Retractable consumption partnership digital certificate issuing and distributing system and method based on multi-role excitation
By setting a fixed total amount of digital vouchers and a multi-role allocation mechanism, the problems of binding the interests of multiple parties and the scarcity of vouchers in the traditional model are solved. A deflationary consumer partnership digital voucher system with multi-role incentives is constructed, achieving the effect of mutual benefit and predictable value for all parties.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- HANGZHOU XILINQIN DIGITAL TECHNOLOGY CO LTD
- Filing Date
- 2026-01-31
- Publication Date
- 2026-05-12
AI Technical Summary
Traditional consumer points or rebate models are one-way and static, making it difficult to deeply bind the interests of multiple parties. Furthermore, the value of digital vouchers is diluted due to unlimited issuance. There is a lack of systematic solutions to incentivize all roles in the consumer ecosystem and ensure the scarcity and value growth of vouchers.
A fixed total amount of digital vouchers is set, divided into continuously issued nodes. These nodes respond to consumer behavior to obtain consumer partnership funds, which are then distributed to multiple roles according to a fixed ratio. The voucher issuance and distribution are carried out through a feedback fund value-added pool and a node value quantification algorithm, using a node management module, a transaction triggering module, a voucher release calculation engine, and a multi-role allocation module.
To achieve mutual benefit for all parties, build a highly cohesive consumer community, control the growth rate of circulation through a deflationary model, provide a clear logic for value growth, enhance participation confidence, and ensure fairness and impartiality.
Smart Images

Figure CN122022912A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of blockchain digital assets and consumer incentive technology, specifically to a deflationary consumer partnership digital certificate issuance and distribution system and method based on multi-role incentives. Background Technology
[0002] Traditional consumer points or rebate models are typically one-way and static, benefiting only consumers or a select few referrers. They struggle to deeply integrate the interests of merchants, promoters, and service providers, limiting the ecosystem's vitality. Furthermore, the unlimited issuance of traditional digital vouchers often leads to value dilution. Current technology lacks a solution that systematically incentivizes all roles across the consumer ecosystem and ensures the scarcity and value growth potential of digital vouchers through a rigorous economic model. Summary of the Invention
[0003] This invention aims to overcome the shortcomings of existing technologies and provide a digital certificate system and method that can incentivize multiple roles within the consumer ecosystem, has deflationary characteristics, and whose value can be quantified and predicted.
[0004] To achieve the above objectives, a method for issuing and distributing deflationary consumer partnership digital certificates based on multi-role incentives is characterized by the following steps: S1. Set a fixed total amount of digital vouchers and divide them into a predetermined number of consecutive issuance nodes, with each node planning to issue a fixed number of digital vouchers. S2. In response to a consumer's spending behavior at a merchant, obtain the corresponding consumer partnership fee transferred by the merchant for that spending behavior; S3. Determine the release ratio of the current node based on the current cumulative release amount of digital vouchers at the current issuance node N (N is a natural number). ,in This means that each unit of digital certificate released requires a unit of consumer partnership funds to be anchored. S4. Based on the consumption partnership fund and the release ratio R of the current node, calculate and generate the total amount of releaseable digital vouchers; S5. The total amount of releasable digital vouchers calculated in S4 is simultaneously released to the six roles associated with the consumption behavior according to the preset first fixed ratio allocation rule. The six roles include: consumer, merchant, new customer acquisition, transaction, merchant expansion, and operator.
[0005] Preferably, the first fixed-ratio allocation rule is as follows: 20% of the consumer partnership fund is allocated to digital vouchers released to consumers, 20% to merchants, 10% to new user acquisition, 10% to transactions, 30% to expansion partners, and 10% to operations. The specific number of digital vouchers allocated to each role is calculated based on the release ratio R of the current node.
[0006] As an alternative, it also includes S6 and the return-to-gold value-added, specifically: A second fixed percentage is extracted from the merchant's transfer of consumption partnership funds corresponding to each consumption transaction and injected into an independent return fund value-added pool to provide value-added rights for the released digital vouchers. The second fixed percentage is 36%.
[0007] As a preferred option, it also includes S7 and node value quantification, specifically: for the first The theoretical value of each node and its corresponding digital certificate Determined using the following algorithm: ,in It is a natural number from 1 to 100.
[0008] Preferably, in step S5, when the association method of any role cannot be determined in time, the digital credentials allocated to that role will be temporarily locked and transferred to a confirmation pool; after the preset association conditions are met and the identity binding of the corresponding role is completed, the corresponding number of digital credentials will be released from the confirmation pool to the bound role account.
[0009] A deflationary consumer partnership digital certificate issuance and distribution system based on multi-role incentives for implementing any of the above methods includes a node management module, a transaction triggering and collection module, a certificate release calculation engine, a multi-role allocation module, and an asset management module. The node management module is used to configure the total amount of digital vouchers, node division, and release ratio rules for each node; The transaction triggering and collection module is used to capture consumer behavior and associate it with the corresponding merchant transfer of consumer partnership funds data. The credential release calculation engine is used to calculate based on the current node. and release ratio Calculate the total amount of digital vouchers that can be released based on a single consumption partnership fund; The multi-role allocation module has the first fixed ratio allocation rule built in, which is used to allocate the calculated releasable vouchers to six corresponding role accounts; The asset management module is used to manage the issuance and circulation of digital certificates, the collection and operation of funds in the value-added pool, and to record the value parameters of each node.
[0010] As a preferred option, it also includes a node value disclosure module, used to dynamically calculate and disclose the theoretical value of digital certificates for current and historical issuance nodes. It also interacts with the asset management module to update value parameters in real time.
[0011] A computer-readable storage medium having a computer program stored thereon, which, when executed by a processor, implements the method described in any of the preceding claims.
[0012] Compared with the prior art, the beneficial effects of the present invention are: Multi-party prosperity: Through a six-party distribution mechanism, the value of a single consumption is widely shared with ecosystem contributors, building a highly sticky consumption community.
[0013] Deflation hedging: The release ratio model of node multiplication is adopted. The later the release of the same amount of vouchers, the higher the consumption backing required. This effectively controls the growth rate of circulation, simulates scarcity, and resists inflation.
[0014] Promising Value: Through the feedback mechanism and the public node value algorithm, digital vouchers are provided with a clear logic and expectation of value growth, which enhances participation confidence.
[0015] Transparent rules: All allocation ratios, release rules, and value algorithms are public and verifiable, and operate in a trusted technology environment to ensure fairness and impartiality. Attached Figure Description
[0016] Figure 1 The system overall architecture and process diagram provided for this invention; Figure 2 This is a flowchart of the method of the present invention. Detailed Implementation
[0017] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0018] Please see Figure 1-2 This invention provides a technical solution: a method for issuing and distributing deflationary consumer partnership digital certificates based on multi-role incentives, characterized by comprising the following steps: S1. Set a fixed total amount of digital vouchers and divide them into a predetermined number of consecutive issuance nodes, with each node planning to issue a fixed number of digital vouchers. S2. In response to a consumer's spending behavior at a merchant, obtain the corresponding consumer partnership fee transferred by the merchant for that spending behavior; S3. Based on the current issuance node of the total cumulative release of digital vouchers. ( (where the number is a natural number) determines the release ratio of the current node. ,in This means that each unit of digital certificate released requires anchoring. The unit's consumption partnership fund; S4. Based on the consumer partnership fund and the release ratio R of the current node, calculate and generate the total amount of releaseable digital vouchers; S5. The total amount of releasable digital vouchers calculated in S4 is simultaneously released to the six roles associated with the consumption behavior according to the preset first fixed ratio allocation rule. The six roles include: consumer, merchant, new customer acquisition, transaction, merchant expansion, and operator. The first fixed ratio allocation rule is as follows: 20% of the consumption partnership fee is allocated to the digital vouchers released to the consumer, 20% to the merchant, 10% to the new customer acquisition, 10% to the transaction, 30% to the merchant expansion, and 10% to the operator. The specific number of digital vouchers allocated to each role is calculated based on the release ratio R of the current node. When the association method of any role cannot be determined in time, the digital vouchers allocated to that role will be temporarily locked and transferred to a pending confirmation pool. After the preset association conditions are met and the identity binding of the corresponding role is completed, the corresponding number of digital vouchers will be released from the pending confirmation pool to the bound role account. S6, the return-to-investment bonus increases, specifically: A second fixed percentage is extracted from the merchant's transfer of consumption partnership funds corresponding to each consumption transaction and injected into an independent value-added pool to provide value-added benefits for the released digital vouchers. The second fixed percentage is 36%. S7. Node value quantification, specifically: for the first node... The theoretical value of each node and its corresponding digital certificate Determined using the following algorithm: ,in It is a natural number from 1 to 100.
[0019] A deflationary consumer partnership digital certificate issuance and distribution system based on multi-role incentives for implementing any of the above methods includes a node management module, a transaction triggering and collection module, a certificate release calculation engine, a multi-role allocation module, an asset management module, and a node value disclosure module. The node management module configures the total amount of digital vouchers, node division, and release ratio rules for each node; the transaction triggering and collection module captures consumption behavior and associates it with corresponding merchant transfer of consumption partnership funds data; the voucher release calculation engine calculates the release based on the current node... and release ratio The system calculates the total amount of digital certificates that can be released based on a single consumption partnership fund; the multi-role allocation module has a built-in first fixed-ratio allocation rule to allocate the calculated releaseable certificates to six corresponding role accounts; the asset management module manages the issuance and circulation of digital certificates, the collection and operation of funds in the return fund appreciation pool, and records the value parameters of each node; the node value disclosure module dynamically calculates and discloses the theoretical value of digital certificates at the current and historical issuance nodes. It also interacts with the asset management module to update value parameters in real time.
[0020] A computer-readable storage medium having a computer program stored thereon, wherein the computer program, when executed by a processor, implements any of the above methods.
[0021] Example 1: Early Consumption and Initial Mesh Construction This embodiment aims to demonstrate how the first transaction triggers the issuance of initial digital credentials and establishes a preliminary incentive network during the initial stage of system startup.
[0022] Background: System initialization is complete. The total issuance is 6.3 million "Huiyuan" tokens, distributed across 100 nodes. We are currently on node 1. Release ratio Consumer Lao Yang is a new user of the platform.
[0023] step: ①Consumption Trigger: Mr. Yang purchased a 500 yuan agricultural product gift box from "Green Field Organic Food Store," a newly joined store on the platform, through a link shared by a friend. The merchant "Green Field" set a consumer partnership fee transfer ratio of 15%.
[0024] ② Calculation of partnership fee: The consumption partnership fee generated in this transaction is 500 yuan × 15% = 75 yuan.
[0025] ③ Voucher Release Calculation: The voucher release calculation engine determines that the current node is node 1. Therefore, the number of "Huiyuan" that can be released from the 75 yuan partnership fund is 75 / 1 = 75.
[0026] ④Six-way synchronous allocation: The multi-role allocation module allocates roles according to a fixed ratio. Consumer (Old Yang): Received 75 coins × 20% = 15 coins; Merchant (Green Field Organic Food Store): Received 75 tokens × 20% = 15 tokens; Referrer (friend Xiao Zhao who shared the link): Receives 75 coins × 10% = 7.5 coins. (Since Xiao Zhao successfully referred Lao Yang to register, the role is clear, and the coins are credited instantly). The successful buyer (the promoter on the product details page, a lifestyle blogger): received 75 tokens × 10% = 7.5 tokens. The merchant who brought in "Green Field" (Xiao Qian, the platform's ground promoter): received 75 coins × 30% = 22.5 coins. The operator (platform) receives 75 coins × 10% = 7.5 coins.
[0027] ⑤ Provision of Feedback Fund: The asset management module deducts 75 yuan × 36% = 27 yuan from the 75 yuan partnership fund and injects it into the feedback fund value-added pool as a value support for all future "Huiyuan" holders.
[0028] ⑥ Value Reference: The theoretical foundation value of the first node, "Huiyuan" ×0.36=1×0.36=0.36 (value benchmark unit). At this time, Lao Yang spent 500 yuan, not only obtaining the goods, but also receiving an additional incentive of 15 ×0.36=5.4 yuan digital assets, and the other five parties also received corresponding incentives.
[0029] Results: The first transaction not only completed the consumption, but also acted as a "genesis block", activating six roles at once: consumer, merchant, new customer acquisition, promotion, business development, and operation. It quickly built a minimal value incentive network, providing strong impetus for the cold start of the ecosystem.
[0030] Example 2: Network Expansion and Deflation Effects Emerge This example demonstrates how deflationary rules affect the release of credentials and changes in value expectations as the ecosystem evolves.
[0031] Background: After the system has been running for a period of time, the cumulative release of "Huiyuan" has entered the 15th node ( According to the deflationary rules, the current node releases a certain percentage. Ms. Li, a consumer, is a loyal user of the platform.
[0032] step: ①Consumption trigger: Ms. Li ordered a sofa set worth 20,000 yuan from "Ya She," a high-end home furnishing store that partners with the platform. "Ya She" has a 10% rebate ratio.
[0033] ② Calculation of partnership fee: The consumption partnership fee is 20,000 yuan × 10% = 2,000 yuan.
[0034] ③Current voucher release calculation: =16384:1. The number of "Huiyuan" that can be released from 2000 yuan of partnership funds is approximately 0.122 (2000 / 16384).
[0035] ④Six-party synchronous allocation: Consumer (Ms. Li): Received 0.122 coins × 20% = 0.0244 coins; Merchant (Ya She): Received 0.122 coins × 20% = 0.0244 coins.
[0036] (The other four parties received a total of 0.0732 coins proportionally).
[0037] ⑤ Comparative Analysis: Deflation effect: Compared with the first node, the same amount of consumption (assuming both are 2000 yuan of partnership funds) can release 2000 "Huiyuan" at node 1, but only about 0.122 at node 15. The difficulty of release increases exponentially, and the scarcity increases sharply. Value growth: The theoretical foundation value of the 15th node, "Huiyuan" = ×0.36=16384×0.36=5898.24 (value benchmark unit). Although Ms. Li only received 0.0244 coins this time, its corresponding theoretical value is 0.0244×5898.24≈143.9 value units, making the incentive extremely valuable.
[0038] ⑥ Feedback Fund Accrual: This time, a feedback fund of 2000 yuan × 36% = 720 yuan will be accrued and injected into the value-added pool to further solidify the value foundation of each "Huiyuan".
[0039] Effect: At this stage, the focus of system incentives shifts from "quantitative benefits" to "qualitative incentives." The number of vouchers released per transaction is extremely small, but the expected value of each voucher is very high. This incentivizes early holders to value their assets more and motivates new users to participate more actively in ecosystem building through referrals and consumption in order to obtain the scarce "Wisdom Coins."
[0040] Example 3: Operation of Complex Role Chains and Confirmation Pool This embodiment demonstrates the system's dynamic processing mechanism in a real-world consumption chain when some incentive roles cannot be verified in real time.
[0041] Background: Consumer Xiao Liu browsed anonymously on the platform and then directly searched for and purchased a 3000 yuan annual membership at a newly opened "Kuaiyi Gym". The merchant's share of the partnership fee is 12%. Currently at node 8. .
[0042] step: ① Consumption Trigger and Calculation: The consumption partnership fee is 3000 yuan × 12% = 360 yuan. The amount of "Huiyuan" that can be released is 360 / 128 = 2.8125 coins. ②Immediate Assignment and Pending Confirmation: The multi-role assignment module attempts to assign roles. Instant payment: The consumer (Xiao Liu) receives 2.8125 × 20% = 0.5625 tokens, the merchant (Kuaiyi Gym) receives 0.5625 tokens, and the operator receives 0.28125 tokens. These three roles are clearly defined, and the vouchers are issued immediately.
[0043] Transferred to the pending confirmation pool: Referral bonus (10%): 0.28125. Xiao Liu registered independently and did not directly refer any new users. Transaction volume (10%): 0.28125 units. Xiao Liu placed the order directly through a search, without any promotional link. Merchant acquisition (30%): 0.84375 tokens. The information of the merchant acquisition specialist who introduced the gym was not directly associated with this transaction.
[0044] A total of 1,40625 "Huiyuan" have been temporarily locked and transferred to the system's "pending confirmation pool".
[0045] ③ Delayed binding and release: Scenario A (Referrer Activation): Three days later, Xiao Liu successfully invited his colleague Xiao Wang to register on the platform. The system rules determined that Xiao Liu had become Xiao Wang's "referrer." At this point, the system automatically allocated 0.28125 "Huiyuan" from the pending confirmation pool to Xiao Liu as a referral incentive. Scenario B (No Successful Transaction): The specific successful promoter cannot be determined until the incentive period associated with this transaction (e.g., 30 days) expires. According to the rules, these 0.28125 "Huiyuan" will be returned from the pending confirmation pool to the operator's designated account (which can be used for community rewards or destroyed), ensuring a constant total supply. Scenario C (Verification by the Business Acquisition Team): One week later, the platform verified through backend data that the gym was introduced by Business Acquisition Specialist Manager Sun. The system automatically released 0.84375 "Huiyuan" from the confirmation pool to Manager Sun.
[0046] ④ Handling of Feedback Funds: Regardless of whether the role is confirmed, the feedback fund generated from the 360 yuan consumption partnership fund (360 × 36% = 129.6 yuan) will be immediately accrued and injected into the value-added pool at the time of the transaction.
[0047] Effect: The pending confirmation pool mechanism ensures the flexibility and fairness of the system in complex and non-standard transaction scenarios. It avoids incentive losses or misallocations caused by temporary role absences, and provides a channel for subsequent role completion, ensuring that the incentives corresponding to every penny of the consumption partnership fund are ultimately "returned to their rightful owners," thereby maintaining the integrity and credibility of the entire multi-role incentive system.
[0048] In summary: This invention, through a six-party distribution mechanism, widely shares the value of a single consumption with ecosystem contributors, building a highly sticky consumption community; employing a node multiplication release ratio model, the later the release of the same number of vouchers, the higher the required consumption backing, effectively controlling the growth rate of circulation, simulating scarcity, and resisting inflation; through a feedback mechanism and a public node value algorithm, it provides a clear value growth logic and expectation for digital vouchers, enhancing participation confidence.
[0049] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A method for issuing and distributing deflationary consumer partnership digital certificates based on multi-role incentives, characterized in that, Includes the following steps: S1. Set a fixed total amount of digital vouchers and divide them into a predetermined number of consecutive issuance nodes, with each node planning to issue a fixed number of digital vouchers. S2. In response to a consumer's spending behavior at a merchant, obtain the corresponding consumer partnership fee transferred by the merchant for that spending behavior; S3. Based on the current issuance node of the total cumulative release of digital vouchers. ( (where the number is a natural number) determines the release ratio of the current node. ,in This means that each unit of digital certificate released requires anchoring. The unit's consumption partnership fund; S4. Based on the consumption partnership fund and the release ratio R of the current node, calculate and generate the total amount of releaseable digital vouchers; S5. The total amount of releasable digital vouchers calculated in S4 is simultaneously released to the six roles associated with the consumption behavior according to the preset first fixed ratio allocation rule. The six roles include: consumer, merchant, new customer acquisition, transaction, merchant expansion, and operator.
2. The method for issuing and distributing deflationary consumer partnership digital certificates based on multi-role incentives according to claim 1, characterized in that, The first fixed-ratio allocation rule is as follows: 20% of the consumer partnership fund is allocated to digital vouchers for consumers, 20% to digital vouchers for merchants, 10% to digital vouchers for new user acquisition, 10% to digital vouchers for transactions, 30% to digital vouchers for merchant expansion, and 10% to digital vouchers for operations. The specific number of digital vouchers allocated to each role is calculated based on the release ratio R of the current node.
3. The method for issuing and distributing deflationary consumer partnership digital certificates based on multi-role incentives according to claim 1, characterized in that, This also includes S6 and the return bonus value, specifically: A second fixed percentage is extracted from the merchant's transfer of consumption partnership funds corresponding to each consumption transaction and injected into an independent return fund value-added pool to provide value-added rights for the released digital vouchers. The second fixed percentage is 36%.
4. The method for issuing and distributing deflationary consumer partnership digital certificates based on multi-role incentives according to claim 1, characterized in that, It also includes S7 and node value quantification, specifically: for the first The theoretical value of each node and its corresponding digital certificate Determined using the following algorithm: ,in It is a natural number from 1 to 100.
5. The method for issuing and distributing deflationary consumer partnership digital certificates based on multi-role incentives according to claim 1, characterized in that, In step S5, when the association method of any role cannot be determined in time, the digital credentials allocated to that role will be temporarily locked and transferred to a confirmation pool; after the preset association conditions are met and the identity binding of the corresponding role is completed, the corresponding number of digital credentials will be released from the confirmation pool to the bound role account.
6. A deflationary consumer partnership digital certificate issuance and distribution system based on multi-role incentives for implementing the method of any one of claims 1-5, characterized in that, It includes a node management module, a transaction triggering and collection module, a certificate release calculation engine, a multi-role allocation module, and an asset management module; The node management module is used to configure the total amount of digital vouchers, node division, and release ratio rules for each node; The transaction triggering and collection module is used to capture consumer behavior and associate it with the corresponding merchant transfer of consumer partnership funds data. The credential release calculation engine is used to calculate based on the current node. and release ratio Calculate the total amount of digital vouchers that can be released based on a single consumption partnership fund; The multi-role allocation module has the first fixed ratio allocation rule built in, which is used to allocate the calculated releasable vouchers to six corresponding role accounts; The asset management module is used to manage the issuance and circulation of digital certificates, the collection and operation of funds in the value-added pool, and to record the value parameters of each node.
7. A deflationary consumer partnership digital certificate issuance and distribution system based on multi-role incentives as described in claim 6, characterized in that, It also includes a node value disclosure module, which is used to dynamically calculate and disclose the theoretical value of digital certificates for current and historical issuance nodes. It also interacts with the asset management module to update value parameters in real time.
8. A computer-readable storage medium having a computer program stored thereon, characterized in that, When the computer program is executed by a processor, it implements the method as described in any one of claims 1-5.