Electronic ticket interactive processing method, device and equipment

Through short-range wireless communication technology, electronic tickets can be transmitted and automatically verified over the air between the user's mobile terminal and the merchant's terminal, solving the problem of redundant operations in checking and verifying QR code electronic tickets and improving entry efficiency and user experience.

CN119048087BActive Publication Date: 2025-09-30ALIPAY (HANGZHOU) INFORMATION TECH CO LTD
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Patent Information

Application Number
CN202411545457.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-10-31
Publication Date
2025-09-30
Estimated Expiration
2044-10-31

AI Technical Summary

Technical Problem

The existing QR code-based electronic ticket verification and settlement solution is redundant and inconvenient, especially inefficient when there are long queues for entry.

Method used

By adopting short-range wireless communication technology, such as NFC, users can perform ticket handover gestures on their mobile terminals to transmit electronic tickets to merchant terminals through the air. The terminals will then automatically or manually verify the tickets, simulating the physical ticket handover action and simplifying the operation process.

Benefits of technology

It improves the user's entry speed and experience, reduces the number of operation steps, increases convenience and natural fluency, simulates the action of handing over physical tickets, and enhances the interactive experience between users and merchants.

✦ Generated by Eureka AI based on patent content.

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Abstract

The embodiments of this specification disclose a method, apparatus, and device for interactive processing of electronic tickets. The solution, applied to a user mobile terminal, includes: displaying a target electronic ticket; after the user mobile terminal approaches a merchant terminal, upon receiving a handover gesture from the user for the target electronic ticket, transferring the target electronic ticket from the user mobile terminal to the merchant terminal via short-range wireless communication; and after the merchant terminal verifies the transferred target electronic ticket, displaying the processing result of the target electronic ticket.
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Description

Technical Field

[0001] This specification relates to the field of electronic ticketing, and in particular to methods, devices, and equipment for interactive processing of electronic tickets. Background Art

[0002] With the development of Internet technology and the popularization of smart phones, more and more businesses can be conducted through corresponding applications on smart phones, bringing great convenience to people's lives.

[0003] The ticketing sector is one area where people can easily experience convenience in this regard. Traditionally, physical tickets are used, requiring ticket holders to keep them safe at all times. Once lost, they cannot be reissued or the reissue process is cumbersome. When physical tickets are needed, the merchant's ticket inspectors need to manually check each ticket at the ticket gate. The user hands the physical ticket to the ticket inspector, who verifies the information on the physical ticket. If it is correct, they usually tear off or cut off a portion of the physical ticket to complete the verification and return the remaining portion to the user. The entire process consumes a lot of manpower, is prone to errors, and is inefficient, affecting the speed at which users enter. Therefore, electronic tickets have gradually gained more and more use. Compared with physical tickets, electronic tickets are more secure and more convenient to use, which helps save human resources, is less prone to errors, and improves efficiency.

[0004] At present, electronic ticket verification and cancellation are usually implemented based on QR codes. Each electronic ticket contains a QR code. At the ticket gate, the user needs to open the electronic ticket on the mobile phone, show the corresponding QR code to the merchant's ticket inspector, and wait for the ticket inspector's next operation. The ticket inspector turns on the scanning function of the merchant terminal, scans the QR code, waits for the scanning to be successful, and then clicks confirm to complete the verification of the electronic ticket.

[0005] While QR code-based electronic ticket verification and redemption offers advantages over physical ticketing, in practice, it can still lead to redundant and inconvenient operations, creating a negative user experience. Therefore, a more convenient electronic ticket verification and redemption solution is needed. Summary of the Invention

[0006] One or more embodiments of this specification provide an electronic ticket interactive processing method, apparatus, device, and storage medium to solve the following technical problem: a more convenient electronic ticket inspection and verification solution is needed.

[0007] To solve the above technical problems, one or more embodiments of this specification are implemented as follows:

[0008] One or more embodiments of this specification provide an electronic ticket interaction processing method, which is applied to a user's mobile terminal. The method includes:

[0009] Display target e-ticket;

[0010] After the user mobile terminal approaches the merchant terminal, if a ticket handover gesture operation performed by the user for the target electronic ticket is received, the target electronic ticket is transferred from the user mobile terminal to the merchant terminal through short-range wireless communication;

[0011] After the merchant terminal performs verification processing on the target electronic ticket received, the processing result of the target electronic ticket is displayed.

[0012] One or more embodiments of this specification provide an electronic ticket interaction processing method, applied to a merchant terminal, comprising:

[0013] After the user mobile terminal approaches the merchant terminal, the target electronic ticket transmitted from the user mobile terminal is received through short-range wireless communication, wherein the transmission is triggered by the user performing a ticket handing gesture operation on the target electronic ticket displayed on the user mobile terminal;

[0014] The received target electronic ticket is processed for cancellation.

[0015] One or more embodiments of this specification provide an electronic ticket interactive processing device, which is applied to a user's mobile terminal and includes:

[0016] Electronic ticket display module, displays the target electronic ticket;

[0017] an electronic ticket transfer module, which, after the user's mobile terminal approaches the merchant's terminal, transfers the target electronic ticket from the user's mobile terminal to the merchant's terminal via short-range wireless communication upon receiving a gesture operation of handing over the target electronic ticket by the user;

[0018] The processing result display module displays the processing result of the target electronic ticket after the merchant terminal verifies the target electronic ticket received.

[0019] One or more embodiments of this specification provide an electronic ticket interactive processing device, which is applied to a merchant terminal and includes:

[0020] an electronic ticket receiving module, which receives a target electronic ticket transmitted from the user mobile terminal through short-range wireless communication after the user mobile terminal approaches the merchant terminal, wherein the transmission is triggered by the user performing a ticket-handing gesture operation on the target electronic ticket displayed on the user mobile terminal;

[0021] The electronic ticket cancellation module performs cancellation processing on the received target electronic ticket.

[0022] One or more embodiments of this specification provide an electronic ticket interactive processing device, which is applied to a user's mobile terminal and includes:

[0023] at least one processor; and,

[0024] a memory communicatively connected to the at least one processor; wherein,

[0025] The memory stores instructions executable by the at least one processor, wherein the instructions are executed by the at least one processor to enable the at least one processor to perform:

[0026] Display target e-ticket;

[0027] After the user mobile terminal approaches the merchant terminal, if a ticket handover gesture operation performed by the user for the target electronic ticket is received, the target electronic ticket is transferred from the user mobile terminal to the merchant terminal through short-range wireless communication;

[0028] After the merchant terminal performs verification processing on the target electronic ticket received, the processing result of the target electronic ticket is displayed.

[0029] One or more embodiments of this specification provide an electronic ticket interactive processing device, which is applied to a user mobile terminal and includes:

[0030] at least one processor; and,

[0031] a memory communicatively connected to the at least one processor; wherein,

[0032] The memory stores instructions executable by the at least one processor, wherein the instructions are executed by the at least one processor to enable the at least one processor to perform:

[0033] After the user mobile terminal approaches the merchant terminal, the target electronic ticket transmitted from the user mobile terminal is received through short-range wireless communication, wherein the transmission is triggered by the user performing a ticket handing gesture operation on the target electronic ticket displayed on the user mobile terminal;

[0034] The received target electronic ticket is processed for cancellation.

[0035] One or more embodiments of this specification provide a non-volatile computer storage medium, which is applied to a user mobile terminal. The medium stores computer-executable instructions, which are configured to:

[0036] Display target e-ticket;

[0037] After the user mobile terminal approaches the merchant terminal, if a ticket handover gesture operation performed by the user for the target electronic ticket is received, the target electronic ticket is transferred from the user mobile terminal to the merchant terminal through short-range wireless communication;

[0038] After the merchant terminal performs verification processing on the target electronic ticket received, the processing result of the target electronic ticket is displayed.

[0039] One or more embodiments of this specification provide a non-volatile computer storage medium, which is applied to a merchant terminal. The medium stores computer-executable instructions, which are configured to:

[0040] After the user mobile terminal approaches the merchant terminal, the target electronic ticket transmitted from the user mobile terminal is received through short-range wireless communication, wherein the transmission is triggered by the user performing a ticket handing gesture operation on the target electronic ticket displayed on the user mobile terminal;

[0041] The received target electronic ticket is processed for cancellation.

[0042] At least one of the above-mentioned technical solutions adopted in one or more embodiments of this specification can achieve the following beneficial effects: users can move their mobile terminal close to the merchant terminal, and then use easy ticket-handing gestures such as swiping the electronic ticket to conveniently and physically transfer the target electronic ticket to the merchant terminal based on short-range communications such as near-field communication. Ticket inspectors do not need to perform tedious operations such as opening the code scanning page to scan the code, but only need to passively wait for the target electronic ticket to be transferred, and then complete the remote verification of the target electronic ticket through easy operations such as clicking to confirm. There is even no need for a ticket inspector, and the merchant terminal can automatically confirm the verification. The whole process is more reliable and convenient, which helps to increase the speed of user entry. In addition, to a certain extent, it realizes the simulated mapping of the action feel of handing over and receiving physical tickets. For both users and merchants, the interaction is more natural and smooth, and the experience is better. BRIEF DESCRIPTION OF THE DRAWINGS

[0043] In order to more clearly illustrate the embodiments of this specification or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments recorded in this specification. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative labor.

[0044] Figure 1 A flowchart of an electronic ticket interactive processing method provided in one or more embodiments of this specification;

[0045] Figure 2 A schematic diagram of a process for displaying a pre-activated electronic ticket according to one or more embodiments of this specification;

[0046] Figure 3 A flowchart of a ticket verification solution for a ticket checking scenario for a group of people entering a venue together, provided in one or more embodiments of this specification;

[0047] Figure 4 A flowchart of an electronic ticket package generation solution for multiple users traveling together, provided in one or more embodiments of this specification;

[0048] Figure 5 A flowchart of another electronic ticket interactive processing method provided in one or more embodiments of this specification;

[0049] Figures 6(a) to 6(c) are provided for one or more embodiments of this specification. Figure 1 A schematic diagram of a page effect of a specific implementation scheme of the method;

[0050] Figure 7 A schematic diagram of the structure of an electronic ticket interactive processing device provided in one or more embodiments of this specification;

[0051] Figure 8 A schematic diagram of the structure of an electronic ticket interactive processing device provided in one or more embodiments of this specification;

[0052] Figure 9 A schematic diagram of the structure of an electronic ticket interactive processing device provided in one or more embodiments of this specification;

[0053] Figure 10 A schematic structural diagram of another electronic ticket interactive processing device provided for one or more embodiments of this specification. DETAILED DESCRIPTION

[0054] The embodiments of this specification provide an electronic ticket interactive processing method, apparatus, device, and storage medium.

[0055] In order to enable those skilled in the art to better understand the technical solutions in this specification, the technical solutions in the embodiments of this specification will be clearly and completely described below in conjunction with the drawings in the embodiments of this specification. Obviously, the embodiments described are only part of the embodiments of this application, not all of the embodiments. Based on the embodiments of this specification, all other embodiments obtained by ordinary technicians in this field without making creative efforts should fall within the scope of protection of this application.

[0056] As mentioned in the background, the currently used QR code-based electronic ticket verification and redemption solutions can still lead to redundant and inconvenient operations, especially in long queues. This negative experience is magnified. For example, offline users often arrive at the venue early and wait for a long time, so they are very concerned about the speed of on-site electronic ticket redemption and entry. However, the QR code-based electronic ticket verification and redemption process is still redundant, and some users may even wait until they reach the ticket gate to open the QR code, which has a negative impact on on-site redemption efficiency.

[0057] In response to these problems in the existing technology, this application considers that a smooth verification process can speed up the user's entry process, thereby effectively improving the on-site experience and the favorability of related brands. In order to achieve this goal, the solution of this application is based on the proximity sensing between mobile phones. Users no longer need to click on the ticket details page to display the QR code, and merchants no longer need to open the QR code scanning interface. Users can send the purchased electronic ticket to the merchant's mobile phone through simple ticket handover gestures (for example, swiping up the electronic ticket, etc.). The merchant can complete the verification process by sensing and verifying accordingly, eliminating redundant operation steps for both parties and simulating the ticket checking action in the real world, effectively increasing human interaction and improving users' brand favorability, memory and ease of operation.

[0058] Based on this general idea, the solution of this application will be further explained below.

[0059] The solution of this application involves at least a user mobile terminal and a merchant terminal for ticket checking and cancellation, and of course may also involve the corresponding service end of one or both parties. Figure 1 , mainly described from the perspective of user mobile terminals, Figure 1 This is a flowchart of an electronic ticket interaction processing method provided in one or more embodiments of this specification. The execution subject of this process may include a user's mobile terminal, specifically including a corresponding application client or applet installed on the user's mobile terminal; the user's mobile terminal may be, for example, a smartphone, smartwatch, tablet computer, portable game console, etc.

[0060] Figure 1 The process in includes the following steps:

[0061] S102: Display the target electronic ticket.

[0062] The target electronic ticket here can be displayed in a simplified form (for example, marking a simplified graphic as an electronic ticket) or in a more detailed form (for example, displaying a detailed electronic ticket appearance, just like the appearance of a physical ticket). At least one interactive graphic representing the target electronic ticket can be displayed so that the user can later perform more vivid gesture operations on the target electronic ticket through the graphic.

[0063] The target electronic ticket can be displayed after entering the designated page of the corresponding application or mini program. The entry action can be achieved by manual access by the user, or it can be automatically triggered in a timely and adaptive manner.

[0064] S104: After the user mobile terminal approaches the merchant terminal, if a ticket handover gesture operation performed by the user for the target electronic ticket is received, the target electronic ticket is transferred from the user mobile terminal to the merchant terminal through short-range wireless communication.

[0065] In one or more embodiments of the present specification, the user actions during physical ticket checking are simulated to a certain extent to perform electronic ticket delivery, so as to obtain a smoother user experience that conforms to the traditional ticket delivery experience.

[0066] First, the user's mobile terminal and the merchant's terminal must support a specific short-range wireless communication method and be able to exchange information over the air. The information exchanged here primarily includes the target e-ticket. Short-range wireless communication can be Near Field Communication (NFC), which has a shorter communication range and helps accurately complete interactions between the correct targets. Of course, other short-range wireless communication methods can also be used, such as infrared and Bluetooth.

[0067] For the current user, he can bring his user mobile terminal close to the merchant terminal for ticket inspection. When the user mobile terminal is close enough to the merchant terminal, short-range wireless communication can be carried out between the two. Then, the user can perform a ticket handover gesture operation for the displayed target electronic ticket, thereby externally handing over the target electronic ticket to the merchant terminal with the ticket handover gesture, and technically using short-range wireless communication to transfer the target electronic ticket to the merchant terminal, thereby truly achieving the handover effect. Such cooperation makes it seem as if the user is handing over his physical ticket (represented by the target electronic ticket) to a real ticket inspector (represented by the merchant terminal) with his own hand, and the experience and process are smoother. In this case, the ticket handover gesture operation in this application can be understood as a predetermined physical submission simulation gesture operation.

[0068] The degree of simulation can be determined based on actual needs, and the corresponding ticket handover gesture operation can be pre-set. The setting can be prioritized based on two dimensions: ease of user execution and / or proximity to the actual ticket handover action.

[0069] For example, if these two dimensions are taken into account in a relatively balanced manner, the ticket delivery gesture operation can be, for example, a swipe gesture operation (for example, the user presses the displayed target electronic ticket with his finger and swipes it upward or more precisely toward the merchant terminal). Then, after the user's mobile terminal moves close to the merchant terminal, if a swipe gesture operation performed on the target electronic ticket is received, it can be determined whether the swipe gesture operation belongs to the ticket delivery gesture operation (for example, here the main thing is to determine whether the performed swipe gesture operation is sufficiently consistent with the predetermined standard).

[0070] For another example, if the focus is on user convenience and efficiency, the ticket handover gesture could be a waving operation of the user's mobile terminal (for example, the user waving a mobile phone as the user's mobile terminal towards the merchant terminal, the user holding the displayed target electronic ticket and swinging the entire phone towards the merchant terminal, etc.). This is easy for the user to perform, thus helping to improve efficiency.

[0071] For example, if the focus is on the dimension of being closer to the actual ticket handover action, the ticket handover gesture can be, for example, a ticket handover gesture (for example, the user presses the displayed target electronic ticket with one finger or two fingers of both hands and further hands the phone toward the merchant terminal).

[0072] S106: After the merchant terminal performs verification processing on the target electronic ticket received, the processing result of the target electronic ticket is displayed.

[0073] In one or more embodiments of this specification, upon receiving a target electronic ticket, a merchant terminal may present the target electronic ticket for automatic cancellation, or merchant staff may manually confirm cancellation. Verification may be performed locally on the merchant terminal. More reliably, the cancellation process may involve a corresponding server, with the merchant terminal interacting with the server regarding the target electronic ticket (at least including the merchant terminal requesting cancellation of the target electronic ticket from the server).

[0074] Similarly, when or after handing over the ticket, the user's mobile terminal can also interact with the corresponding server in a timely manner (wherein, if necessary, the user can be requested to manually confirm the cancellation again to prevent the ticket from being handed over by mistake) to confirm that the target electronic ticket is to be cancelled. For example, after the user's mobile terminal receives the user's gesture operation for handing over the target electronic ticket, it can send a cancellation request for the target electronic ticket to the server (of course, it may also passively wait for the server to inquire for confirmation. In this case, the merchant terminal can interact with the server first, and then the server will inquire the user's mobile terminal) so that the server cooperates with the merchant terminal to realize the cancellation process; further, after the cancellation process is successful, the visual effect of the torn ticket of the target electronic ticket and the corresponding status prompt information can be displayed to the user so that the user can clearly understand the current status of the target electronic ticket that has been cancelled.

[0075] The verification process may involve verification of relevant data, such as the electronic ticket number, the verification number, the random number to be verified used this time, etc., in order to establish a trust relationship between multiple parties and confirm the user's true intention.

[0076] pass Figure 1 The method is that the user can move the user mobile terminal close to the merchant terminal, and then perform easy ticket-handing gestures such as swiping the electronic ticket, so that the target electronic ticket can be quickly and physically transferred to the merchant terminal based on short-range communications such as near-field communication. The ticket inspector does not need to perform tedious operations such as opening the code scanning page to scan the code, but only needs to passively wait for the target electronic ticket to be transferred, and then complete the remote verification of the target electronic ticket through easy operations such as clicking to confirm. There is even no need for a ticket inspector, and the merchant terminal can automatically confirm the verification. The whole process is more reliable and convenient, which helps to increase the speed of user entry. In addition, it realizes the simulated mapping of the action feel of handing over and receiving physical tickets to a certain extent. For both users and merchants, the interaction is more natural and smooth, and the experience is better.

[0077] based on Figure 1 This specification also provides some specific implementation plans and extension plans of the method, which will be described below.

[0078] In the traditional QR code-based ticket verification process, users must at least open the ticket, present it, and verify it. Merchants must scan the QR code, wait for the scan to be successful, and click Confirm to verify the verification. Both users and merchants must complete these three steps, and none of them are performed simultaneously to complete the verification process, resulting in redundant and inconvenient operations. However, the solution provided by this application allows merchants and users to perform these steps simultaneously, simplifying the operations for both parties. The process is convenient and has a vivid and interactive feel, reminiscent of the physical world. Based on this idea, in the solution of the present application, although the target electronic ticket also needs to be displayed, it is not actually necessary to display the QR code corresponding to the target electronic ticket. In the traditional solution, the QR code is used to represent the target electronic ticket, and the QR code is in a relatively deep access path. Therefore, in order to better reflect the convenience of the present application compared with the traditional solution in the step of displaying the target electronic ticket, a simpler form of the target electronic ticket with a shallower access path can be displayed. In the simplified form, the QR code corresponding to the target electronic ticket is not displayed. In this way, the user can operate faster to display the target electronic ticket, which not only improves convenience, but also improves privacy and security (the QR code is highly exposed and may be maliciously scanned before ticket inspection after being displayed).

[0079] In one or more embodiments of this specification, further reducing the user's operational burden is also considered, and a pre-activated electronic ticket display solution is provided accordingly. Figure 2 , Figure 2 The figure is a flowchart of the pre-activated electronic ticket display solution.

[0080] Figure 2 The process in includes the following steps:

[0081] S202: Before the user mobile terminal approaches the merchant terminal, determine whether an activation signal is received from the merchant terminal or an auxiliary activation terminal pre-deployed to cooperate with the merchant terminal.

[0082] The merchant terminal's reach is relatively limited. Therefore, if there are a large number of users awaiting ticket inspection, one or more auxiliary activation terminals can be prioritized for deployment near these users based on their location distribution. For example, the merchant terminal can be deployed at the ticket gate corresponding to the target e-ticket, and the auxiliary activation terminal can be deployed along the ticket inspection path leading to the gate (where users awaiting ticket inspection will line up). For example, an appropriate distance (e.g., several meters or even more than ten meters) can be set, and the auxiliary activation terminal can be deployed close to the merchant terminal. This way, the mobile terminals of the users closest to the ticket gate can be affected (i.e., activated).

[0083] The activation signal can be sent, in particular, via a short-range directional antenna in order to precisely influence the desired group of users without affecting other people in the vicinity who are not to be checked.

[0084] S204: If yes, then under the activation of the activation signal, the corresponding business page is automatically opened on the user's mobile terminal, and the target electronic ticket is displayed on the business page.

[0085] In one or more embodiments of the present specification, an activation signal is used to actively cause the user's mobile terminal to display the target electronic ticket. If the user's mobile terminal is in the screen-off state, the screen can be automatically triggered to light up and then displayed again. This eliminates the need for manual user operation and allows for advance preparation for ticket checking. This can especially avoid the adverse effects on ticket checking efficiency for other users waiting to be checked caused by users who do not prepare to display electronic tickets in advance in the traditional solution.

[0086] Furthermore, the activation signal can be responded to differently on the user's mobile terminal according to the actual situation; for example, if an activation signal is received and it is detected that the user is currently performing an operation, the response to the activation signal can be temporarily suspended to avoid interrupting the user's operation and causing a bad experience; for example, by analyzing the intensity or intensity change of the activation signal, the distance or current ticket checking speed can be inferred, and then the target electronic ticket can be automatically displayed at the appropriate time, and it is not necessary to display the target electronic ticket immediately.

[0087] In one or more embodiments of this specification, in actual applications, there are situations where multiple people go together to enter and check tickets, such as a family, a company team, etc. For this situation, in the traditional QR code-based ticket checking solution: taking a family as an example, usually one person in the family buys tickets for the whole family, and then generates a corresponding number of QR codes. When checking tickets, it is necessary to switch pages and scan each QR code in turn; taking a company team as an example, usually each person in the team buys tickets separately and generates his or her own QR code. When checking tickets, each person presents the QR code in turn; it is not difficult to see that the efficiency is not high and the problems mentioned in the background technology also exist. Based on the basic solution of this application, further improvement is considered to improve the efficiency of ticket checking and verification in the scenario of multiple people entering and checking tickets together.

[0088] Figure 3 A flowchart of a ticket verification solution for a ticket checking scenario in which two persons enter the venue together, as provided in one or more embodiments of this specification.

[0089] Figure 3 The process in includes the following steps:

[0090] S302: On the user mobile terminal, a plurality of target electronic tickets are obtained, and the electronic ticket package is automatically generated accordingly, wherein the plurality of target electronic tickets correspond to different user identity information respectively.

[0091] In one or more embodiments of this specification, multiple target electronic tickets can be purchased through the same order on the user's mobile terminal, which is particularly suitable for family scenarios. Of course, for team scenarios, one user can also purchase tickets for others.

[0092] S304: Displaying an electronic ticket package including the plurality of target electronic tickets.

[0093] Through the electronic ticket package, multiple target electronic tickets are displayed as a whole. In the subsequent ticket checking process, there is no need to switch to display different target electronic tickets separately.

[0094] S306: After the user mobile terminal approaches the merchant terminal, if a ticket handover gesture operation performed by the user on the entire electronic ticket package is received, the entire electronic ticket package is transferred from the user mobile terminal to the merchant terminal through short-range wireless communication, so that the merchant terminal can verify the entire electronic ticket package.

[0095] In this case, among the multiple users corresponding to the electronic ticket package, if one of the users performs a ticket-handing gesture operation, ticket checking for all users can be achieved, which is very efficient.

[0096] Furthermore, for scenarios where multiple users travel together, there are still a lot of cases where they buy tickets individually rather than collectively. Therefore, an electronic ticket package generation solution is provided for this situation. Figure 4 , Figure 4 A flow chart of the scheme is shown in FIG.

[0097] S402: Before displaying the electronic ticket package containing multiple target electronic tickets, and before other mobile terminals of one or more other users approach the user mobile terminal, a recognizable dominant position signal is sent to the surrounding environment, so that each of the other mobile terminals responds to the dominant position signal and preferentially performs the short-range wireless communication with the user mobile terminal.

[0098] In one or more embodiments of this specification, one of multiple users (their user mobile terminal) pre-collects everyone's electronic tickets in a similar manner to the airborne transfer based on the handover gesture. This user's mobile terminal establishes its position by sending a dominant position signal to the surrounding environment. This allows other users' mobile terminals to recognize based on the dominant position signal that their electronic tickets should be transferred to this user's mobile terminal rather than to other mobile terminals, thereby reducing the possibility of mis-transfer.

[0099] In addition, whether it is a single-player or multiplayer scenario, if necessary, the user can withdraw the remote transmission before the verification is completed within a certain period of time.

[0100] S404: After one or more other users' other mobile terminals approach the user's mobile terminal, in response to the other users performing a ticket-handing gesture operation on the corresponding other mobile terminals for other target electronic tickets, the target electronic ticket transmitted from the other mobile terminals via short-range wireless communication is received.

[0101] In this way, the user's mobile terminal can quickly collect the target electronic tickets of other fellow users. In order to facilitate verification, the user of the user's mobile terminal can also pre-specify the number of target electronic tickets to be collected. When the number is reached, the collection will automatically stop.

[0102] S406: Generate the electronic ticket package according to each of the target electronic tickets.

[0103] In the electronic ticket package, you can also check the corresponding user identification in detail, such as nicknames, etc. In this way, you can easily generate an electronic ticket package and check the user to whom each electronic ticket belongs.

[0104] The above description is mainly from the perspective of the user's mobile terminal. Based on the same idea, one or more embodiments of this specification also provide a flow chart of another electronic ticket interaction processing method, which is described from the perspective of the merchant terminal. Figure 5 The merchant terminal can be a mobile terminal held by a merchant staff member, or a device fixed at the ticket gate.

[0105] Figure 5 The method is applied to the merchant terminal and mainly includes the following steps:

[0106] S502: After the user mobile terminal approaches the merchant terminal, the target electronic ticket transmitted from the user mobile terminal is received through short-range wireless communication. The transmission is triggered by the user performing a ticket handing gesture operation on the target electronic ticket displayed on the user mobile terminal.

[0107] S504: Verify and cancel the received target electronic ticket.

[0108] I will not go into details here, you can understand it in conjunction with the previous explanation.

[0109] According to the above description, more intuitively, one or more embodiments of this specification further provide an application scenario, Figure 1 A specific implementation plan of the method and schematic diagrams of multiple page effects of the specific implementation plan are illustrated in conjunction with Figures 6(a) to 6(c). Some privacy-related information is shielded in the figures, which does not affect the understanding of the solution.

[0110] Figures 6(a) and 6(b) show the page effects on the user's mobile terminal, and Figure 6(c) shows the page effects on the merchant's terminal. This specific implementation plan is divided into the following two parts based on different perspectives:

[0111] The first part is the process from the user presenting the e-ticket to the verification, including:

[0112] 1. On the homepage of the corresponding ticketing app, users can long-press any e-ticket in the ticket list to display the e-ticket's QR code and related admission information without clicking into the e-ticket details page (as mentioned earlier, displaying a simplified e-ticket without revealing the QR code is also possible). Transaction information can be authenticated and authorized using methods such as password entry or facial recognition. After bringing the e-ticket close to the merchant terminal used for ticket verification and cancellation, the e-ticket can be transferred using NFC technology. Swiping up and releasing the e-ticket will display the e-ticket to the merchant terminal, where the corresponding ticket number and cancellation number can be obtained.

[0113] See Figure 6 (a), where the left picture shows the ticket folder list, the middle picture shows that the user has popped up one of the e-tickets, and the page displays information such as the event introduction, ticket price and QR code of the e-ticket. The right picture shows that when the user presses and releases the upper swipe of the e-ticket, the e-ticket moves upward and scales. After that, the e-ticket will continue to move upward to show that it has been passed.

[0114] 2. After sending the electronic ticket verification request to the server, the front desk displays the ticket verification process. If the verification is successful, it will be followed by the ticket tearing animation and the relevant status will be revealed. The user data will be encrypted and decrypted during the transaction. After the animation ends, the ticket code will be displayed as used, and the ticket inspection process will be completed quickly.

[0115] See Figure 6 (b), in which the left picture shows that the electronic ticket has been passed and is in the "ticket being checked" state, the middle picture shows that it has been successfully verified and the corresponding animation is displayed, and the right picture shows that the electronic ticket is in the "used" state, that is, it has been successfully redeemed.

[0116] The second part is the process of merchants receiving and verifying electronic invoices, including:

[0117] 1. Merchants no longer need to enter the traditional QR code scanning page. When the merchant terminal is close to the user, the merchant terminal can receive the electronic ticket passed by the user through NFC technology. Click "Cancel" to enter the cancellation and ticket tearing animation to quickly complete the cancellation action.

[0118] 2. During verification, the merchant terminal or the user's mobile terminal can interact with the server to verify or compare the verification number, coupon number, random number and other information provided by one or more parties. When the verification is successful or the comparison is consistent, the verification is successful, otherwise the verification fails; conversely, you can also click on the verification repeatedly to perform the same verification and comparison process or give up the verification; after the verification and comparison are successful, the payment system and the transaction processing platform begin to process the user's electronic QR code information, and automatically deduct the money from the user's account through the payment system and transfer it to the merchant's account. At this time, the interface prompts that the verification is successful.

[0119] See Figure 6 (c), in which the left picture shows the animation effect of the electronic ticket being passed, which will be enlarged and moved from the top to the center. The merchant can click the button below to reject the electronic ticket or cancel the electronic ticket. The middle picture shows that after clicking the cancel button, the electronic ticket is in the "cancelling" state, and the right picture shows that the electronic ticket has been successfully cancelled.

[0120] It can be seen that in this specific implementation plan, the device sensing between the user and the merchant is used to conduct rapid physical remote ticket verification, which reduces the number of operating steps and improves the efficiency of ticket checking. Not only that, it also adds fun and novelty by simulating and mapping the operating actions in daily life, making the operating experience smoother, easier to understand and operate, and improving the user experience.

[0121] Based on the same idea, one or more embodiments of this specification also provide devices and apparatuses corresponding to the above methods, such as Figures 7 to 10 The apparatus and device can accordingly execute the above method and related optional solutions.

[0122] Figure 7 This is a schematic diagram of the structure of an electronic ticket interactive processing device provided in one or more embodiments of this specification. The device is applied to a user mobile terminal and includes:

[0123] The electronic ticket display module 702 displays the target electronic ticket;

[0124] The electronic ticket transfer module 704 transfers the target electronic ticket from the user mobile terminal to the merchant terminal via short-range wireless communication upon receiving a gesture operation of handing over the target electronic ticket by the user after the user mobile terminal approaches the merchant terminal;

[0125] The processing result display module 706 displays the processing result of the target electronic ticket after the merchant terminal verifies the target electronic ticket received.

[0126] Optionally, the electronic ticket display module 702 displays the target electronic ticket in a simplified form, wherein the QR code corresponding to the target electronic ticket is not displayed in the simplified form.

[0127] Optionally, the electronic ticket display module 702 determines whether an activation signal is received from the merchant terminal or an auxiliary activation terminal pre-deployed in conjunction with the merchant terminal before the user mobile terminal approaches the merchant terminal;

[0128] If so, under the activation of the activation signal, the corresponding business page is automatically opened on the user's mobile terminal, and the target electronic ticket is displayed on the business page.

[0129] Optionally, the merchant terminal is deployed at a ticket gate corresponding to the target electronic ticket;

[0130] The auxiliary activation terminal is deployed on a ticket checking path leading to the ticket gate.

[0131] Optionally, the ticket handover gesture operation includes a predetermined physical handover simulation gesture operation.

[0132] Optionally, the electronic ticket transfer module 704, after the user mobile terminal approaches the merchant terminal, if a swipe gesture operation is received for the target electronic ticket, determines whether the swipe gesture operation belongs to the ticket delivery gesture operation.

[0133] Optionally, the electronic ticket delivery module 704, after receiving the user's ticket handover gesture operation on the target electronic ticket, sends a cancellation request for the target electronic ticket to the server, so that the server cooperates with the merchant terminal to implement the cancellation process;

[0134] After the cancellation process is successful, the torn ticket visual effect of the target electronic ticket and the corresponding status prompt information are displayed.

[0135] Optionally, the electronic ticket display module 702 displays an electronic ticket package containing multiple target electronic tickets, and the ticket handover gesture operation is performed on the entire electronic ticket package;

[0136] The electronic ticket transfer module 704 transfers the entire electronic ticket package from the user mobile terminal to the merchant terminal through short-range wireless communication, so that the merchant terminal can verify and process the entire electronic ticket package.

[0137] Optionally, before displaying the electronic ticket package containing the plurality of target electronic tickets, the electronic ticket display module 702 receives the target electronic tickets transmitted from one or more other users' other mobile terminals via short-range wireless communication in response to the other users performing a handover gesture operation on the corresponding other mobile terminals for other target electronic tickets;

[0138] The electronic ticket package is generated according to each of the target electronic tickets.

[0139] Optionally, the electronic ticket transfer module 704 sends a recognizable dominant position signal to the surrounding environment before one or more other mobile terminals of other users approach the user mobile terminal, so that each of the other mobile terminals responds to the dominant position signal and preferentially performs the short-range wireless communication with the user mobile terminal.

[0140] Optionally, the electronic ticket delivery module 704, before displaying the electronic ticket package containing multiple target electronic tickets, purchases the multiple target electronic tickets through the same order on the user mobile terminal, and automatically generates the electronic ticket package accordingly, wherein the multiple target electronic tickets correspond to different user identity information respectively.

[0141] Optionally, the short-range wireless communication includes near field communication.

[0142] Figure 8 This is a schematic diagram of the structure of another electronic ticket interactive processing device provided in one or more embodiments of this specification. The device is applied to a merchant terminal and includes:

[0143] The electronic ticket receiving module 802 receives the target electronic ticket transmitted from the user mobile terminal through short-range wireless communication after the user mobile terminal approaches the merchant terminal. The transmission is triggered by the user performing a handover gesture operation on the target electronic ticket displayed on the user mobile terminal.

[0144] The electronic ticket cancellation module 804 performs cancellation processing on the received target electronic ticket.

[0145] Figure 9 This is a schematic diagram of the structure of an electronic ticket interactive processing device provided in one or more embodiments of this specification. The device is applied to a user mobile terminal and includes:

[0146] at least one processor; and,

[0147] a memory communicatively connected to the at least one processor; wherein,

[0148] The memory stores instructions executable by the at least one processor, wherein the instructions are executed by the at least one processor to enable the at least one processor to perform:

[0149] Display target e-ticket;

[0150] After the user mobile terminal approaches the merchant terminal, if a ticket handover gesture operation performed by the user for the target electronic ticket is received, the target electronic ticket is transferred from the user mobile terminal to the merchant terminal through short-range wireless communication;

[0151] After the merchant terminal performs verification processing on the target electronic ticket received, the processing result of the target electronic ticket is displayed.

[0152] Figure 10 This is a schematic diagram of the structure of another electronic ticket interactive processing device provided in one or more embodiments of this specification. The device is applied to a merchant terminal and includes:

[0153] at least one processor; and,

[0154] a memory communicatively connected to the at least one processor; wherein,

[0155] The memory stores instructions executable by the at least one processor, wherein the instructions are executed by the at least one processor to enable the at least one processor to perform:

[0156] After the user mobile terminal approaches the merchant terminal, the target electronic ticket transmitted from the user mobile terminal is received through short-range wireless communication, wherein the transmission is triggered by the user performing a ticket handing gesture operation on the target electronic ticket displayed on the user mobile terminal;

[0157] The received target electronic ticket is processed for cancellation.

[0158] Based on the same idea, one or more embodiments of this specification further provide a non-volatile computer storage medium, which is applied to a user mobile terminal. The medium stores computer-executable instructions, and the computer-executable instructions are configured as follows:

[0159] Display target e-ticket;

[0160] After the user mobile terminal approaches the merchant terminal, if a ticket handover gesture operation performed by the user for the target electronic ticket is received, the target electronic ticket is transferred from the user mobile terminal to the merchant terminal through short-range wireless communication;

[0161] After the merchant terminal performs verification processing on the target electronic ticket received, the processing result of the target electronic ticket is displayed.

[0162] Based on the same idea, one or more embodiments of this specification further provide another non-volatile computer storage medium, which is applied to a merchant terminal. The medium stores computer-executable instructions, and the computer-executable instructions are configured as follows:

[0163] After the user mobile terminal approaches the merchant terminal, the target electronic ticket transmitted from the user mobile terminal is received through short-range wireless communication, wherein the transmission is triggered by the user performing a ticket handing gesture operation on the target electronic ticket displayed on the user mobile terminal;

[0164] The received target electronic ticket is processed for cancellation.

[0165] In the 1990s, technological improvements could be clearly distinguished as either hardware improvements (for example, improvements to circuit structures like diodes, transistors, and switches) or software improvements (improvements to process flows). However, with the advancement of technology, many process flow improvements can now be considered direct improvements to hardware circuit structures. Designers almost always create the corresponding hardware circuit structure by programming the improved process flow into the hardware circuit. Therefore, it cannot be said that a process flow improvement cannot be implemented using physical hardware modules. For example, a programmable logic device (PLD), such as a field programmable gate array (FPGA), is an integrated circuit whose logical function is determined by user programming. Designers can "integrate" a digital system on a PLD by programming it themselves, without having to hire a chip manufacturer to design and manufacture a dedicated integrated circuit chip. Moreover, nowadays, instead of manually fabricating integrated circuit chips, this programming is mostly performed using software called a "logic compiler." This is similar to the software compilers used during program development. Before compilation, the original code must be written in a specific programming language, called a Hardware Description Language (HDL). There are many types of HDL, including ABEL (Advanced Boolean Expression Language), AHDL (Altera Hardware Description Language), Confluence, CUPL (Cornell University Programming Language), HDCal, JHDL (Java Hardware Description Language), Lava, Lola, MyHDL, PALASM, and RHDL (Ruby Hardware Description Language). Currently, the most commonly used are VHDL (Very-High-Speed ​​Integrated Circuit Hardware Description Language) and Verilog. Those skilled in the art will also understand that simply by programming a method flow in one of these hardware description languages ​​and then programming it into an integrated circuit, a hardware circuit that implements the logic method flow can be easily obtained.

[0166] The controller can be implemented in any suitable manner. For example, the controller can take the form of a microprocessor or processor and a computer-readable medium storing computer-readable program code (e.g., software or firmware) executable by the (micro)processor, logic gates, switches, an application-specific integrated circuit (ASIC), a programmable logic controller, and an embedded microcontroller. Examples of controllers include, but are not limited to, the following microcontrollers: ARC 625D, Atmel AT91SAM, Microchip PIC18F26K20, and Silicone Labs C8051F320. The memory controller can also be implemented as part of the memory control logic. Those skilled in the art will also appreciate that, in addition to implementing the controller purely in computer-readable program code, the controller can also be implemented in the form of logic gates, switches, an application-specific integrated circuit, a programmable logic controller, an embedded microcontroller, etc. by logically programming the method steps. Therefore, such a controller can be considered a hardware component, and the means for implementing the various functions included therein can also be considered as structures within the hardware component. Alternatively, the means for implementing the various functions can be considered both a software module implementing the method and a structure within the hardware component.

[0167] The systems, devices, modules, or units described in the above embodiments may be implemented by computer chips or entities, or by products having certain functions. A typical implementation device is a computer. Specifically, the computer may be, for example, a personal computer, a laptop computer, a cellular phone, a camera phone, a smartphone, a personal digital assistant, a media player, a navigation device, an email device, a game console, a tablet computer, a wearable device, or a combination of any of these devices.

[0168] For the convenience of description, the above devices are described as being divided into various units according to their functions. Of course, when implementing this specification, the functions of each unit can be implemented in the same or multiple software and / or hardware.

[0169] Those skilled in the art will appreciate that the embodiments of this specification may be provided as methods, systems, or computer program products. Thus, the embodiments of this specification may take the form of entirely hardware embodiments, entirely software embodiments, or embodiments combining software and hardware. Furthermore, the embodiments of this specification may take the form of a computer program product implemented on one or more computer-usable storage media (including but not limited to magnetic disk storage, CD-ROM, optical storage, etc.) containing computer-usable program code.

[0170] This specification is described with reference to the flowcharts and / or block diagrams of the methods, devices (systems), and computer program products according to the embodiments of this specification. It should be understood that each process and / or block in the flowchart and / or block diagram, as well as the combination of processes and / or blocks in the flowchart and / or block diagram, can be implemented by computer program instructions. These computer program instructions can be provided to a processor of a general-purpose computer, a special-purpose computer, an embedded processor, or other programmable data processing device to produce a machine, so that the instructions executed by the processor of the computer or other programmable data processing device generate instructions for implementing the processes in the flowchart and / or block diagram. Figure 1 a process or multiple processes and / or boxes Figure 1 A device that provides the functions specified in a block or multiple blocks.

[0171] These computer program instructions may also be stored in a computer readable memory that can direct a computer or other programmable data processing device to work in a specific manner, so that the instructions stored in the computer readable memory produce an article of manufacture comprising an instruction device, which implements the process Figure 1 a process or multiple processes and / or boxes Figure 1 The function specified in one or more boxes.

[0172] These computer program instructions can also be loaded onto a computer or other programmable data processing device so that a series of operational steps are executed on the computer or other programmable device to produce a computer-implemented process, thereby providing the instructions executed on the computer or other programmable device for implementing the process. Figure 1 a process or multiple processes and / or boxes Figure 1 A step that specifies a function in one or more boxes.

[0173] In a typical configuration, a computing device includes one or more processors (CPUs), input / output interfaces, network interfaces, and memory.

[0174] Memory may include non-permanent storage in a computer-readable medium, random access memory (RAM) and / or non-volatile memory in the form of read-only memory (ROM) or flash RAM. Memory is an example of a computer-readable medium.

[0175] Computer-readable media includes permanent and non-permanent, removable and non-removable media that can be implemented by any method or technology to store information. The information can be computer-readable instructions, data structures, program modules or other data. Examples of computer storage media include, but are not limited to, phase change memory (PRAM), static random access memory (SRAM), dynamic random access memory (DRAM), other types of random access memory (RAM), read-only memory (ROM), electrically erasable programmable read-only memory (EEPROM), flash memory or other memory technology, compact disc read-only memory (CD-ROM), digital versatile disc (DVD) or other optical storage, magnetic cassettes, magnetic tape, magnetic disk storage or other magnetic storage devices or any other non-transmission media that can be used to store information that can be accessed by a computing device. As defined herein, computer-readable media does not include transitory computer-readable media (transitory media), such as modulated data signals and carrier waves.

[0176] It should also be noted that the terms "comprises," "includes," or any other variations thereof are intended to encompass non-exclusive inclusion, such that a process, method, commodity, or apparatus that includes a series of elements includes not only those elements but also other elements not explicitly listed, or includes elements inherent to such process, method, commodity, or apparatus. In the absence of further limitations, an element defined by the phrase "comprises a ..." does not exclude the presence of other identical elements in the process, method, commodity, or apparatus that includes the element.

[0177] This specification may be described in the general context of computer-executable instructions, such as program modules, executed by a computer. Generally, program modules include routines, programs, objects, components, data structures, and the like that perform specific tasks or implement specific abstract data types. This specification may also be practiced in distributed computing environments where tasks are performed by remote processing devices connected through a communications network. In a distributed computing environment, program modules may be located in both local and remote computer storage media, including storage devices.

[0178] The various embodiments in this specification are described in a progressive manner. Similar portions between the various embodiments can be referenced to each other, and each embodiment focuses on the differences from the other embodiments. In particular, the device, apparatus, and non-volatile computer storage medium embodiments are generally similar to the method embodiments, so their descriptions are relatively simplified. For relevant details, refer to the descriptions of the method embodiments.

[0179] The foregoing description of this specification describes specific embodiments. Other embodiments are within the scope of the appended claims. In some cases, the actions or steps recited in the claims can be performed in an order different from that described in the embodiments and still achieve the desired results. Furthermore, the processes depicted in the accompanying drawings do not necessarily require the specific order shown or the sequential order to achieve the desired results. In certain embodiments, multitasking and parallel processing are also possible or may be advantageous.

[0180] The foregoing description is merely one or more embodiments of this specification and is not intended to limit this specification. It will be apparent to those skilled in the art that various modifications and variations may be made to one or more embodiments of this specification. Any modifications, equivalent substitutions, or improvements made within the spirit and principles of one or more embodiments of this specification are intended to be within the scope of the claims of this specification.

Claims

1. An electronic ticket interactive processing method, applied to a user's mobile terminal, comprising: Displaying the target electronic ticket specifically includes: before the user mobile terminal approaches the merchant terminal, determining whether an activation signal is received from an auxiliary activation terminal pre-deployed with the merchant terminal; if so, automatically opening a corresponding business page on the user mobile terminal under the activation signal, and displaying the target electronic ticket on the business page; the merchant terminal is deployed at the ticket gate corresponding to the target electronic ticket; and the auxiliary activation terminal is deployed on a ticket checking path leading to the ticket gate; After the user mobile terminal approaches the merchant terminal, if a ticket handover gesture operation performed by the user on the target electronic ticket is received, the target electronic ticket is transferred from the user mobile terminal to the merchant terminal via short-range wireless communication, wherein the ticket handover gesture operation includes a predetermined physical handover simulation gesture operation; After the merchant terminal performs verification processing on the target electronic ticket received, displaying the processing result of the target electronic ticket; The auxiliary activation terminal is deployed at a location close to the merchant terminal, which can accordingly affect the user mobile terminals of the nearest part of users who are about to reach the ticket gate; The target electronic ticket for display specifically includes: An electronic ticket package containing multiple target electronic tickets is displayed, and the ticket handover gesture operation is performed on the entire electronic ticket package; The method of transmitting the target electronic ticket from the user mobile terminal to the merchant terminal through short-range wireless communication specifically includes: The entire electronic ticket package is transferred from the user mobile terminal to the merchant terminal via short-range wireless communication, so that the merchant terminal can process the entire electronic ticket package; Before presenting the electronic ticket package containing the plurality of target electronic tickets, the method further includes: After one or more other users' mobile terminals are brought close to the user's mobile terminal, in response to the other users performing a ticket-handing gesture operation on the corresponding other mobile terminals for other target electronic tickets, receiving the target electronic tickets transmitted from the other mobile terminals via short-range wireless communication; generating the electronic ticket package according to each of the target electronic tickets; Before one or more other mobile terminals of other users approach the user's mobile terminal, the method further includes: A recognizable dominant position signal is sent to the surrounding environment, so that each of the other mobile terminals responds to the dominant position signal and preferentially performs the short-range wireless communication with the user mobile terminal.

2. The method according to claim 1, wherein the displaying of the target electronic ticket comprises: The target electronic ticket is displayed in a simplified form, wherein the QR code corresponding to the target electronic ticket is not displayed in the simplified form.

3. The method according to claim 1, further comprising: after the user mobile terminal approaches the merchant terminal; If a swipe gesture operation performed on the target electronic ticket is received, it is determined whether the swipe gesture operation belongs to the ticket handover gesture operation.

4. The method according to claim 1, further comprising: after receiving a user's gesture operation of handing over the target electronic ticket, the method further comprising: Sending a cancellation request for the target electronic ticket to a server so that the server cooperates with the merchant terminal to implement the cancellation process; After the cancellation process is successful, the torn ticket visual effect of the target electronic ticket and the corresponding status prompt information are displayed.

5. The method according to claim 1, before presenting the electronic ticket package containing the plurality of target electronic tickets, the method further comprises: On the user mobile terminal, the multiple target electronic tickets are purchased through the same order, and the electronic ticket package is automatically generated accordingly, wherein the multiple target electronic tickets correspond to different user identity information respectively. The method of claim 1 , wherein the short-range wireless communication comprises near field communication.

7. An electronic ticket interactive processing method, applied to a merchant terminal, comprising: After the user mobile terminal approaches the merchant terminal, the target electronic ticket transmitted from the user mobile terminal is received through short-range wireless communication, wherein the transmission is triggered by the user performing a ticket-handing gesture operation on the target electronic ticket displayed on the user mobile terminal, wherein the ticket-handing gesture operation includes a predetermined physical submission simulation gesture operation; performing cancellation processing on the received target electronic ticket; The method of displaying the target electronic ticket on the user mobile terminal before receiving the target electronic ticket transmitted from the user mobile terminal specifically includes: determining whether an activation signal is received from an auxiliary activation terminal pre-deployed in conjunction with the merchant terminal before the user mobile terminal approaches the merchant terminal; if so, automatically opening a corresponding business page on the user mobile terminal under activation of the activation signal, and displaying the target electronic ticket on the business page; the merchant terminal is deployed at the ticket gate corresponding to the target electronic ticket; and the auxiliary activation terminal is deployed on the ticket checking path leading to the ticket gate; The auxiliary activation terminal is deployed at a location close to the merchant terminal, which can accordingly affect the user mobile terminals of the nearest part of users who are about to reach the ticket gate; The user mobile terminal executes: An electronic ticket package containing multiple target electronic tickets is displayed, and the ticket handover gesture operation is performed on the entire electronic ticket package; The entire electronic ticket package is transferred from the user mobile terminal to the merchant terminal via short-range wireless communication, so that the merchant terminal can process the entire electronic ticket package; Before presenting the electronic ticket package containing the plurality of target electronic tickets, the user mobile terminal further executes: After one or more other users' mobile terminals are brought close to the user's mobile terminal, in response to the other users performing a ticket-handing gesture operation on the corresponding other mobile terminals for other target electronic tickets, receiving the target electronic tickets transmitted from the other mobile terminals via short-range wireless communication; generating the electronic ticket package according to each of the target electronic tickets; Before one or more other mobile terminals of other users approach the user mobile terminal, the user mobile terminal further executes: A recognizable dominant position signal is sent to the surrounding environment, so that each of the other mobile terminals responds to the dominant position signal and preferentially performs the short-range wireless communication with the user mobile terminal.

8. An electronic ticket interactive processing device, applied to a user's mobile terminal, comprising: Electronic ticket display module, displays the target electronic ticket; an electronic ticket transfer module, which, after the user's mobile terminal approaches the merchant's terminal, transfers the target electronic ticket from the user's mobile terminal to the merchant's terminal via short-range wireless communication upon receiving a ticket-handling gesture performed by the user on the target electronic ticket, wherein the ticket-handling gesture includes a predetermined physical handover simulation gesture; a processing result display module, which displays the processing result of the target electronic ticket after the merchant terminal verifies the target electronic ticket; The electronic ticket display module determines whether an activation signal sent by an auxiliary activation terminal pre-deployed with the merchant terminal is received before the user mobile terminal approaches the merchant terminal; If so, under the activation of the activation signal, the corresponding business page is automatically opened on the user's mobile terminal, and the target electronic ticket is displayed on the business page; The merchant terminal is deployed at the ticket gate corresponding to the target electronic ticket; the auxiliary activation terminal is deployed on the ticket checking path leading to the ticket gate; The auxiliary activation terminal is deployed at a location close to the merchant terminal, which can accordingly affect the user mobile terminals of the nearest part of users who are about to reach the ticket gate; The electronic ticket display module displays an electronic ticket package containing multiple target electronic tickets, and the ticket handover gesture operation is performed on the entire electronic ticket package; The electronic ticket transfer module transfers the entire electronic ticket package from the user mobile terminal to the merchant terminal via short-range wireless communication, so that the merchant terminal can verify and process the entire electronic ticket package; The electronic ticket display module receives the target electronic tickets transmitted from one or more other users' mobile terminals via short-range wireless communication in response to a ticket-handing gesture operation performed by the other users on the corresponding other mobile terminals for other target electronic tickets before displaying the electronic ticket package containing the multiple target electronic tickets; generating the electronic ticket package according to each of the target electronic tickets; The electronic ticket transfer module sends a recognizable dominant position signal to the surrounding environment before one or more other mobile terminals of other users approach the user mobile terminal, so that each of the other mobile terminals responds to the dominant position signal and preferentially conducts the short-range wireless communication with the user mobile terminal.

9. The device according to claim 8, wherein the electronic ticket display module displays the target electronic ticket in a simplified form, wherein: In the simplified form, the QR code corresponding to the target electronic ticket is not displayed.

10. The device as described in claim 8, wherein the electronic ticket transfer module, after the user mobile terminal approaches the merchant terminal, if a swipe gesture operation is received for the target electronic ticket, determines whether the swipe gesture operation belongs to the ticket delivery gesture operation.

11. An electronic ticket interactive processing device, applied to a merchant terminal, comprising: an electronic ticket receiving module, which receives a target electronic ticket transmitted from the user's mobile terminal through short-range wireless communication after the user's mobile terminal approaches the merchant's terminal, wherein the transmission is triggered by the user performing a ticket-handing gesture operation on the target electronic ticket displayed on the user's mobile terminal, wherein the ticket-handing gesture operation includes a predetermined physical submission simulation gesture operation; An electronic ticket cancellation module, which performs cancellation processing on the received target electronic ticket; The method of displaying the target electronic ticket on the user mobile terminal before receiving the target electronic ticket transmitted from the user mobile terminal specifically includes: determining whether an activation signal is received from an auxiliary activation terminal pre-deployed in conjunction with the merchant terminal before the user mobile terminal approaches the merchant terminal; if so, automatically opening a corresponding business page on the user mobile terminal under activation of the activation signal, and displaying the target electronic ticket on the business page; the merchant terminal is deployed at the ticket gate corresponding to the target electronic ticket; and the auxiliary activation terminal is deployed on the ticket checking path leading to the ticket gate; The auxiliary activation terminal is deployed at a location close to the merchant terminal, which can accordingly affect the user mobile terminals of the nearest part of users who are about to reach the ticket gate; The user mobile terminal executes: An electronic ticket package containing multiple target electronic tickets is displayed, and the ticket handover gesture operation is performed on the entire electronic ticket package; The entire electronic ticket package is transferred from the user mobile terminal to the merchant terminal via short-range wireless communication, so that the merchant terminal can process the entire electronic ticket package; Before presenting the electronic ticket package containing the plurality of target electronic tickets, the user mobile terminal further executes: After one or more other users' mobile terminals are brought close to the user's mobile terminal, in response to the other users performing a ticket-handing gesture operation on the corresponding other mobile terminals for other target electronic tickets, receiving the target electronic tickets transmitted from the other mobile terminals via short-range wireless communication; generating the electronic ticket package according to each of the target electronic tickets; Before one or more other mobile terminals of other users approach the user mobile terminal, the user mobile terminal further executes: A recognizable dominant position signal is sent to the surrounding environment, so that each of the other mobile terminals responds to the dominant position signal and preferentially performs the short-range wireless communication with the user mobile terminal.

12. An electronic ticket interactive processing device, applied to a user's mobile terminal, comprising: at least one processor; as well as, a memory communicatively connected to the at least one processor; wherein, The memory stores instructions executable by the at least one processor, wherein the instructions are executed by the at least one processor to enable the at least one processor to perform: Displaying the target electronic ticket specifically includes: before the user mobile terminal approaches the merchant terminal, determining whether an activation signal is received from an auxiliary activation terminal pre-deployed with the merchant terminal; if so, automatically opening a corresponding business page on the user mobile terminal under the activation signal, and displaying the target electronic ticket on the business page; the merchant terminal is deployed at the ticket gate corresponding to the target electronic ticket; and the auxiliary activation terminal is deployed on a ticket checking path leading to the ticket gate; After the user mobile terminal approaches the merchant terminal, if a ticket handover gesture operation performed by the user on the target electronic ticket is received, the target electronic ticket is transferred from the user mobile terminal to the merchant terminal via short-range wireless communication, wherein the ticket handover gesture operation includes a predetermined physical handover simulation gesture operation; After the merchant terminal performs verification processing on the target electronic ticket received, displaying the processing result of the target electronic ticket; The auxiliary activation terminal is deployed at a location close to the merchant terminal, which can accordingly affect the user mobile terminals of the nearest part of users who are about to reach the ticket gate; The target electronic ticket for display specifically includes: An electronic ticket package containing multiple target electronic tickets is displayed, and the ticket handover gesture operation is performed on the entire electronic ticket package; The method of transmitting the target electronic ticket from the user mobile terminal to the merchant terminal through short-range wireless communication specifically includes: The entire electronic ticket package is transferred from the user mobile terminal to the merchant terminal via short-range wireless communication, so that the merchant terminal can process the entire electronic ticket package; Before presenting the electronic ticket package containing multiple target electronic tickets, the following steps are further executed: After one or more other users' mobile terminals are brought close to the user's mobile terminal, in response to the other users performing a ticket-handing gesture operation on the corresponding other mobile terminals for other target electronic tickets, receiving the target electronic tickets transmitted from the other mobile terminals via short-range wireless communication; generating the electronic ticket package according to each of the target electronic tickets; Before one or more other mobile terminals of other users approach the user's mobile terminal, the method further includes: A recognizable dominant position signal is sent to the surrounding environment, so that each of the other mobile terminals responds to the dominant position signal and preferentially performs the short-range wireless communication with the user mobile terminal.

13. An electronic ticket interactive processing device, applied to a merchant terminal, comprising: at least one processor; as well as, a memory communicatively connected to the at least one processor; wherein, The memory stores instructions executable by the at least one processor, wherein the instructions are executed by the at least one processor to enable the at least one processor to perform: After the user mobile terminal approaches the merchant terminal, the target electronic ticket transmitted from the user mobile terminal is received through short-range wireless communication, wherein the transmission is triggered by the user performing a ticket-handing gesture operation on the target electronic ticket displayed on the user mobile terminal, wherein the ticket-handing gesture operation includes a predetermined physical submission simulation gesture operation; performing cancellation processing on the received target electronic ticket; The method of displaying the target electronic ticket on the user mobile terminal before receiving the target electronic ticket transmitted from the user mobile terminal specifically includes: determining whether an activation signal is received from an auxiliary activation terminal pre-deployed in conjunction with the merchant terminal before the user mobile terminal approaches the merchant terminal; if so, automatically opening a corresponding business page on the user mobile terminal under activation of the activation signal, and displaying the target electronic ticket on the business page; the merchant terminal is deployed at the ticket gate corresponding to the target electronic ticket; and the auxiliary activation terminal is deployed on the ticket checking path leading to the ticket gate; The auxiliary activation terminal is deployed at a location close to the merchant terminal, which can accordingly affect the user mobile terminals of the nearest part of users who are about to reach the ticket gate; The user mobile terminal executes: An electronic ticket package containing multiple target electronic tickets is displayed, and the ticket handover gesture operation is performed on the entire electronic ticket package; The entire electronic ticket package is transferred from the user mobile terminal to the merchant terminal via short-range wireless communication, so that the merchant terminal can process the entire electronic ticket package; Before presenting the electronic ticket package containing the plurality of target electronic tickets, the user mobile terminal further executes: After one or more other users' mobile terminals are brought close to the user's mobile terminal, in response to the other users performing a ticket-handing gesture operation on the corresponding other mobile terminals for other target electronic tickets, receiving the target electronic tickets transmitted from the other mobile terminals via short-range wireless communication; generating the electronic ticket package according to each of the target electronic tickets; Before one or more other mobile terminals of other users approach the user mobile terminal, the user mobile terminal further executes: A recognizable dominant position signal is sent to the surrounding environment, so that each of the other mobile terminals responds to the dominant position signal and preferentially performs the short-range wireless communication with the user mobile terminal.

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