second interface.
- the first interface is used to store or store data via a GSM/GPRS/CDMA/TD-SCDMA/WCDMA/CDMA2000/TD-LTE/FDD-LTE/WIFI wireless network or a wired network.
- At least one of the device, NFC or IoT terminal perception sends the first ticket inspection rule to the second interface;
- the ticket inspection system includes a third interface, and the ticketing system includes a fourth interface, and the third interface is used to pass GSM/GPRS/CDMA /TD-SCDMA/WCDMA/CDMA2000/TD-LTE/FDD-LTE/WIFI wireless network or wired network
- storage device, NFC or IoT terminal perception at least one way to send the verification result of the bill to the fourth interface and /Or refund information.
- the technical solution adopted by the present application is to provide a device with a storage function for storing a computer program, wherein, when the computer program is executed by a processor, it is used to realize the control of the aforementioned ticket inspection rule server
- the beneficial effect of the present application is that the ticket inspection rule server generates a first ticket inspection rule based on the number of tickets to be inspected, and sends the first ticket inspection rule to the ticket inspection rule server, so that the ticket inspection rule server generates a first ticket inspection order in response to the first ticket inspection rule At this time, regardless of whether the network is in good condition or when the network is disconnected, the ticket inspection system can verify the ticket, realize offline ticket inspection, and maintain the continuity of ticket inspection.
- FIG. 1 is a first schematic flowchart of an embodiment of a control method of a ticket inspection rule server of this application;
- FIG. 2 is a second schematic flow chart of an embodiment of a control method of a ticket inspection rule server of this application;
- FIG. 3 is a third schematic flowchart of an embodiment of a control method of a ticket inspection rule server of the present application
- FIG. 4 is a fourth schematic flow chart of an embodiment of the control method of the ticket checking rule server of the present application.
- FIG. 5 is a schematic diagram of the structure of the ticket inspection rule server of this application.
- FIG. 6 is a schematic flowchart of an embodiment of a method for controlling a ticketing rule server of this application
- FIG. 8 is a first flow diagram of an embodiment of the control method of the ticket inspection system of the present application.
- FIG. 9 is a second flow diagram of an embodiment of the control method of the ticket inspection system of the present application.
- FIG. 10 is a third schematic flow chart of an embodiment of the control method of the ticket inspection system of the present application.
- FIG. 11 is a schematic diagram of the structure of the ticket inspection system of this application.
- FIG. 12 is a first flow diagram of an embodiment of the control method of the ticketing system of the present application.
- FIG. 13 is a second flow diagram of an embodiment of the control method of the ticketing system of the present application.
- FIG. 14 is a third schematic flow chart of an embodiment of the control method of the ticketing system of the present application.
- 15 is a fourth flow diagram of an embodiment of the control method of the ticketing system of the present application.
- 17 is a schematic structural diagram of the ticket inspection system of this application.
- FIG. 18 is a schematic diagram corresponding to the ticket sales system and ticket inspection system in an embodiment of the ticket sales inspection system of FIG. 17;
- 19 is a schematic structural diagram of an embodiment of a device with a storage function provided by this application.
- this application provides a control method of a ticket inspection rule server.
- the control method of the ticket inspection rule server includes the following steps:
- S101 Process the number of tickets to be checked within a preset time period according to rule processing logic to generate a first ticket checking rule.
- the ticket checking rule server may obtain the number of ticket to be checked within each preset time period manually entered.
- the first ticket inspection rules include: at least one of ticket information rules, ticket encryption rules, time rules, and meta rules.
- Ticket information rules include ticket information and arrangement of ticket information.
- Ticket encryption rules include ticket encryption methods, signatures, and passwords
- the time rule includes the effective ticket checking time period, and the meta rule includes the explanation of ticket information rules, the order of ticket issuance, and the order of ticket inspection.
- Rule processing logic is used to arrange and combine ticket information rules, ticket encryption rules, time rules or meta rules.
- the ticket information rules stipulate the information contained in the ticket and the interpretation of the ticket information, such as "ticket number + ticket date + ticket type”.
- the ticket encryption rules stipulate how the tickets are encrypted and decrypted, and the ticket signature and password.
- the ticket encryption rules can be RSA1024-bit encryption algorithms.
- the time rule includes the valid ticket checking time period. For example, the time serial number 20181001 indicates that the ticket is used for checking on October 10, 2018. That is, after the rule processing logic arranges and combines the above ticket information rules, ticket encryption rules, time rules or meta rules, a RSA1024-bit encryption algorithm-encrypted ticket can be obtained.
- the ticket is used for ticket inspection on October 10, 2018.
- the ticket information is "ticket number + ticket date + ticket type”.
- S102 Send the first ticket checking rule to the ticketing rule server.
- the ticketing system can sell tickets through external tools such as windows, self-service machines, and barcode scanning, and the ticket checking system can check tickets through gates and handheld machines.
- the ticket checking system and ticket checking rule service are deployed on the internal network, while the ticketing system and ticketing rule service are deployed on the external network.
- the ticket checking system and ticketing system can communicate normally, and the ticket checking section rule service and ticketing rule service can also communicate normally.
- the GSM/GPRS/CDMA/TD-SCDMA/WCDMA/CDMA2000/TD-LTE/FDD-LTE/WIFI wireless network or wired network, storage devices, NFC or Internet of Things terminals can be used between the ticket inspection rule server and the ticket sales rule server
- At least one way in perception is to interact with each other to achieve the synchronization of the first ticket checking rules, and then to ensure normal ticket checking when the signal is not good or the network is disconnected.
- the method of dynamically displaying the QR code and the asymmetric encryption method to digitally sign the dynamic data can be used to encrypt the first ticket inspection rule, which can effectively prevent the first ticket inspection rule from being blocked. Copy forgery. Use the preset encryption key to encrypt the first ticket checking rules to obtain the encrypted first ticket checking rules, and send the encrypted first ticket checking rules to the ticketing rule server.
- Asymmetric encryption algorithm is an algorithm that uses a pair of completely different but matching public and private keys to encrypt and decrypt data. Unlike symmetric encryption algorithms, asymmetric encryption algorithms require two keys: a public key and a private key. The public key and the private key are matched with each other. If the public key is used to encrypt data, only the corresponding private key can be used to decrypt. Therefore, the ticketing rule server and ticket checking rule server in this embodiment respectively hold a public key and a private key.
- the ticket inspection rule server generates a pair of keys and discloses one of the keys to the ticket sales rule server as a public key.
- the ticketing rule server that obtained the public key uses the key to encrypt the data to be transmitted before sending it to the ticket checking rule server.
- the ticket inspection rule server then decrypts the encrypted data with the private key saved by itself.
- the ticket inspection rule server can only use its private key to decrypt any information encrypted by its public key.
- the beneficial effect of this embodiment is that the ticket checking rule server generates a first ticket checking rule according to the number of tickets to be checked, and sends the first ticket checking rule to the ticket selling rule server, so that the ticket selling rule server generates a first ticket checking token in response to the first ticket checking rule.
- the ticket inspection system can verify the ticket, realize offline ticket inspection, and maintain the continuity of ticket inspection.
- control method of the ticket inspection rule server further includes the following steps:
- a plurality of rule processing logics may exist in the ticket checking rule server, and a correspondence relationship between the rule processing logic and the corresponding first ticket checking rule is established.
- the GSM/GPRS/CDMA/TD-SCDMA/WCDMA/CDMA2000/TD-LTE/FDD-LTE/WIFI wireless network or wired network, storage devices, NFC or Internet of Things terminals can be used between the ticket inspection rule server and the ticket sales rule server In at least one way of perception, information is exchanged to achieve synchronization of rule processing logic and corresponding relationship.
- control method of the ticket inspection rule server further includes:
- S301 Set a ticket-selling rule handshake protocol, which is used to explain the first ticket-sending rule to the ticket-selling rule server.
- the ticket checking rule server sets a sales ticket checking rule handshake protocol
- the sales ticket checking rule handshake protocol may be one or more of http2-0rtt, spdy-0rtt, spdy-1rtt, and https:
- S302 Send a ticket inspection handshake agreement to the ticket sales rule server.
- the GSM/GPRS/CDMA/TD-SCDMA/WCDMA/CDMA2000/TD-LTE/FDD-LTE/WIFI wireless network or wired network, storage devices, NFC or Internet of Things terminals can be used between the ticket inspection rule server and the ticket sales rule server In at least one way of perception, information exchange is carried out to realize the synchronization of the handshake protocol of ticket inspection rules.
- control method of the ticket inspection rule server further includes:
- the ticket checking rule server generates a second ticket checking rule.
- step S402 is similar to step S101.
- the second ticket checking rules include: ticket information rules, ticket encryption rules, and time rules.
- Ticket information rules include ticket information and arrangement of ticket information
- ticket encryption rules include ticket encryption methods, signatures, and passwords
- time rules include valid ticket checking time periods. I will not repeat them here.
- S403 Send the second ticket checking rule to the ticketing rule server.
- step S403 is similar to step S102.
- step S102 For details, refer to step S102, and details are not described herein.
- the ticket inspection rule server and the ticket inspection rule server can implement the ticket inspection through the second ticket inspection rule, in order to avoid that the leaked first ticket inspection rule continues to be used by criminals and cause further economic losses, the leaked first ticket inspection can be discarded Rules, and delete the leaked first ticket checking rule in the ticket checking rule server and the ticket selling rule server.
- the ticket checking rule server includes a first interface
- the ticket selling rule server includes a second interface
- the step of sending the first ticket checking rule to the ticket selling rule server includes: the first interface passes GSM/GPRS/CDMA/TD-SCDMA/WCDMA /CDMA2000/TD-LTE/FDD-LTE/WIFI wireless network or wired network, storage device, NFC or Internet of Things terminal perception, at least one way to send the first ticket inspection rule to the second interface.
- the first interface of the ticket checking rule server is through a GSM/GPRS/CDMA/TD-SCDMA/WCDMA/CDMA2000/TD-LTE/FDD-LTE/WIFI wireless network or a wired network
- a storage device NFC or
- At least one way in the perception of the Internet of Things terminal sends the first ticket checking rule to the second interface of the ticket checking rule server, so that the ticket selling rule server generates a first ticket checking token in response to the first ticket checking rule, at this time, whether it is in a good network state Or in the case of network disconnection, the ticket inspection system can verify the tickets, realize offline ticket inspection, and maintain the continuity of ticket inspection.
- the present application provides a ticket checking rule server, and the ticket checking rule server 50 is used to execute the control method of the aforementioned ticket checking rule server.
- this application provides a method for controlling a ticketing rule server.
- the method for controlling a ticketing rule server includes the following steps:
- the ticketing rule server may pass at least one of GSM/GPRS/CDMA/TD-SCDMA/WCDMA/CDMA2000/TD-LTE/FDD-LTE/WIFI wireless network or wired network, storage device, NFC or Internet of Things terminal perception Obtain the first ticket checking rule generated by the ticket checking rule server in various ways.
- S602 Generate a first ticket checking token in response to the first ticket checking rule.
- the ticket selling rule server responds to the first ticket checking rule, that is, generates the first ticket checking token.
- the first ticket checking token includes at least one of rule index, encrypted information, signature information, ciphertext, and key ciphertext, and the first ticket checking rule and ticket information.
- the first ticket checking token can be valid once, ensuring that it cannot be forged.
- S603 Send the first ticket checking token to the ticket selling system, so that the ticket selling system generates a ticket according to the first ticket checking token.
- the ticket selling system may generate a ticket according to at least one of rule index, encrypted information, signature information, ciphertext, and key ciphertext, as well as the first ticket inspection rule and ticket information.
- Ticket information may include the effective ticket checking time, applicable crowd, price, and so on.
- the first ticket checking token may be an encrypted token.
- the ticket selling system may use a preset decryption key to decrypt the first ticket checking token to obtain the first ticket checking The information in the token.
- the first ticket checking token may also be an encoded ticket checking token.
- the ticket selling system may use a preset decoding format to decode the first ticket checking token to obtain the information in the first ticket checking token;
- the first verification rule set verifies the authenticity of the information of the first verification token and stores the verification result.
- the mobile terminal of the tourist or user can obtain the first ticket from the ticketing system, and then send the ticket to the ticket checking device through the mobile terminal.
- the ticket can be an electronic ticket, for example, a QR code, radio frequency identification information or Bluetooth At least one of the information.
- the ticket inspection equipment keeps the verification records to ensure that the same bill will not be inspected again as a new ticket after inspection, improving safety and processing efficiency.
- the present application provides a ticketing rule server, and the ticketing rule server is used to execute the control method of the aforementioned ticketing rule server.
- the present application provides a control method of a ticket inspection system, wherein the control method of the ticket inspection system includes the following steps:
- S801 Obtain the ticket generated by the ticketing system according to the first ticket checking token.
- the mobile terminal of the tourist or user can obtain the first ticket from the ticketing system, and then send the ticket to the ticket checking device through the mobile terminal.
- the ticket can be an electronic ticket, for example, a two-dimensional code, radio frequency identification At least one of information or Bluetooth information.
- the ticket inspection equipment keeps the verification records to ensure that the same bill will not be inspected again as a new ticket after inspection, improving safety and processing efficiency.
- the first ticket checking token is generated by the ticketing rule server as described above in response to the first ticket checking rule.
- the ticket checking system may adopt the preset first ticket checking rule to verify the validity of the ticket information of the ticket using the first ticket checking rule.
- the ticket information includes the validity time of the ticket, whether the ticket is refunded, and whether the ticket is Verify, and store the verification result.
- the bills can be valid once, to ensure that the bills cannot be forged, and the ticket inspection equipment saves the verification record after verification, to ensure that the same electronic ticket will not be checked again as a new ticket after inspection, improving safety and processing efficiency.
- the ticket checking system may be at least one of GSM/GPRS/CDMA/TD-SCDMA/WCDMA/CDMA2000/TD-LTE/FDD-LTE/WIFI wireless network or wired network, storage device, NFC or Internet of Things terminal perception
- the ticketing system sends verification results.
- the ticketing system can sell tickets through external tools such as windows, self-service machines, and barcode scanning.
- the ticket checking system can check tickets through gates and handheld machines. In the above manner, when the ticketing system and the ticket checking system interact with each other, there is no need for networking between the two to enable ticket checking, and no pre-purchase is required.
- control method of the ticket inspection system further includes the following steps:
- S901 Obtain a refund request submitted by the user.
- the user may submit a refund request at the ticket inspection system, or may submit a refund request at the ticket sales system, and then the ticket sales system sends the refund request to the ticket inspection system.
- S902 Determine whether the ticket corresponding to the refund request has been checked.
- the ticket checking system determines whether the ticket corresponding to the ticket refund request has been checked.
- the refund information includes: the ticket number, the valid date of the ticket, whether to refund the ticket, the time of refund, etc.
- the ticket checking system can also process refunds, which is realized through the ticket refunding information list in the ticket checking system. Before the ticket is purchased, the user can directly refund the ticket at the ticket checking system. The ticket checking system compares the refund information with the ticket checking information list.
- the ticket checking information list includes ticket checking information, for example, the ticket number of the ticket checking, the ticket validity date, Whether to check tickets, check ticket time, etc.
- the refund fails. If the ticket has not been checked, the refund is successful, and the ticket checking system stores the refund information, marks the ID corresponding to the successful ticket as refunded, and sends the refund information to the ticketing system. Further, if the ticket checking system already has refund information for the ticket, the ticket checking fails.
- the holder can also directly refund the ticket through the ticketing system.
- the ticketing system After the ticketing system obtains the refund request submitted by the user, the ticketing system sends the refund request to the ticket checking system.
- the ticket checking system compares the refund information and the ticket checking information list. If the ticket has been checked, the refund fails. If the ticket has not been checked, the refund is successful, and the ticket checking system retains the ticket refund information. Further, if the ticket checking system already has refund information for the ticket, the ticket checking fails.
- the ticket inspection system includes a third interface
- the ticket sales system includes a fourth interface
- the control method of the ticket inspection system further includes: the third interface via GSM/GPRS/CDMA/TD-SCDMA/WCDMA/CDMA2000/TD-LTE/ At least one of FDD-LTE/WIFI wireless network or wired network, storage device, NFC or Internet of Things terminal perception, sends the verification result and/or refund information to the fourth interface.
- control method of the ticket inspection system further includes the following steps:
- S1001 Obtain the refund information generated by the ticket sales system in response to the refund request submitted by the user.
- the user can directly refund the ticket at the ticketing system.
- the ticketing system responds to the refund information generated by the refund request submitted by the user, and then the ticketing system sends the refund information to the ticket inspection system.
- S1002 Determine whether the ticket corresponding to the refund information has been checked, store the judgment result, and send the judgment result to the ticketing system.
- the ticket checking system compares the refund information and the ticket checking information list, where the ticket checking information list includes ticket checking information, for example, the ticket number of the ticket checking, the ticket validity date, whether the ticket is checked, the ticket checking time, and so on. If the ticket has been checked, the refund fails. If the ticket has not been checked, the refund is successful, and the ticket checking system stores the refund information and sends the refund information to the ticketing system. Further, if the ticket checking system already has refund information for the ticket, the ticket checking fails.
- ticket checking information list includes ticket checking information, for example, the ticket number of the ticket checking, the ticket validity date, whether the ticket is checked, the ticket checking time, and so on. If the ticket has been checked, the refund fails. If the ticket has not been checked, the refund is successful, and the ticket checking system stores the refund information and sends the refund information to the ticketing system. Further, if the ticket checking system already has refund information for the ticket, the ticket checking fails.
- the present application provides a ticket checking system, wherein the ticket checking system is used to execute the control method of the ticket checking system as described above.
- the control method for a ticketing system includes:
- S1201 Obtain the ticketing rule server as described above and generate a first ticket checking token in response to the first ticket checking rule.
- the ticketing system obtains the first ticket checking token from the ticketing rule server.
- S1202 Generate a ticket based on the first ticket checking token.
- the first ticket checking token includes at least one of a rule index, encrypted information, signature information, ciphertext, and key ciphertext, and the first ticket checking rule and ticket information generating ticket.
- the ticketing system may encrypt the first ticket checking rule and ticket information according to at least one of rule index, encrypted information, signature information, ciphertext, and key ciphertext to obtain an encrypted ticket.
- the ticket may be an encoded or encrypted ticket, and the ticket inspection system may use a preset decoding key to decrypt the ticket.
- the ticket checking system may store at least one of an encryption key, a decryption key, an encoding format, and a decoding format. After decryption, the ticket inspection system detects whether the bill information complies with the first ticket inspection rules.
- control method of the ticketing system further includes:
- the ticket selling system may acquire the refund information stored in the ticket checking system in step S903.
- control method of the ticketing system further includes:
- the user can directly submit a refund request at the ticketing system side.
- S1402 Respond to the refund request, and determine whether the ticket corresponding to the refund request is valid.
- the ticketing system responds to the refund request, obtains the ticket number or ticket label corresponding to the refund request, and compares the ticket refund information with the ticket sales information list, where the ticket sales information list includes ticket information that has been checked, for example, the ticket number of the ticket sold , Ticket validity date, whether to sell tickets, ticket sales time, etc. To determine whether there is a ticket corresponding to the refund request among the tickets sold.
- S1403 Generate refund information and send the refund information to the ticket inspection system.
- the refund information includes: the ticket number, the valid date of the ticket, whether to refund the ticket, the time of refund, etc.
- the ticketing system can use at least one of data transmission module, ZIGBEE module, RFID, Bluetooth, WLAN, infrared remote control, short message, storage device, or Internet of Things terminal perception to send the refund information to the ticketing system.
- S1404 Obtain the ticket inspection information generated by the ticket inspection system based on the refund information.
- the ticket checking information is whether the ticket corresponding to the refund request has been checked.
- the ticket checking information is whether the ticket corresponding to the refund request has been checked.
- the ticket sales system sends the refund information to the ticket inspection system.
- the ticket checking system compares the refund information with the ticket checking information list. If the ticket has been checked, the refund fails. If the ticket has not been checked, the refund is successful.
- the ticket checking system retains the ticket refund information and generates the ticket checking information to send the ticket checking system to the ticketing system. information. Further, if the ticket checking system already has refund information for the ticket, the ticket checking fails.
- control method of the ticketing system further includes:
- S1501 The ticketing system generates a pre-sale ticket.
- the ticketing system can also generate a pre-sale ticket, and the user can hold the pre-sale ticket in advance.
- the ticket selling system converts the pre-sale ticket into a ticket based on the first ticket checking token.
- the user can replace the pre-sale ticket with a ticket that conforms to the rules at the ticketing system side, and then when the ticket checking system checks the ticket and sets the effective ticket checking time period in the ticket checking system, the ticket selling system is based on the first The ticket checking token converts the pre-sale ticket into a ticket.
- the present application provides a ticketing system 160, wherein the ticketing system 160 is used to execute the control method of the ticketing system as described above.
- the ticket inspection system 170 includes a ticket sales system 160, a mobile terminal 171, and at least one ticket inspection system 120 connected in sequence.
- the ticket inspection system 120 includes a ticket inspection rule server 50
- the ticket sales system 160 includes a ticket inspection rule server 70.
- the ticket checking rule server 50 is configured to process the number of tickets to be checked within a preset time period according to rule processing logic to generate a first ticket checking rule, and send the first ticket checking rule to the ticket selling rule server 70.
- the ticket selling rule server 70 is used to obtain a first ticket checking rule, generate a first ticket checking token in response to the first ticket checking rule, and send the first ticket checking token to the ticket selling system 160.
- the ticket selling system 160 is used to obtain a first ticket checking token and generate a ticket according to the first ticket checking token.
- the ticket checking rule server 50 includes a first interface
- the ticket selling rule server 70 includes a second interface.
- the first interface is used for wireless communication via GSM/GPRS/CDMA/TD-SCDMA/WCDMA/CDMA2000/TD-LTE/FDD-LTE/WIFI
- the first ticket checking rule is sent to the second interface in at least one of network or wired network, storage device, NFC, or Internet of Things terminal perception.
- the ticket checking system 120 includes a third interface, and the ticketing system 160 includes a fourth interface.
- the third interface is used to pass the GSM/GPRS/CDMA/TD-SCDMA/WCDMA/CDMA2000/TD-LTE/FDD-LTE/WIFI wireless network or wired network , At least one of storage device, NFC or Internet of Things terminal perception, sending the verification result and/or refund information of the ticket to the fourth interface.
- each ticket checking system 120 corresponds to a preset ticket checking rule to verify different types of electronic tickets generated by the ticket selling system 160, as shown in FIG. 18.
- the ticket checking system 120 is also used to encrypt the ticket checking rules and decrypting the ticket checking tokens.
- the ticket selling system 160 is also used to decrypt the ticket checking rules and encrypting the ticket checking tokens.
- the ticket checking system 120 stores the ticket selling system 160 The decryption key corresponding to the encryption key used for encryption, and the ticket selling system 160 stores the decryption key corresponding to the encryption key used for encryption by the ticket checking system 120.
- the ticketing system 160 and the ticket checking system 120 can be encrypted to ensure the security of data transmission.
- the ticketing system 160 and the ticket checking system 120 can each generate their own secret keys, and then hold the secret keys of the other party to Ensure the independence and unforgeability of data between the ticketing system 160 and multiple ticket checking systems 120.
- the ticket checking system 120 is also used to encode the ticket checking rules and decoding the ticket checking tokens.
- the ticket selling system 160 is also used to decode the ticket checking rules and encode the ticket checking tokens.
- the ticket checking system 120 stores the ticket selling system The decoding format corresponding to the encoding format adopted by 160, and the ticketing system 160 stores the decoding format corresponding to the encoding format adopted by the ticket checking system 120.
- the ticket checking system 120 can verify the legality of the electronic ticket generated by the ticketing system 160.
- the ticket checking rules can stipulate the generation method, encoding format, encryption method and secret key of the electronic ticket, so that the tickets generated by the same ticket checking rules can use the same
- the ticket checking rules of the system check its legality. If the ticket checking rules of the ticketing system 160 and the ticket checking system 120 are inconsistent with the secret keys, the authenticity of the electronic ticket cannot be checked.
- a ticket checking system 160 and a ticket checking system 120 are provided without a network connection.
- the ticket inspection system 170 can ensure the security of the bills and the rules of the ticket inspection are the same.
- the ticket sales system 160 and the ticket inspection system 120 implement an offline handshake to enable offline ticket inspections.
- the present application provides an apparatus 90 with a storage function for storing a computer program 91, where the computer program 91, when executed by a processor, is used to implement the control method of the ticket inspection rule server as described above, as described above.
- the storage-capable device 90 may be a server, a U disk, a mobile hard disk, a read-only memory (ROM, Read-Only Memory), a random access memory (RAM, Random Access Memory), a magnetic disk, or an optical disk.
- the disclosed method and device may be implemented in other ways.
- the device implementation described above is only schematic.
- the division of modules or units is only a division of logical functions.
- there may be other divisions for example, multiple units or components may be combined or Can be integrated into another system, or some features can be ignored, or not implemented.
- the units described as separate components may or may not be physically separate, and the components displayed as units may or may not be physical units, that is, they may be located in one place or may be distributed on multiple network units. Some or all of the units may be selected according to actual needs to achieve the objectives of the solutions of this embodiment.
- each functional unit in each embodiment of the present application may be integrated into one processing unit, or each unit may exist alone physically, or two or more units are integrated into one unit.
- the above integrated unit can be implemented in the form of hardware or software function unit.
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- Devices For Checking Fares Or Tickets At Control Points (AREA)
Abstract
一种控制方法、售票规则服务器、检票规则服务器及装置,该检票规则服务器(50)的控制方法包括:根据规则处理逻辑对预设时间段内的待检票数量进行处理,以生成第一检票规则(S101);其中,第一检票规则包括:票信息规则、票加密规则、时间规则以及元规则中的至少一种,票信息规则包括票信息以及票信息的排布组合,票加密规则包括票的加密方式、签名以及密码,时间规则包括票的有效检票时间段,元规则包括票信息规则的解释说明、出票顺序以及验票顺序;向售票规则服务器(70)发送第一检票规则(S102)。通过上述方式,能够实现离线售检票。
Description
本申请涉及售检票系统技术领域,具体涉及一种控制方法、售票规则服务器、检票规则服务器及装置。
目前的售检票系统主要有三种方式,第一种方式为人工售检票,这种方式需要人工操作,比较麻烦;第二种方式中售检票系统必须在一起使用,如果售检票系统不在一起就只能人工检票;第三种方式为离线电子票,将票或充值的钱放到某个电子设备中(比如卡),检票时在这个电子设备里面记录扣款,这种方式可以在一定程度实现离线检票,但是需要预先购买电子设备,对于用户来说很不方便灵活。
本申请的发明人在长期研发中发现,在会展或景区等需要检票的场所下,如果断网的情况下只能手工检票,使得检票流程繁琐。
【发明内容】
本申请主要解决的问题是提供一种控制方法、一种售票规则服务器、检票规则服务器控制方法、售票系统、检票系统及及装置,能够实现离线售检票。
为解决上述技术问题,本申请采用的技术方案是提供一种检票规则服务器的控制方法,其中,检票规则服务器的控制方法包括:根据规则处理逻辑对预设时间段内的待检票数量进行处理,以生成第一检票规则;其中,第一检票规则包括:票信息规则、票加密规则、时间规则以及元规则中的至少一种,票信息规则包括票信息以及票信息的排布组合,票加密规则包括票的加密方式、签名以及密码,时间规则包括票的有效检票时间段,元规则包括票信息规则的解释说明、出票顺序以及验票顺序;向售票规则服务器发送第一检票规则。
为解决上述技术问题,本申请采用的技术方案是提供一种检票规则服务器,其中,检票规则服务器用于执行前述的检票规则服务器的控制方法。
为解决上述技术问题,本申请采用的技术方案是提供一种售票规则服务器的控制方法,其中,售票规则服务器的控制方法包括:获取如前述的检票规则服务器所生成的第一检票规则;响应第一检票规则生成第一检票令牌;向售票系统发送第一检票令牌,以使售票系统依据第一检票令牌生成票据;其中,第一检票令牌至少包括:规则索引、加密信息、签名信息、密文、密钥密文中的至少一种、以及第一检票规则和票信息。
为解决上述技术问题,本申请采用的技术方案是提供一种售票规则 服务器,其中,售票规则服务器用于执行如前述的售票规则服务器的控制方法。
为解决上述技术问题,本申请采用的技术方案是提供一种检票系统的控制方法,其中,检票系统的控制方法包括:获取售票系统依据第一检票令牌所生成的票据,其中,第一检票令牌为如前述的售票规则服务器响应第一检票规则生成;对票据进行验证,并产生验证结果;向售票系统发送验证结果。
为解决上述技术问题,本申请采用的技术方案是提供一种检票系统,其中,检票系统用于执行如前述的检票系统的控制方法。
为解决上述技术问题,本申请采用的技术方案是提供一种售票系统的控制方法,其中,售票系统的控制方法包括:获取如前述的售票规则服务器响应第一检票规则生成第一检票令牌;依据第一检票令牌生成票据。
为解决上述技术问题,本申请采用的技术方案是提供一种售票系统,其中,用于执行如前述的售票系统的控制方法。
为解决上述技术问题,本申请采用的技术方案是提供一种售检票系统,其中,包括依次连接的售票系统、移动终端以及至少一个检票系统,检票系统包括检票规则服务器,售票系统包括售票规则服务器;检票规则服务器用于根据规则处理逻辑对预设时间段内的待检票数量进行处理,以生成第一检票规则,并向售票规则服务器发送第一检票规则;售票规则服务器用于获取第一检票规则,响应第一检票规则生成第一检票令牌,并向售票系统发送第一检票令牌;售票系统用于获取第一检票令牌,并依据第一检票令牌生成票据;其中,检票规则服务器包括第一接口,售票规则服务器包括第二接口,第一接口用于通过GSM/GPRS/CDMA/TD-SCDMA/WCDMA/CDMA2000/TD-LTE/FDD-LTE/WIFI无线网络或有线网络、存储设备、NFC或者物联网终端感知中的至少一种方式,向第二接口发送第一检票规则;检票系统包括第三接口,售票系统包括第四接口,第三接口用于通过GSM/GPRS/CDMA/TD-SCDMA/WCDMA/CDMA2000/TD-LTE/FDD-LTE/WIFI无线网络或有线网络、存储设备、NFC或者物联网终端感知中的至少一种方式,向第四接口发送票据的验证结果和/或退票信息。
为解决上述技术问题,本申请采用的技术方案是提供一种具有存储功能的装置,用于存储计算机程序,其中,计算机程序在被处理器执行时,用于实现如前述的检票规则服务器的控制方法、如前述的售票规则服务器的控制方法、如前述的检票系统的控制方法或者如前述的售票系统的控制方法。
通过上述方案,本申请的有益效果是:检票规则服务器依据待检票数量生成第一检票规则,并发送第一检票规则给售票规则服务器,以使 得售票规则服务器响应第一检票规则生成第一检票令牌,此时,无论是在网络状态良好或者在断网情况下,检票系统都能对票据进行验证,实现离线售检票,保持售检票的连续性。
为了更清楚地说明本发明实施例中的技术方案,下面将对实施例描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本发明的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。其中:
图1是本申请检票规则服务器的控制方法一实施例的第一流程示意图;
图2是本申请检票规则服务器的控制方法一实施例的第二流程示意图;
图3是本申请检票规则服务器的控制方法一实施例的第三流程示意图;
图4是本申请检票规则服务器的控制方法一实施例的第四流程示意图;
图5是本申请检票规则服务器的结构示意图;
图6是本申请售票规则服务器的控制方法一实施例的流程示意图;
图7是本申请售票规则服务器的结构示意图;
图8是本申请检票系统的控制方法一实施例的第一流程示意图;
图9是本申请检票系统的控制方法一实施例的第二流程示意图;
图10是本申请检票系统的控制方法一实施例的第三流程示意图;
图11是本申请检票系统的结构示意图;
图12是本申请售票系统的控制方法一实施例的第一流程示意图;
图13是本申请售票系统的控制方法一实施例的第二流程示意图;
图14是本申请售票系统的控制方法一实施例的第三流程示意图;
图15是本申请售票系统的控制方法一实施例的第四流程示意图;;
图16是本申请售票系统的结构示意图;
图17是本申请售检票系统的结构示意图;
图18是图17售检票系统一实施例中售票系统与检票系统的对应示意图;
图19是本申请提供的具有存储功能的装置一实施例的结构示意图。
下面将结合本申请实施例中的附图,对本申请实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本申请一部分实施例,而不是全部实施例。基于本申请中的实施例,本领域普通技术人 员在没有做出创造性的劳动前提下所获得的所有其他实施例,都属于本申请保护的范围。
参阅图1,本申请提供一种检票规则服务器的控制方法,该检票规则服务器的控制方法包括以下步骤:
S101:根据规则处理逻辑对预设时间段内的待检票数量进行处理,以生成第一检票规则。
具体地,为了实现离线检票,检票规则服务器可以获取人工输入的各个预设时间段内的待检票数量。
第一检票规则包括:票信息规则、票加密规则、时间规则以及元规则的至少一种,票信息规则包括票信息以及票信息的排布组合,票加密规则包括票的加密方式、签名以及密码,时间规则包括票的有效检票时间段,元规则包括票信息规则的解释说明、出票顺序以及验票顺序。
规则处理逻辑用于对票信息规则、票加密规则、时间规则或元规则进行排列组合。其中,票信息规则规定了票包含的信息以及票信息的解释,如“票号+票日期+票类型”。票加密规则规定了票是如何加解密、票的签名和密码,票加密规则可以为RSA1024位加密算法。时间规则包括票的有效检票时间段,例如,时间序号20181001表示用于2018年10月10日检票。即规则处理逻辑对上述的票信息规则、票加密规则、时间规则或元规则进行排列组合后,可以得到RSA1024位加密算法加密的票据,该票据用于2018年10月10日检票,且票据的票信息为“票号+票日期+票类型”。
S102:向售票规则服务器发送第一检票规则。
具体地,售票系统可以通过窗口、自助机、扫码购等外部工具销售票,检票系统可以通过闸机和手持机检票。检票系统和检票规则服务部署在内网,而售票系统和售票端规则服务部署在外网,平时检票系统和售票系统可以正常通信连接,检票段规则服务和售票端规则服务也可以正常通信连接。
其中,检票规则服务器和售票规则服务器之间可以通过GSM/GPRS/CDMA/TD-SCDMA/WCDMA/CDMA2000/TD-LTE/FDD-LTE/WIFI无线网络或有线网络、存储设备、NFC或者物联网终端感知中的至少一种方式进行信息交互,以实现第一检票规则的同步,进而在信号不好或者网络断开时,也可以确保正常售检票。
需要注意的是,为了第一检票规则的安全性,可以利用动态显示二维码、不对称加密方法对动态数据进行数字签名的方法对第一检票规则进行加密,可以有效防止第一检票规则被复制伪造。采用预设的加密秘钥对第一检票规则进行加密处理,以得到加密后的第一检票规则,并向售票规则服务器发送加密后的第一检票规则。
不对称加密算法是一种使用一对完全不同却相互匹配的公钥和私 钥进行数据加密、解密过程的算法。与对称加密算法不同,不对称加密算法需要两个密钥:公钥和私钥。公钥与私钥是相互匹配的,若用公钥对数据进行加密,只有用对应的私钥才能解密。因此,本实施例中的售票规则服务器和检票规则服务器分别持有公钥和私钥。检票规则服务器生成一对密钥并将其中的一把作为公钥向售票规则服务器公开。得到该公钥的售票规则服务器使用该密钥对需要传输的数据进行加密后再发送给检票规则服务器。检票规则服务器再用自己保存的私钥对加密后的数据进行解密。检票规则服务器只能用其私钥解密由其公钥加密后的任何信息。
本实施例的有益效果是:检票规则服务器依据待检票数量生成第一检票规则,并发送第一检票规则给售票规则服务器,以使得售票规则服务器响应第一检票规则生成第一检票令牌,此时,无论是在网络状态良好或者在断网情况下,检票系统都能对票据进行验证,实现离线售检票,保持售检票的连续性。
参阅图2,在一实施例中,该检票规则服务器的控制方法进一步包括以下步骤:
S201:建立规则处理逻辑与第一检票规则的对应关系。
具体地,检票规则服务器中可以存在多个规则处理逻辑,建立规则处理逻辑与对应的第一检票规则的对应关系。
S202:向售票规则服务器发送规则处理逻辑和对应关系。
其中,检票规则服务器和售票规则服务器之间可以通过GSM/GPRS/CDMA/TD-SCDMA/WCDMA/CDMA2000/TD-LTE/FDD-LTE/WIFI无线网络或有线网络、存储设备、NFC或者物联网终端感知中的至少一种方式进行信息交互,以实现规则处理逻辑和对应关系的同步。
参阅图3,在一实施例中,该检票规则服务器的控制方法进一步包括:
S301:设置售检票规则握手协议,售检票规则握手协议用于向售票规则服务器解释第一检票规则。
具体地,检票规则服务器设置售检票规则握手协议,该售检票规则握手协议可以有为http2-0rtt,spdy-0rtt,spdy-1rtt,https中一种或多种:
S302:向售票规则服务器发送售检票规则握手协议。
其中,检票规则服务器和售票规则服务器之间可以通过GSM/GPRS/CDMA/TD-SCDMA/WCDMA/CDMA2000/TD-LTE/FDD-LTE/WIFI无线网络或有线网络、存储设备、NFC或者物联网终端感知中的至少一种方式进行信息交互,以实现售检票规则握手协议的同步。
参阅图4,在一实施例中,该检票规则服务器的控制方法进一步包括:
S401:检测所述第一检票规则是否出现泄露。
若是,则进入S402。
S402:检票规则服务器生成第二检票规则。
具体地,步骤S402与步骤S101类似,具体请参见步骤S101,第二检票规则包括:票信息规则、票加密规则以及时间规则。票信息规则包括票信息以及票信息的排布组合,票加密规则包括票加密方式、签名以及密码,时间规则包括票的有效检票时间段。在此不作赘述。
S403:向售票规则服务器发送第二检票规则。
具体地,步骤S403与步骤S102类似,具体请参见步骤S102,在此不作赘述。
S404:弃置被泄露的第一检票规则。
具体地,由于检票规则服务器与售票规则服务器可以通过第二检票规则实现售检票,为避免被泄露的第一检票规则继续被不法分子使用,造成进一步的经济损失,可以弃置被泄露的第一检票规则,并在检票规则服务器与售票规则服务器中删去被泄露的第一检票规则。
在一实施例中,检票规则服务器包括第一接口,售票规则服务器包括第二接口,向售票规则服务器发送第一检票规则的步骤包括:第一接口通过GSM/GPRS/CDMA/TD-SCDMA/WCDMA/CDMA2000/TD-LTE/FDD-LTE/WIFI无线网络或有线网络、存储设备、NFC或者物联网终端感知中的至少一种方式,向第二接口发送第一检票规则。
本实施例的有益效果是:检票规则服务器的第一接口通过GSM/GPRS/CDMA/TD-SCDMA/WCDMA/CDMA2000/TD-LTE/FDD-LTE/WIFI无线网络或有线网络、存储设备、NFC或者物联网终端感知中的至少一种方式发送第一检票规则给售票规则服务器的第二接口,以使得售票规则服务器响应第一检票规则生成第一检票令牌,此时,无论是在网络状态良好或者在断网情况下,检票系统都能对票据进行验证,实现离线售检票,保持售检票的连续性。
参阅图5,本申请提供一种检票规则服务器,检票规则服务器50用于执行前述的检票规则服务器的控制方法。
具体地,检票规则服务器50的控制方法请参见上述实施例部分,在此不做赘述。
参阅图6,本申请提供一种售票规则服务器的控制方法,该售票规则服务器的控制方法包括以下步骤:
S601:获取检票规则服务器所生成的第一检票规则。
具体地,售票规则服务器可以通过GSM/GPRS/CDMA/TD-SCDMA/WCDMA/CDMA2000/TD-LTE/FDD-LTE/WIFI无线网络或有线网络、存储设备、NFC或者物联网终端感知中的至少一种方式获取检票规则服务器所生成的第一检票规则。
S602:响应第一检票规则生成第一检票令牌。
具体地,售票规则服务器在获取到第一检票规则后,会对第一检票规则进行响应,即生成第一检票令牌。
其中,第一检票令牌至少包括:规则索引、加密信息、签名信息、密文、密钥密文中的至少一种、以及第一检票规则和票信息。该第一检票令牌可以为一次有效,确保无法伪造。
S603:向售票系统发送第一检票令牌,以使售票系统依据第一检票令牌生成票据。
具体地,售票系统可以依据规则索引、加密信息、签名信息、密文、密钥密文中的至少一种、以及第一检票规则和票信息生成票据。票信息可以包括票的有效检票时间、适用人群、价格等等。
进一步地,为了信息传递的安全性,第一检票令牌可以为加密后的令牌,此时售票系统可以采用预设的解密秘钥对第一检票令牌进行解密处理,以获取第一检票令牌中的信息。
第一检票令牌也可以为编码后的检票令牌,此时售票系统可以采用预设的解码格式对第一检票令牌进行解码处理,以获取第一检票令牌中的信息;再采用预设的第一检票规则对第一检票令牌的信息真伪进行验证,并存储验证结果。
在实际环境中,游客或用户的移动终端可以从售票系统中获取第一票据,再通过移动终端将票据发送给检票设备,该票据可以为电子票,例如,二维码、射频识别信息或蓝牙信息中的至少一种。在票据验证完毕后检票设备保存核检记录,确保同一张票据检验完后不会再次作为新票被检,提高安全性和处理效率。
参阅图7,本申请提供一种售票规则服务器,售票规则服务器用于执行前述的售票规则服务器的控制方法。
具体地,售票规则服务器的控制方法请参见上述实施例部分,在此不做赘述。
参阅图8,本申请提供一种检票系统的控制方法,其中,所述检票系统的控制方法包括以下步骤:
S801:获取售票系统依据第一检票令牌所生成的票据。
具体地,在实际环境中,游客或用户的移动终端可以从售票系统中获取第一票据,再通过移动终端将票据发送给检票设备,该票据可以为电子票,例如,二维码、射频识别信息或蓝牙信息中的至少一种。在票据验证完毕后检票设备保存核检记录,确保同一张票据检验完后不会再次作为新票被检,提高安全性和处理效率。
其中,第一检票令牌为如前述的售票规则服务器响应第一检票规则生成。
S802:对票据进行验证,并产生验证结果。
具体地,检票系统可以采用预设的第一检票规则对检票系统采用第 一检票规则对票据的票信息的有效性进行验证,票信息包括票据的有效时间、票据的是否退票以及票据的是否被验证,并存储验证结果。
其中,票据可以为一次有效,确保无法伪造票据,验证完毕后检票设备保存核检记录,确保同一张电子票检验完后不会再次作为新票被检,提高安全性和处理效率。
S803:向售票系统发送验证结果。
具体地,检票系统可以通过GSM/GPRS/CDMA/TD-SCDMA/WCDMA/CDMA2000/TD-LTE/FDD-LTE/WIFI无线网络或有线网络、存储设备、NFC或者物联网终端感知中的至少一种方式售票系统发送验证结果。
售票系统可以通过窗口、自助机、扫码购等外部工具销售票,检票系统可以通过闸机和手持机检票。通过上述方式,售票系统和检票系统进行信息交互时,两者之间无需联网,便可以实现检票,且无需充值预购买。
参阅图9,在一实施例中,检票系统的控制方法进一步包括以下步骤:
S901:获取用户提交的退票请求。
具体地,用户可以在检票系统端提交退票请求,也可以在售票系统端提交退票请求,再由售票系统将该退票请求发送给检票系统。
S902:判断退票请求所对应的票据是否已经检票。
具体地,检票系统获取用户提交的退票请求后,判断退票请求所对应的票据是否已经检票。
S903:在判断退票请求所对应的票据未被检票的情况下,存储退票信息,并向售票系统发送退票信息。
具体地,退票信息包括:票编号、票有效日期、是否退票、退票时间等等。
检票系统还可以处理退票,是通过检票系统中的退票信息列表实现的。购买后的票在检票前,用户可以在检票系统直接退票,检票系统比较退票信息和检票信息列表,其中,检票信息列表包括已检票的票信息,例如,已检票的票编号、票有效日期、是否检票、检票时间等等。
如果该票已检过则退票失败,如果该票没有检过则退票成功,并且检票系统存储退票信息,将退票成功的票对应的标识标记为已退票,并向售票系统发送退票信息。进一步地,如果检票系统已有该票的退票信息,则该票检票失败。
持有者也可以通过售票系统直接退票,售票系统获取用户提交的退票请求后,由售票系统将该退票请求发送给检票系统。检票系统比较退票信息和检票信息列表,如果该票已检过则退票失败,如果该票没有检过则退票成功,并且检票系统保留该票的退票信息。进一步地,如果检 票系统已有该票的退票信息,则该票检票失败。
在一实施例中,检票系统包括第三接口,售票系统包括第四接口,检票系统的控制方法进一步包括:第三接口通过GSM/GPRS/CDMA/TD-SCDMA/WCDMA/CDMA2000/TD-LTE/FDD-LTE/WIFI无线网络或有线网络、存储设备、NFC或者物联网终端感知中的至少一种方式,向第四接口发送验证结果和/或退票信息。
参阅图10,在一实施例中,检票系统的控制方法进一步包括以下步骤:
S1001:获取售票系统响应用户提交的退票请求所生成的退票信息。
具体地,用户可以在售票系统端直接退票,售票系统响应用户提交的退票请求所生成的退票信息,再由售票系统将该退票信息发送给检票系统。
S1002:判断退票信息所对应的票据是否已经检票,存储判断结果,并向售票系统发送判断结果。
具体地,检票系统比较退票信息和检票信息列表,其中,检票信息列表包括已检票的票信息,例如,已检票的票编号、票有效日期、是否检票、检票时间等等。如果该票已检过则退票失败,如果该票没有检过则退票成功,并且检票系统存储退票信息,并向售票系统发送退票信息。进一步地,如果检票系统已有该票的退票信息,则该票检票失败。
参阅图11,本申请提供一种检票系统,其中,检票系统用于执行如前述的检票系统的控制方法。
具体地,检票系统的控制方法请参见上述实施例部分,在此不做赘述。
参阅图12,本申请提供一种售票系统的控制方法,售票系统的控制方法包括:
S1201:获取如前述的售票规则服务器响应第一检票规则生成第一检票令牌。
具体地,售票系统从售票规则服务器处获取第一检票令牌。
S1202:依据第一检票令牌生成票据。
具体地,第一检票令牌包括规则索引、加密信息、签名信息、密文、密钥密文中的至少一种、以及第一检票规则和票信息生成票据。售票系统可以根据规则索引、加密信息、签名信息、密文、密钥密文中的至少一种对第一检票规则和票信息进行加密,以得到加密后的票据。
票据可以为编码或加密后的票据,此时检票系统可以采用预设的解码秘钥对票据进行解密处理。检票系统可以存储有加密秘钥、解密秘钥、编码格式以及解码格式中的至少一种。解密后,检票系统检测票据信息是否符合第一检票规则。
参阅图13,在一实施例中,售票系统的控制方法进一步包括:
S1301:在检票系统获取用户提交的退票请求时,若检票系统判断退票请求所对应的票据未被检票,则从检票系统处获取退票信息。
具体地,售票系统可以获取步骤S903中检票系统存储的退票信息。
S1302:向用户推送退票信息。
参阅图14,在一实施例中,售票系统的控制方法进一步包括:
S1401:获取用户提交的退票请求。
具体地,用户可以在售票系统端直接提交退票请求。
S1402:响应退票请求,并判断退票请求所对应的票据是否有效。
若是,则进入S1403。
具体地,售票系统响应退票请求,获取退票请求对应的票编号或票标示,并检票系统比较退票信息和售票信息列表,其中,售票信息列表包括已检票的票信息,例如,已售票的票编号、票有效日期、是否售票、售票时间等等。以判断已售出的票中是否有退票请求所对应的票。
S1403:生成退票信息,并向检票系统发送退票信息。
具体地,退票信息包括:票编号、票有效日期、是否退票、退票时间等等。售票系统可以采用数传模块、ZIGBEE模块、RFID、蓝牙、WLAN、红外遥控方式、短信、存储设备、或者物联网终端感知中的至少一种方法,将退票信息发送给售票系统。
S1404:获取检票系统依据退票信息所生成的检票信息。
其中,检票信息为退票请求所对应的票据是否被检票。
具体地,检票信息为退票请求所对应的票是否被检票。
由售票系统将该退票信息发送给检票系统。检票系统比较退票信息和检票信息列表,如果该票已检过则退票失败,如果该票没有检过则退票成功,检票系统保留该票的退票信息,并生成的检票信息,向售票系统发送检票信息。进一步地,如果检票系统已有该票的退票信息,则该票检票失败。
S1405:若退票请求所对应的票未被检票,则依据检票信息对票据进行退票。
参阅图15,在一实施例中,售票系统的控制方法进一步包括:
S1501:售票系统生成一预售票。
具体地,售票系统还可以生成一张预售票,用户可以提前持有该预售票。
S1502:售票系统依据第一检票令牌将预售票转换为票据。
具体地,检票前,用户可以在售票系统端将该预售票换成符合规则的票,然后在检票系统检票在检票系统设置有效检票时间段时,售票系统依据有效检票时间段对应的第一检票令牌将预售票转换为票据。
参阅图16,本申请提供一种售票系统160,其中,售票系统160用于执行如前述的售票系统的控制方法。
具体地,售票系统的控制方法请参见上述实施例部分,在此不做赘述。
参阅图17-18,本申请提供一种售检票系统。售检票系统170包括依次连接的售票系统160、移动终端171以及至少一个检票系统120,检票系统120包括检票规则服务器50,售票系统160包括售票规则服务器70。
检票规则服务器50用于根据规则处理逻辑对预设时间段内的待检票数量进行处理,以生成第一检票规则,并向售票规则服务器70发送第一检票规则。
售票规则服务器70用于获取第一检票规则,响应第一检票规则生成第一检票令牌,并向售票系统160发送第一检票令牌。
售票系统160用于获取第一检票令牌,并依据第一检票令牌生成票据。
其中,检票规则服务器50包括第一接口,售票规则服务器70包括第二接口,第一接口用于通过GSM/GPRS/CDMA/TD-SCDMA/WCDMA/CDMA2000/TD-LTE/FDD-LTE/WIFI无线网络或有线网络、存储设备、NFC或者物联网终端感知中的至少一种方式,向第二接口发送第一检票规则。
检票系统120包括第三接口,售票系统160包括第四接口,第三接口用于通过GSM/GPRS/CDMA/TD-SCDMA/WCDMA/CDMA2000/TD-LTE/FDD-LTE/WIFI无线网络或有线网络、存储设备、NFC或者物联网终端感知中的至少一种方式,向第四接口发送票据的验证结果和/或退票信息。
具体地,每个检票系统120对应一预设的检票规则,以对售票系统160生成的不同种类的电子票进行验证,如图18所示。
检票系统120还用于对检票规则进行加密处理以及对检票令牌进行解密处理,售票系统160还用于对检票规则进行解密处理以及对检票令牌进行加密处理,检票系统120存储有与售票系统160加密所使用的加密秘钥相对应的解密秘钥,售票系统160存储有与检票系统120加密所使用的加密秘钥相对应的解密秘钥。
售票系统160和检票系统120之间可以通过加密保证数据传输的安全性,在加密的情况下,售票系统160和检票系统120可以各自产生自己的秘钥,然后分别持有对方的秘钥,以保证售票系统160和多个检票系统120之间数据的独立性及不可伪造性。
检票系统120还用于对检票规则进行编码处理以及对检票令牌进行解码处理,售票系统160还用于对检票规则进行解码处理以及对检票令牌进行编码处理,检票系统120存储有与售票系统160采用的编码格式相对应的解码格式,售票系统160存储有与检票系统120采用的编码格 式相对应的解码格式。
检票系统120能够对售票系统160生成的电子票的合法性进行验证,检票规则可以对电子票的产生方式、编码格式、加密方式以及秘钥进行规定,使得相同的检票规则产生的票可以用相同的检票规则检查其合法性,如果售票系统160和检票系统120的检票规则和秘钥不一致则无法检查电子票的真伪。
在会展或景区等需要检票的场所,在断网的情况下只能手工检票,使得检票流程繁琐,而本实施例中提供了一种在售票系统160和检票系统120没有网络连接的情况下可以自动售检票的系统,该售检票系统170可以确保票据安全,售检票规则一致,售票系统160和检票系统120实现了离线握手,能够进行离线售检票。
参阅图19,本申请提供一种具有存储功能的装置90,用于存储计算机程序91,其中,计算机程序91在被处理器执行时,用于实现如前述的检票规则服务器的控制方法、如前述的售票规则服务器的控制方法、如前述的检票系统的控制方法或者如前述的售票系统的控制方法。
其中,该具有存储功能的装置90可以是服务端、U盘、移动硬盘、只读存储器(ROM,Read-Only Memory)、随机存取存储器(RAM,Random Access Memory)、磁碟或者光盘等各种可以存储计算机程序91,的具有存储功能的装置90。
在本申请所提供的几个实施方式中,应该理解到,所揭露的方法以及设备,可以通过其它的方式实现。例如,以上所描述的设备实施方式仅仅是示意性的,例如,模块或单元的划分,仅仅为一种逻辑功能划分,实际实现时可以有另外的划分方式,例如多个单元或组件可以结合或者可以集成到另一个系统,或一些特征可以忽略,或不执行。
作为分离部件说明的单元可以是或者也可以不是物理上分开的,作为单元显示的部件可以是或者也可以不是物理单元,即可以位于一个地方,或者也可以分布到多个网络单元上。可以根据实际的需要选择其中的部分或者全部单元来实现本实施方式方案的目的。
另外,在本申请各个实施方式中的各功能单元可以集成在一个处理单元中,也可以是各个单元单独物理存在,也可以两个或两个以上单元集成在一个单元中。上述集成的单元既可以采用硬件的形式实现,也可以采用软件功能单元的形式实现。
以上仅为本申请的实施例,并非因此限制本申请的专利范围,凡是利用本申请说明书及附图内容所作的等效结构或等效流程变换,或直接或间接运用在其他相关的技术领域,均同理包括在本申请的专利保护范围内。
Claims (20)
- 一种检票规则服务器的控制方法,其中,所述检票规则服务器的控制方法包括:根据规则处理逻辑对预设时间段内的待检票数量进行处理,以生成第一检票规则;其中,所述第一检票规则包括:票信息规则、票加密规则、时间规则以及元规则中的至少一种,所述票信息规则包括票信息以及所述票信息的排布组合,所述票加密规则包括票的加密方式、签名以及密码,所述时间规则包括票的有效检票时间段,所述元规则包括所述票信息规则的解释说明、出票顺序以及验票顺序;向售票规则服务器发送所述第一检票规则。
- 根据权利要求1所述的检票规则服务器的控制方法,其中,所述检票规则服务器的控制方法进一步包括:建立所述规则处理逻辑与所述第一检票规则的对应关系;向所述售票规则服务器发送所述规则处理逻辑和所述对应关系。
- 根据权利要求1所述的检票规则服务器的控制方法,其中,所述检票规则服务器的控制方法进一步包括:设置售检票规则握手协议,所述售检票规则握手协议用于向所述售票规则服务器解释所述第一检票规则;向所述售票规则服务器发送所述售检票规则握手协议。
- 根据权利要求1所述的检票规则服务器的控制方法,其中,所述检票规则服务器的控制方法进一步包括:检测所述第一检票规则是否出现泄露;若是,所述检票规则服务器生成第二检票规则;向所述售票规则服务器发送所述第二检票规则。弃置被泄露的所述第一检票规则。
- 根据权利要求1所述的检票规则服务器的控制方法,其中,所述检票规则服务器包括第一接口,所述售票规则服务器包括第二接口,所述向售票规则服务器发送所述第一检票规则的步骤包括:所述第一接口通过GSM/GPRS/CDMA/TD-SCDMA/WCDMA/CDMA2000/TD-LTE/FDD-LTE/WIFI无线网络或有线网络、存储设备、NFC或者物联网终端感知中的至少一种方式,向所述第二接口发送所述第一检票规则。
- 一种检票规则服务器,其中,所述检票规则服务器用于执行如权利要求1-5任一项所述的检票规则服务器的控制方法。
- 一种售票规则服务器的控制方法,其中,所述售票规则服务器的 控制方法包括:获取如权利要求6所述的检票规则服务器所生成的第一检票规则;响应所述第一检票规则生成第一检票令牌;向售票系统发送所述第一检票令牌,以使所述售票系统依据所述第一检票令牌生成票据;其中,所述第一检票令牌至少包括:规则索引、加密信息、签名信息、密文、密钥密文中的至少一种、以及所述第一检票规则和票信息。
- 一种售票规则服务器,其中,所述售票规则服务器用于执行如权利要求7任一项所述的售票规则服务器的控制方法。
- 一种检票系统的控制方法,其中,所述检票系统的控制方法包括:获取售票系统依据第一检票令牌所生成的票据,其中,所述第一检票令牌为如权利要求8所述的售票规则服务器响应第一检票规则生成;对所述票据进行验证,并产生验证结果;向所述售票系统发送所述验证结果。
- 根据权利要求9所述的检票系统的控制方法,其中,所述检票系统的控制方法进一步包括:获取用户提交的退票请求;判断所述退票请求所对应的票据是否已经检票;在判断所述退票请求所对应的票据未被检票的情况下,存储退票信息,并向所述售票系统发送所述退票信息。
- 根据权利要求9或10所述的检票系统的控制方法,其中,所述检票系统包括第三接口,所述售票系统包括第四接口,所述检票系统的控制方法进一步包括:所述第三接口通过GSM/GPRS/CDMA/TD-SCDMA/WCDMA/CDMA2000/TD-LTE/FDD-LTE/WIFI无线网络或有线网络、存储设备、NFC或者物联网终端感知中的至少一种方式,向所述第四接口发送所述验证结果和/或所述退票信息。
- 根据权利要求9所述的检票系统的控制方法,其中,所述检票系统的控制方法进一步包括:获取所述售票系统响应用户提交的退票请求所生成的退票信息;判断所述退票信息所对应的票据是否已经检票,存储判断结果,并向所述售票系统发送所述判断结果。
- 一种检票系统,其中,所述检票系统用于执行如权利要求9-12任一项所述的检票系统的控制方法。
- 一种售票系统的控制方法,其中,所述售票系统的控制方法包括:获取如权利要求8所述的售票规则服务器响应所述第一检票规则生成第一检票令牌;依据所述第一检票令牌生成票据。
- 根据权利要求14所述的售票系统的控制方法,其中,所述售票系统的控制方法进一步包括:在所述检票系统获取用户提交的退票请求时,若所述检票系统判断所述退票请求所对应的票据未被检票,则从所述检票系统处获取退票信息;向所述用户推送所述退票信息。
- 根据权利要求14所述的售票系统的控制方法,其中,所述售票系统的控制方法进一步包括:获取用户提交的退票请求;响应所述退票请求,并判断所述退票请求所对应的票据是否有效;若是,则生成退票信息,并向所述检票系统发送所述退票信息;获取所述检票系统依据所述退票信息所生成的检票信息,其中,所述检票信息为所述退票请求所对应的票据是否被检票;若所述退票请求所对应的票未被检票,则依据所述检票信息对所述票据进行退票。
- 根据权利要求14所述的售票系统的控制方法,其中,所述售票系统的控制方法进一步包括:所述售票系统生成一预售票;所述售票系统依据所述第一检票令牌将所述预售票转换为所述票据。
- 一种售票系统,其中,用于执行如权利要求14-17任一项所述的售票系统的控制方法。
- 一种售检票系统,其中,包括依次连接的售票系统、移动终端以及至少一个检票系统,所述检票系统包括检票规则服务器,所述售票系统包括售票规则服务器;所述检票规则服务器用于根据规则处理逻辑对预设时间段内的待检票数量进行处理,以生成第一检票规则,并向售票规则服务器发送所述第一检票规则;所述售票规则服务器用于获取所述第一检票规则,响应所述第一检票规则生成第一检票令牌,并向所述售票系统发送所述第一检票令牌;所述售票系统用于获取所述第一检票令牌,并依据所述第一检票令牌生成票据;其中,所述检票规则服务器包括第一接口,所述售票规则服务器包括第二接口,所述第一接口用于通过GSM/GPRS/CDMA/TD-SCDMA/WCDMA/CDMA2000/TD-LTE/FDD-LTE/WIFI无线网络或有线网络、存储设备、NFC或者物联网终端感知中的至少一种方式,向所述第二接口发送所述第一检票规则;所述检票系统包括第三接口,所述售票系统包括第四接口,所述第 三接口用于通过GSM/GPRS/CDMA/TD-SCDMA/WCDMA/CDMA2000/TD-LTE/FDD-LTE/WIFI无线网络或有线网络、存储设备、NFC或者物联网终端感知中的至少一种方式,向所述第四接口发送所述票据的验证结果和/或退票信息。
- 一种具有存储功能的装置,用于存储计算机程序,其中,所述计算机程序在被处理器执行时,用于实现如权利要求1-5任一项所述的检票规则服务器的控制方法、如权利要求7任一项所述的售票规则服务器的控制方法、如权利要求9-12任一项所述的检票系统的控制方法或者如权利要求14-17任一项所述的售票系统的控制方法。
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