Information processing system, information processing device, program, and information processing method
An information processing system that presents missions to users and distributes NFTs upon completion, addresses the ineffectiveness of simple NFT distribution in marketing by enhancing user engagement and enabling sophisticated marketing analysis.
Patent Information
- Application Number
- JP2024008420
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2024-01-24
- Publication Date
- 2025-08-05
AI Technical Summary
Distributing non-fungible tokens (NFTs) as a novelty for marketing activities may not be effective in achieving useful marketing outcomes for companies.
An information processing system that presents missions to users, requiring them to perform specific events, and distributes NFTs to their electronic wallets upon completion, with the distribution recorded as on-chain information on the blockchain.
Enables effective marketing activities by associating NFTs with user engagement, allowing companies to perform sophisticated marketing analysis and utilize NFTs for promotional purposes.
Smart Images

Figure 2025114030000001_ABST
Abstract
Description
[Technical Field]
[0001] The present invention relates to an information processing system, an information processing device, a program, and an information processing method, and particularly to an information processing system, an information processing device, a program, and an information processing method that execute processing of non-fungible tokens. [Background technology]
[0002] In recent years, technology that treats various content such as images, videos, and audio as unique, non-fungible tokens (NFTs) on blockchains has become increasingly popular.
[0003] Patent Document 1 discloses a technology that enables users to purchase non-fungible tokens, which are traded using crypto assets as settlement currency, using any points they have been given.
[0004] On the other hand, in light of the growing interest among users in trading such non-fungible tokens, some companies offer services as part of their marketing or promotional activities to distribute any non-fungible tokens to users as a sort of novelty for the products or services that are the subject of their marketing activities. [Prior art documents] [Patent documents]
[0005] [Patent Document 1] Patent Publication No. 2023-141003 Summary of the Invention [Problem to be solved by the invention]
[0006] However, there is a concern that simply distributing non-fungible tokens to users as a novelty for a product or service as part of a company's marketing activities may not be effective in achieving useful marketing activities for the company.
[0007] The present invention has been made in consideration of the above circumstances, and aims to provide an information processing system, an information processing device, a program, and an information processing method that can realize useful marketing activities, etc. while using non-fungible tokens. [Means for solving the problem]
[0008] In order to achieve the above object, the information processing system of the present invention executes a mission presentation process that presents a mission to the user's user terminal, in which an arbitrary event that the user is required to perform is preset, and a non-fungible token distribution process that associates a non-fungible token with the user's electronic wallet when the user performs, via the user terminal, the event set in the mission presented in the mission presentation process.
[0009] According to this, a mission is presented in which an event to be performed by the user is set, and when the user performs the event set in the mission, a non-fungible token is distributed to the user's electronic wallet.
[0010] Therefore, if this type of information processing is adopted in a company's marketing and promotional activities in a digital environment, it is expected that the company will be able to carry out useful marketing activities.
[0011] The non-fungible token distribution process executed by this information processing system involves recording a log indicating that the non-fungible token has been associated with the user's electronic wallet as on-chain information, which is information on the blockchain, when associating the non-fungible token with the user's electronic wallet.
[0012] The mission presented by this information processing system may be a pre-set event that can acquire off-chain information stored in the memory unit of the information processing device.
[0013] Furthermore, the events that are pre-set in the missions presented by this information processing system may include information processing that can obtain user identification information that identifies the user as off-chain information by the user operating the user terminal.
[0014] This information processing system executes a wallet setting process for setting the wallet address of the user's electronic wallet in the user terminal when the user inputs authentication information for authenticating the user via the user terminal.
[0015] To achieve the above object, the information processing device according to the present invention is an information processing device having a processor and a memory in which a program is stored, and by executing the program by the processor, executes a mission presentation process that presents a mission to the user's user terminal, in which an arbitrary event that the user is required to perform is pre-set, and a non-fungible token distribution process that associates a non-fungible token with the user's electronic wallet when the user performs, via the user terminal, the event set in the mission presented in the mission presentation process.
[0016] To achieve the above object, the program of the present invention causes an information processing device implemented by a computer to execute a mission presentation process that presents a mission, in which an arbitrary event that the user is required to perform is pre-set, to the user's user terminal, and a non-fungible token distribution process that associates a non-fungible token with the user's electronic wallet when the user performs, via the user terminal, the event set in the mission presented in the mission presentation process.
[0017] To achieve the above object, the information processing method according to the present invention involves an information processing device implemented by a computer that executes a mission presentation process in which a mission is presented to the user's user terminal, in which an arbitrary event that the user is required to perform is preset, and a non-fungible token distribution process in which a non-fungible token is associated with the user's electronic wallet when the user performs, via the user terminal, the event set in the mission presented in the mission presentation process. [Effects of the Invention]
[0018] According to this invention, useful marketing activities can be realized using non-fungible tokens. [Brief explanation of the drawings]
[0019] [Figure 1] 1 is a block diagram illustrating an outline of the configuration of an information processing system according to an embodiment of the present invention. [Figure 2] 1 is a block diagram illustrating an outline of the configuration of a computer that implements an information processing device and a server of the information processing system according to the present embodiment. [Figure 3] 1 is a block diagram for explaining an outline of the functions of an information processing device of the information processing system according to the present embodiment. [Figure 4] FIG. 10 is a block diagram for explaining an outline of the processing of the information processing system according to the present embodiment. [Figure 5] FIG. 10 is a block diagram illustrating an outline of the configuration of a user terminal of the information processing system according to the present embodiment. [Figure 6] 10 is a block diagram for explaining an outline of the functions of a user terminal of the information processing system according to the present embodiment. FIG. [Figure 7] 10 is a block diagram for explaining an outline of processing of a business operator terminal of the information processing system according to the present embodiment. FIG. [Figure 8] 10 is a flowchart outlining the processing of the information processing system according to the present embodiment. DETAILED DESCRIPTION OF THE INVENTION
[0020] Next, an information processing system according to an embodiment of the present invention will be described with reference to FIGS.
[0021] 1 is a block diagram illustrating an outline of the configuration of an information processing system according to an embodiment of the present invention. As shown in the figure, the information processing system 10 mainly comprises an information processing device 20, a plurality of user terminals 30, and a business operator terminal 40, which are connected to each other so as to be accessible via a network N such as the Internet, and in this embodiment, are configured to be accessible to a blockchain network (not shown).
[0022] In this embodiment, the information processing device 20 is managed by a service provider 1 that provides services using the information processing system 10, and the user terminal 30 is owned by a user 2 who uses a service provided by the following provider 3 that uses services using the information processing system 10.
[0023] On the other hand, in this embodiment, the business operator terminal 40 is managed by a business operator 3 that operates a given business (for example, a retail business) and uses a service using the information processing system 10 of the service business operator 1.
[0024] In this embodiment, the service using the information processing system 10 is a service that realizes marketing activities and promotional activities for products and services related to the business of the business operator 3 in a digital environment on a network.
[0025] Next, a specific configuration of each unit of the information processing system 10 according to the present embodiment will be described.
[0026] In this embodiment, the information processing device 20 and the business operator terminal 40 are implemented by computers having substantially the same hardware configuration, such as desktop or notebook computers.
[0027] 2 is a block diagram illustrating the general configuration of a computer. As shown in the figure, the computer includes a processor 101, a memory 102, a storage 103, a transmitter / receiver 104, and an input / output unit 105, which are electrically connected to each other via a bus 106.
[0028] The processor 101 is an arithmetic unit that controls the operation of the computer, controls the transmission and reception of data between elements, and performs processing necessary for executing application programs.
[0029] In this embodiment, the processor 101 is, for example, a CPU (Central Processing Unit), and executes application programs stored in a storage 103 (to be described later) and deployed in a memory 102 to perform various processes.
[0030] In this embodiment, the memory 102 is implemented as a main storage device that is configured as a volatile storage device such as a DRAM (Dynamic Random Access Memory).
[0031] The memory 102 is used as a working area for the processor 101, and also stores a BIOS (Basic Input / Output System) that is executed when the information processing device 20 is started up, various setting information, and the like.
[0032] The storage 103 stores programs and information used in various processes.
[0033] The transceiver 104 connects the computer to the network N. The transceiver 104 may include a short-range communication interface such as Bluetooth (registered trademark) or BLE (Bluetooth Low Energy).
[0034] The input / output unit 105 is an interface to which input / output devices such as a keyboard, a mouse, or a display are connected.
[0035] The bus 106 transmits, for example, address signals, data signals, and various control signals between the processor 101, memory 102, storage 103, transmission / reception unit 104, and input / output unit 105 that are connected to it.
[0036] 3 is a block diagram illustrating an outline of the functions of the information processing device 20. As shown in the figure, in this embodiment, the information processing device 20 includes a wallet setting processing unit 21, a mission presentation processing unit 22, an NFT creation unit 23, a first wallet management unit 24, an event processing unit 25, an email address storage unit 26a, an SNS information storage unit 26b, a survey response information storage unit 26c, and an NFT distribution processing unit 27.
[0037] The wallet setting processing unit 21, mission presentation processing unit 22, NFT creation unit 23, first wallet management unit 24, event processing unit 25, and NFT distribution processing unit 27 are realized by executing programs stored in memory 102 by the processor 101.
[0038] On the other hand, the email address storage unit 26a, the SNS information storage unit 26b, and the questionnaire response information storage unit 26c are realized by partitioning the storage area of the storage 103.
[0039] In this embodiment, the wallet setting processing unit 21 executes a process of associating and setting the second wallet, which is user 2's electronic wallet and will be described later, with user terminal 30 based on authentication information input by user 2 via user terminal 30 (wallet setting process).
[0040] The authentication information entered by User 2 includes various information to authenticate User 2, such as User 2's email address, User 2's account when logging in to any web service, or the wallet address of User 2's electronic wallet that User 2 already manages.
[0041] In this embodiment, for example, when user 2 inputs an email address or an account for any web service as authentication information, an electronic wallet previously managed by service provider 1 is assigned as user 2's second wallet and associated with user terminal 30.
[0042] On the other hand, for example, if User 2 inputs the wallet address of an electronic wallet that User 2 already manages as authentication information, the electronic wallet that is the destination of that wallet address is set as User 2's second wallet.
[0043] In this embodiment, the mission presentation processing unit 22 performs a process of providing a mission, which is a preset event that the user 2 is required to perform, to the user terminal 30 of the user 2 (mission presentation process).
[0044] 4 is a block diagram showing an example of a mission presented in the mission presentation process. As shown in the figure, in this embodiment, the mission presentation process provides various missions to the user terminal 30, such as URL access M1, email address registration M2, SNS link M3, number of NFTs held M4, keyword input M5, and questionnaire response M6.
[0045] In this embodiment, the URL access M1 has a mission preset such as a user 2 who purchases a product sold at a store run by a retail business operator 3 reading a two-dimensional code or NFC tag attached to the product, or a two-dimensional code displayed in front of a store run by the business operator 3.
[0046] The event of URL access M1 may be one in which, for example, application software corresponding to the retail business run by business operator 3 is provided to user 2, and the user logs in to that application software, etc., is set as a mission in advance, without posting a two-dimensional code or the like on products or in storefronts.
[0047] In this embodiment, the email address registration M2 is set in advance as a mission in which, for example, user 2 inputs an email address to be used by user 2 via user terminal 30.
[0048] In this embodiment, the SNS linkage M3 has events preset in the missions, such as associating the account of the operator 3 on any SNS and making it possible to obtain information posted from that account (a so-called "following" state), performing information processing to subscribe to specific information posted from the operator 3's account (selecting the so-called "like" icon), or posting by quoting specific information posted from the operator 3's account.
[0049] In this embodiment, the number of NFTs held M4 is set in advance in the mission, for example, an event such as holding more NFTs than the predetermined number of NFTs (non-fungible tokens) that user 2 should hold.
[0050] In this embodiment, the keyword input M5 is an event in which the user 2 inputs a preset keyword via the user terminal 30, for example, which is set in advance in the mission.
[0051] In this embodiment, the mission is pre-set with an event such as user 2 inputting a response to a questionnaire regarding a product or service provided by business operator 3 via user terminal 30, or user 2 inputting a response to an arbitrary questionnaire via user terminal 30, for example.
[0052] In this embodiment, the NFT creation unit 23 shown in Figure 3 executes a process of creating an NFT that is associated with the first wallet (described below) managed by the service provider 1.
[0053] This NFT creation unit 23 links any content data and a non-fungible token to a smart contract built on a blockchain, and performs a process of associating the non-fungible token with the first wallet as an NFT.
[0054] In this embodiment, processing is performed so that an arbitrary quantity is associated in advance as an NFT with the first wallet, but for example, processing may be performed to associate the quantity as an NFT with user 2's second wallet each time an arbitrary process (for example, a process associated with executing an event set in a mission) previously set by user 2 is performed via user terminal 30.
[0055] The first wallet management unit 24 manages the first wallet on the blockchain of the service provider 1, and in this embodiment, the NFT created by the NFT creation unit 23 is associated with the first wallet.
[0056] In this embodiment, when user 2 executes an event that is pre-set in a mission provided to user terminal 30 via user terminal 30, event processing unit 25 accepts the event execution processing by user terminal 30 and executes processing to obtain user identification information that identifies user 2 according to the event that is set in the mission executed by user 2.
[0057] For example, when user 2 inputs an email address in response to an event set in email address registration M2, the input email address is stored in email address storage unit 26a.
[0058] In response to an event set in the SNS linkage M3, when user 2 follows the SNS account of business operator 3, "likes" specific information posted from the SNS account of business operator 3, or posts by quoting specific information posted from the account of business operator 3, the SNS activity history of user 2, including the SNS account of user 2, is stored in the SNS information storage unit 26b.
[0059] Furthermore, when the user 2 inputs an answer to the questionnaire in response to an event set in the questionnaire answer M6, the input answer is stored in the questionnaire answer information storage unit 26d.
[0060] In this way, when user 2 executes any event, the event processing unit 25 stores the user identification information acquired in response to the event in the memory area of the information processing device 20 as so-called off-chain information, and accepts the event execution process and generates an NFT distribution command that instructs service provider 1 to associate the NFT associated with its first wallet with user 2's second wallet.
[0061] On the other hand, in this embodiment, the event processing unit 25 performs a process of generating an NFT distribution command that commands the service provider 1 to associate an NFT associated with its first wallet with the user 2's second wallet, in accordance with an event set in the mission performed by the user 2, without obtaining user identification information that identifies the user 2.
[0062] For example, when user 2 scans a two-dimensional code or the like in response to an event set in URL access M1, an NFT distribution command is generated, and when user 2 ends up holding more NFTs than the preset number in response to an event set in NFT holding number M4, an NFT distribution command is generated.
[0063] In addition, in NFT holdings number M4, an NFT distribution command is also generated when the number of NFTs held by user 2 due to NFTs distributed in the NFT distribution process described below exceeds the predetermined number of NFTs, based on an NFT distribution command generated by executing an event set in another mission.
[0064] Furthermore, when user 2 inputs a preset keyword in response to an event set in keyword input M5, an NFT distribution command is generated.
[0065] In this embodiment, the NFT distribution processing unit 27 executes a process of distributing an NFT from a first wallet to a second wallet by associating an NFT associated with the first wallet of the service provider 1 with the second wallet of the user 2 based on an NFT distribution command (NFT (non-fungible token) distribution process).
[0066] When distributing an NFT, the NFT distribution processing unit 27 records a log indicating that the NFT has been associated from the first wallet to the second wallet as on-chain information, which is information on the blockchain.
[0067] In this embodiment, it is assumed that the NFTs distributed by the NFT distribution processing unit 27 will be used for various purposes, such as for participating in limited events held by the business operator 3, for purchasing or receiving limited products or content provided by the business operator 3, or for converting them into points in a points system provided by the business operator 3 to the user 2.
[0068] Furthermore, this NFT may be used by User 2 as a coupon at the counter of a store operated by Business 3, in which case Business 3 can understand the situation in which User 2 is using the NFT as a coupon based on on-chain information.
[0069] Based on the processing of the wallet setting processing unit 21, mission presentation processing unit 22, NFT creation unit 23, first wallet management unit 24, event processing unit 25, and NFT distribution processing unit 27, in this embodiment, a marketing service is realized in a digital environment in which NFTs are distributed to users 2 who complete missions on a website related to the products or services of business operator 3.
[0070] In this embodiment, the user terminal 30 shown in FIG. 1 is implemented as a smartphone, which is a portable information terminal, but may also be implemented as, for example, a tablet computer, a desktop computer, or a notebook computer.
[0071] 5 is a block diagram illustrating an outline of the configuration of the user terminal 30. As shown in the figure, the user terminal 30 includes a control unit 31, a camera 32, and a display 33 as its main components.
[0072] In this embodiment, the control unit 31 controls each part of the user terminal 30, such as the camera 32, the display 33, and sensors (not shown), and is composed of, for example, a processor, memory, storage, a transceiver unit, etc.
[0073] In this embodiment, this control unit 31 stores an application or a browser that can view the website of the operator 3, and based on the processing of the program in the information processing device 20, the marketing service of the operator 3 is executed on the user terminal 30 via the application or browser.
[0074] Furthermore, the control unit 31 may store a wallet application that can access a second wallet, which is an electronic wallet of the user 2 on the blockchain.
[0075] The camera 32 captures any object as a subject and acquires images (still images and moving images), and in this embodiment functions as an interface that works in conjunction with an application that reads two-dimensional codes, etc. to acquire information from the two-dimensional codes, etc.
[0076] In this embodiment, the display 33 displays a screen interface of the marketing service of the business operator 3 executed on the user terminal 30 (for example, a screen presenting a mission) and the like.
[0077] The display 33 is a so-called touch panel that accepts information input by touching the display surface, and is implemented using various technologies such as a resistive film system or a capacitive system.
[0078] In this embodiment, input information D is input via this display 33. This input information D is information input regarding the execution of an event set in the mission of the marketing service of the business operator 3 and other operations.
[0079] The input information D is input based on an arbitrary action of the user 2 on the display 33 (for example, an action of tapping or swiping the screen, or an action of dragging and dropping an icon or the like displayed on the screen).
[0080] 6 is a block diagram illustrating an outline of the functions of the user terminal 30. As shown in the figure, the user terminal 30 functions to execute an event execution process S1 and a second wallet management process S2 in this embodiment.
[0081] In this embodiment, the event execution process S1 executes information processing according to an event preset in the mission, based on input information D. For example, when user 2 inputs an email address as input information D in response to an event set in email address registration M2, a process for accepting the input email address is executed.
[0082] In this embodiment, the second wallet management S2 manages the second wallet of user 2, and the second wallet is associated with tokens such as NFTs granted via the website of operator 3 and crypto assets acquired on any platform.
[0083] In this embodiment, the operator terminal 40 shown in Figure 1 performs a matching process based on a request from the operator 3, matching information about user 2 held by the operator 3 with off-chain information, matching off-chain information with on-chain information, matching information about user 2 held by the operator 3 with on-chain information, or matching different off-chain information with each other.
[0084] 7 is a block diagram illustrating an example of the matching process. As shown in the figure, the matching process executes a process of matching purchase information of user 2 held by business operator 3 with SNS information, which is off-chain information.
[0085] Furthermore, the matching process performs a process of matching the number of visits information obtained from on-chain information grasped based on the event set in URL access M1 or the event set in NFT holdings M4 with off-chain information, which is SNS information.
[0086] In this embodiment, for example, when user 2 performs an event set in URL access M1, such as reading a two-dimensional code or the like displayed in front of a store operated by operator 3 when visiting the store, an NFT distribution process is executed in information processing device 20 based on an NFT distribution command.
[0087] In this case, a log indicating that the NFT has been associated with User 2's second wallet is recorded as on-chain information, and based on this on-chain information, the number of times User 2 has visited the store operated by Operator 3 can be obtained as store visit information.
[0088] On the other hand, the matching process performs a process of matching SNS information, which is off-chain information, with survey response information, which is also off-chain information.
[0089] In this way, by matching information about User 2 held by Business 3 with off-chain information, matching off-chain information with on-chain information, matching information about User 2 held by Business 3 with on-chain information, or matching different off-chain information with each other, it becomes possible to perform sophisticated marketing analysis.
[0090] Next, an outline of the processing of the information processing system 10 according to this embodiment will be described.
[0091] 8 is a flowchart outlining the processing of the information processing system 10 according to this embodiment. As shown in the figure, first, in step S10, the second wallet of the user 2 is set in association with the user terminal 30 based on the authentication information input by the user 2 (wallet setting processing).
[0092] Next, in step S11, when the user 2 accesses a website related to a product or service of the business operator 3 via the user terminal 30, a mission is presented to the user terminal 30 in step S12 (mission presentation process).
[0093] On the other hand, in the case of a mission that is not directly presented to the user terminal 30 (for example, the case of URL access M1 shown in Figure 4), the user 2 will not access a website related to the business operator 3's products or services, as the mission will not be presented to the user terminal 30.
[0094] Next, in step S13, when user 2 executes an event that is pre-set in the mission presented to the user terminal 30 via the user terminal 30, in step S14, the NFT is distributed from the first wallet to the second wallet by associating the NFT from the first wallet to the second wallet (NFT distribution process).
[0095] In this embodiment, when user 2 executes an event that is preset in the mission, a process is executed to obtain user identification information that identifies user 2, such as user 2's email address, SNS information, or survey response information, as off-chain information, depending on the executed event.
[0096] On the other hand, when User 2 distributes an NFT from the first wallet to the second wallet by executing an event that is pre-set in the mission, a log indicating that the NFT has been associated from the first wallet to the second wallet is recorded as on-chain information.
[0097] In this way, a mission is presented with an event set for User 2 to perform, and when User 2 performs the event set in the mission, an NFT is distributed to User 2's second wallet.If this type of information processing is adopted in a company's marketing and promotional activities in the digital environment, it is expected that the company will be able to realize useful marketing activities, etc.
[0098] In this embodiment, the business operator 3 can perform sophisticated marketing analysis by arbitrarily matching the off-chain information stored in the information processing device 20, the on-chain information recorded on the blockchain, and the information about the user 2 held by the business operator 3. Therefore, it is expected that more substantial and useful marketing activities can be realized based on the results of the analysis.
[0099] The present invention is not limited to the above-described embodiment, and various modifications are possible without departing from the spirit of the invention.
[0100] In the above embodiment, the missions presented to the user terminal 30 are described as URL access M1, email address registration M2, SNS linking M3, number of NFTs held M4, keyword input M5, and survey response M6, but these are not limited to these, and it is expected that various missions will be presented.
[0101] For example, various missions may be presented, such as a mission in which joining a membership service provided by business operator 3 to user 2 is set as an event, or a mission in which obtaining a predetermined number of points in that membership service is set as an event.
[0102] In the above embodiment, we have described a case where an NFT is distributed by scanning a two-dimensional code or the like in URL access M1. However, for example, if user 2 scans a two-dimensional code or the like at a store counter after an NFT has been distributed (when URL access M1 is executed), any points may be awarded without a new NFT being distributed.
[0103] In the above embodiment, the information processing device 20 is implemented on a computer deployed at the service provider 1, but for example, the information processing device 20 may be implemented on a computer in a cloud environment. [Explanation of symbols]
[0104] 1. Service providers 2 users 3 Business operators 10 Information Processing Systems 20 Information processing equipment 30 User terminals 40 Operator terminal
Claims
1. a mission presentation process for presenting a mission, in which an arbitrary event that the user is requested to perform is preset, to the user terminal of the user; a non-fungible token distribution process that associates a non-fungible token with the user's electronic wallet when the user executes the event set in the mission presented in the mission presentation process via the user terminal; An information processing system that executes the above.
2. The non-fungible token distribution process comprises: When associating the non-fungible token with the electronic wallet of the user, a log indicating that the non-fungible token has been associated with the electronic wallet of the user is recorded as on-chain information, which is information on a blockchain. The information processing system according to claim 1 .
3. The mission is: The event capable of acquiring off-chain information stored in a storage unit of the information processing device is set in advance.
3. The information processing system according to claim 1.
4. The mission is: The event capable of acquiring off-chain information stored in a storage unit of the information processing device is set in advance; The event is and information processing capable of acquiring user identification information that identifies the user as the off-chain information by the user operating the user terminal.
3. The information processing system according to claim 1.
5. execute a wallet setting process for setting a wallet address of the electronic wallet of the user in the user terminal when the user inputs authentication information for authenticating the user via the user terminal; 3. The information processing system according to claim 1.
6. An information processing device including a processor and a memory in which a program is stored, When the program is executed by the processor, a mission presentation process for presenting a mission, in which an arbitrary event that the user is requested to perform is preset, to the user terminal of the user; a non-fungible token distribution process that associates a non-fungible token with the user's electronic wallet when the user executes the event set in the mission presented in the mission presentation process via the user terminal; An information processing device that executes the above.
7. An information processing device implemented by a computer, a mission presentation process for presenting a mission, in which an arbitrary event that the user is requested to perform is preset, to the user terminal of the user; a non-fungible token distribution process that associates a non-fungible token with the user's electronic wallet when the user executes the event set in the mission presented in the mission presentation process via the user terminal; A program that executes the following.
8. An information processing device implemented by a computer, a mission presentation process for presenting a mission, in which an arbitrary event that the user is requested to perform is preset, to the user terminal of the user; a non-fungible token distribution process that associates a non-fungible token with the user's electronic wallet when the user executes the event set in the mission presented in the mission presentation process via the user terminal; An information processing method that performs the above.
Citation Information
Patent Citations
Information processing device and information processing method
JP2023141003A