CN111144851B - Block chain distribution system - Google Patents
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Abstract
A blockchain distribution system, comprising: a service layer and a blockchain layer for the service layer to call; the business layer is used for recording the uplink and downlink relation data of the user and transaction account dividing data; and the blockchain layer is used for providing the uplink and downlink relation data of the user and carrying out transaction accounting processing. According to the scheme, the block chain layer at the bottom layer is used for realizing the non-falsification of transaction account information and relationship information, and clearly and completely recording the participant relationship in the whole distribution process and the contribution of each participant to the distribution process. In addition, the user can verify the reality and accuracy of the account distribution result through the uplink and downlink relation information and the transaction account distribution information recorded by the business layer, so that the disclosure, fairness and transparency of the whole distribution system are ensured.
Description
Technical Field
The invention relates to the technical field of distribution, in particular to a block chain distribution system.
Background
With the advent of the network era, network distribution has become a powerful commodity sales mode, and the distribution mode is being widely applied to both traditional industries and emerging industries such as e-commerce, knowledge payment, live broadcast viewing and the like. The existing distribution relationship has the defects of opacity, unfairness and the like, a user cannot know the position of the user on a distribution chain, the user cannot ensure that the participants in the distribution system can obtain due benefit distribution, particularly the participants can complete a transaction together from different regions, different institutions and different platforms, and the user cannot know that the participants are in the due benefit distribution, so that the transparent completion of the distribution is very difficult and the cost is very high. However, such a system uses blockchain technology to fully record the information of the uplink and downlink relationships in the distribution system and the contribution behavior of each contributor in the transaction ledger, and write in the smart contracts on the fly. The consensus mechanism is formed and agreed by all participants, and when each transaction is completed, the intelligent contract is automatically fulfilled, and the account separation is automatically completed. It is difficult to achieve consensus between institutions and institutions, and between institutions and individuals, and it is difficult to construct a reasonable benefit distribution system.
The traditional off-line distribution method has various problems: (1) A complex distribution mode requires multiple parties to negotiate together to reach a satisfactory distribution scheme of all parties, and as the interests of participants and contributors of each transaction are different, the benefit distribution of each organization, organization and individual in the distribution process cannot be guaranteed to be fair and transparent, and the agreement is difficult to reach; (2) In the past distribution mode, the account distribution mode is mainly based on a way of oral agreement or contract signing, and due to more human factors, the conditions of paying little money, rejecting money, not performing on time and the like can occur; (3) In the negotiation process, because the network distribution faces the clients in all the places around the world, the communication cost and the traffic cost are relatively high, the communication period is relatively long, and the cooperation scheme of multiparty agreement is difficult to be achieved by the cooperation partners in different areas of different industries. (4) In the past, the distribution system is opaque, and a user cannot inquire the position of the user in the distribution chain, so that an untrusted sense is generated on the system, and a verification result is not trusted.
Disclosure of Invention
In order to solve the problem of unfair and opaque account distribution in the prior art, the invention provides a blockchain distribution system.
The technical scheme provided by the invention is as follows:
a blockchain distribution system, the system comprising:
a service layer and a blockchain layer for the service layer to call;
the business layer is used for recording the uplink and downlink relation data of the user and transaction account dividing data;
and the blockchain layer is used for providing the uplink and downlink relation data of the user and carrying out transaction accounting processing.
Preferably, the blockchain layer includes: a user registration module;
the user registration module is used for distributing a user information address for each new registered user based on a user registration algorithm.
Preferably, the service layer includes:
a relationship storage subsystem;
the relation storage subsystem is used for calling a user registration algorithm of the blockchain layer and storing the position of the user on a relation chain after registration, the relation information of the user and the uplink and downlink and the personal asset condition data of the user.
Preferably, the relationship storage subsystem includes:
the relationship creation module and the relationship query module;
the relation creation module is used for calling a user registration algorithm of the blockchain layer and storing the position information on a relation chain after the user registration, and the relation information between the user and the uplink and the downlink and the personal asset condition information data of the user;
and the relation query module is used for querying the information such as the position of the registered user on the relation chain, the primary personal asset condition of the uplink and downlink relation information and the like.
Preferably, the relationship creation module includes:
a link relation construction sub-module and a judgment sub-module;
the uplink and downlink relation construction submodule is used for constructing the uplink and downlink relation between the current user and the newly added user according to the introduction relation between the current user and the newly added user, and judging that the newly added user is the uplink grade of the current user;
the judging submodule is used for judging whether the newly added user is repeatedly introduced, and if so, inputting the information introduced for the first time into the uplink and downlink relation construction submodule; otherwise, the information which is introduced currently is input into the uplink and downlink relation construction sub-module.
Preferably, the blockchain layer further includes: a transaction allocation module;
the transaction allocation module is used for allocating a transaction activity address to each transaction activity based on a transaction allocation algorithm.
Preferably, the business layer further comprises a billing subsystem;
the accounting subsystem is used for calling a transaction allocation algorithm of the blockchain layer and managing transaction accounting behaviors.
Preferably, the account separating subsystem includes:
the system comprises a ledger creation module, a ledger module and a ledger inquiry module;
the account separation newly-built module is used for calling a transaction allocation algorithm of the blockchain layer and recording and storing transaction activity addresses;
the accounting module is used for calling the information data in the relation storage subsystem new module, and accounting the users in the transaction according to a set consensus mechanism based on the information data to generate transaction accounting information;
and the account dividing and inquiring module is used for inquiring the transaction account dividing information according to the information of the user and the transaction activity address.
Preferably, the service layer further includes: an administrator subsystem;
the manager subsystem is used for managing the user transaction activities by the manager.
Compared with the prior art, the invention has the beneficial effects that:
the technical scheme provided by the invention comprises the following steps: a service layer and a blockchain layer for the service layer to call; the business layer is used for recording the uplink and downlink relation data of the user and transaction account dividing data; and the blockchain layer is used for providing the uplink and downlink relation data of the user and carrying out transaction accounting processing. According to the scheme, the block chain layer at the bottom layer is used for realizing the non-falsification of transaction account information and relationship information, and clearly and completely recording the participant relationship in the whole distribution process and the contribution of each participant to the distribution process. In addition, the user can verify the reality and accuracy of the account distribution result through the uplink and downlink relation information and the transaction account distribution information recorded by the business layer, so that the disclosure, fairness and transparency of the whole distribution system are ensured.
Drawings
FIG. 1 is a block chain distribution system framework diagram of the present invention.
Detailed Description
For a better understanding of the present invention, reference is made to the following description, drawings and examples.
Example 1:
the embodiment provides a blockchain distribution system, which comprises a business layer and a blockchain layer, wherein the business layer is used for recording up-down chain relation storage and transaction account separation activities, and the blockchain layer is used for providing a bottom layer blockchain for recording up-down chain relation storage and transaction account separation activities.
The business layer comprises an administrator subsystem, a relation storage subsystem and a account dividing subsystem, wherein the administrator subsystem is used for managing user transaction activities by an administrator, and the relation storage subsystem is used for storing information such as the position of a user on a relation chain after the user is registered, the relation information of the user uplink and downlink, the personal asset condition of the user and the like; the account separation subsystem is used for managing transaction account separation behaviors.
The manager subsystem comprises a user management module and a transaction management module; the user management module is used for checking, modifying and deleting users by an administrator; the transaction management module is used for an administrator to check, modify and delete transaction activities.
The relation storage subsystem comprises a new module and a query module, wherein the new module is used for storing basic information of a new user after registration, position information on a relation chain, uplink and downlink relation information, user personal asset conditions and other information, and the bottom layer blockchain allocates a user information address for each new registered user; the inquiry module is used for registering the user to inquire the information such as the position of the user on the relation chain, the uplink and downlink relation information, the personal asset condition of the user and the like by using the user information address.
The new building module is used for storing user information such as basic information, position information, uplink and downlink relation information, user personal asset condition and the like of the registered user, and specifically comprises the following steps: the new user A inputs basic information and verification code to register, and after the registration is successful, the bottom layer blockchain allocates a user information address for the registered user A. After the new user A finishes registration, the new module stores the basic information of the user A, the position of the user A in the relation chain, the uplink and downlink relation information, the personal asset condition of the user and the like. For user A, user B introducing user A into the system is marked as a primary uplink of user A; user C, who introduces user B into the system, is denoted as user A's secondary uplink, and so on; user D, introduced into the system by user a, is denoted as user a's first order downlink; user E, introduced into the system by user D, is denoted as the secondary downlink for user a, and so on; the downlink is introduced into the system in a mode of scanning a personal two-dimensional code of a user, filling in an invitation code of the user, and the like. In addition, the repeated introduction or different users introduce the same new user in sequence, the blockchain is only based on the position of the first writing in the user, and the information of the repeated introduction is not recorded. The relation chains are in one-to-one correspondence and cannot be tampered.
The inquiry module is used for inquiring information such as the position information, the uplink and downlink relation information and the personal asset condition of the user on the relation chain after the user is registered, and specifically comprises the following steps: user a can use the user information address to query the location of itself in the relationship chain, query information of the uplink and all the downlink within three levels, and query information of the user's personal asset condition.
The account dividing subsystem comprises a new module, an account dividing module and a query module. The new module is used for recording new transaction activities, and the bottom layer blockchain allocates a transaction activity address for each transaction activity; the account separating module is used for automatically separating each contributor in the transaction according to a consensus mechanism by the system according to the information recorded in the intelligent contract; the inquiry module is used for inquiring the transaction account information by the user through the transaction activity address.
The account separating module performs automatic account separating on each contributor in the transaction according to the information recorded in the intelligent contract and a consensus mechanism, and specifically comprises the following steps: user a completes a transaction in the system, the transaction types including but not limited to membership fees, electronic commerce, campaigns, advertisements, live broadcast, etc. The distribution sponsor and platform jointly determine the promotion share proportion, and the account distribution mode is written into the intelligent contract. Assume that the accounting method is as follows: the commodity suppliers agree that 30% of the profits of the commodity taken out are commissioned for promotion. The promotion commission revenue includes commodity commission (70%), relationship blockchain rewards (20%), and platform service fees (10%). Wherein the commodity distribution commission is used for rewarding contributors of the institutions, communities, APP, individuals and the like participating in the transaction distribution, the contribution behavior can be understood as that the behaviors of the institutions or the individuals contribute to the completion of the transaction, and meanwhile, the behaviors can be accurately recorded by the system and can be quantified; the relation blockchain rewards are used for rewarding users (including three-level uplink) in three levels of a mechanism/community/APP participated by the user A and the user A, so that the rewards are introduced into the behavior of the user capable of creating the value; the mechanism/community/APP to which the user belongs can obtain 50% of the relational blockchain rewards, the primary uplink user obtains 30% of the relational blockchain rewards, the secondary uplink user obtains 15% of the relational blockchain rewards, and the tertiary uplink user obtains 5% of the relational blockchain rewards; the platform service fee is platform revenue for rewarding the platform providing the distribution system service. When the transaction is completed, the system evaluates the efficiency of the contributors of the transaction according to the information recorded by the intelligent contract, and automatically performs account separation. After verifying the authenticity and integrity of the transaction, the underlying blockchain writes into the block and broadcasts the consensus to all nodes in the blockchain. For example: a user A purchases a commodity through an application B platform, and the popularization commission income is 100 yuan, wherein the mechanism, organization and individual participating in the distribution can obtain 70 yuan income; the application B where the user A is located can obtain 10 yuan, the primary uplink of the user A can obtain 6 yuan, the secondary uplink can obtain 3 yuan, and the tertiary uplink can obtain 1 yuan; the platform may obtain 10 yuan.
The inquiry module is used for inquiring the transaction account separating result by the registered user by using the transaction activity address, and specifically comprises the following steps: the registered user uses the transaction activity address to inquire, and the bottom layer block displays response data to the user according to the request. For example: the user A is a contributor of one transaction, the user A can send the transaction activity address to the query module for query, the bottom layer block displays response data to the user A according to the request, and the user A can check the self account dividing information of the transaction.
Example 2:
the present embodiment provides a blockchain distribution system, comprising:
a service layer and a blockchain layer for the service layer to call;
the business layer is used for recording the uplink and downlink relation data of the user and transaction account dividing data;
and the blockchain layer is used for providing the uplink and downlink relation data of the user and carrying out transaction accounting processing.
The blockchain layer includes: a user registration module;
the user registration module is used for distributing a user information address for each new registered user based on a user registration algorithm.
The service layer comprises:
a relationship storage subsystem;
the relation storage subsystem is used for calling a user registration algorithm of the blockchain layer and storing the position of the user on a relation chain after registration, the relation information of the user and the uplink and downlink and the personal asset condition data of the user.
The relationship storage subsystem includes:
the relationship creation module and the relationship query module;
the relation creation module is used for calling a user registration algorithm of the blockchain layer and storing the position information on a relation chain after the user registration, and the relation information between the user and the uplink and the downlink and the personal asset condition information data of the user;
and the relation query module is used for querying the information such as the position of the registered user on the relation chain, the primary personal asset condition of the uplink and downlink relation information and the like.
The relation creation module includes:
a link relation construction sub-module and a judgment sub-module;
the uplink and downlink relation construction submodule is used for constructing the uplink and downlink relation between the current user and the newly added user according to the introduction relation between the current user and the newly added user, and judging that the newly added user is the uplink grade of the current user;
the judging submodule is used for judging whether the newly added user is repeatedly introduced, and if so, inputting the information introduced for the first time into the uplink and downlink relation construction submodule; otherwise, the information which is introduced currently is input into the uplink and downlink relation construction sub-module.
The blockchain layer further includes: a transaction allocation module;
the transaction allocation module is used for allocating a transaction activity address to each transaction activity based on a transaction allocation algorithm.
The business layer also comprises a billing subsystem;
the accounting subsystem is used for calling a transaction allocation algorithm of the blockchain layer and managing transaction accounting behaviors.
The account separation subsystem includes:
the system comprises a ledger creation module, a ledger module and a ledger inquiry module;
the account separation newly-built module is used for calling a transaction allocation algorithm of the blockchain layer and recording and storing transaction activity addresses;
the accounting module is used for calling the information data in the relation storage subsystem new module, and accounting the users in the transaction according to a set consensus mechanism based on the information data to generate transaction accounting information;
and the account dividing and inquiring module is used for inquiring the transaction account dividing information according to the information of the user and the transaction activity address.
The service layer further comprises: an administrator subsystem;
the manager subsystem is used for managing the user transaction activities by the manager.
It will be apparent that the described embodiments are some, but not all, embodiments of the invention. All other embodiments, which can be made by those skilled in the art based on the embodiments of the invention without making any inventive effort, are intended to be within the scope of the invention.
It will be appreciated by those skilled in the art that embodiments of the present application may be provided as a method, system, or computer program product. Accordingly, the present application may take the form of an entirely hardware embodiment, an entirely software embodiment, or an embodiment combining software and hardware aspects. Furthermore, the present application may take the form of a computer program product embodied on one or more computer-usable storage media (including, but not limited to, disk storage, CD-ROM, optical storage, and the like) having computer-usable program code embodied therein.
The present application is described with reference to flowchart illustrations and/or block diagrams of methods, apparatus (systems) and computer program products according to embodiments of the application. It will be understood that each flow and/or block of the flowchart illustrations and/or block diagrams, and combinations of flows and/or blocks in the flowchart illustrations and/or block diagrams, can be implemented by computer program instructions. These computer program instructions may be provided to a processor of a general purpose computer, special purpose computer, embedded processor, or other programmable data processing apparatus to produce a machine, such that the instructions, which execute via the processor of the computer or other programmable data processing apparatus, create means for implementing the functions specified in the flowchart flow or flows and/or block diagram block or blocks.
These computer program instructions may also be stored in a computer-readable memory that can direct a computer or other programmable data processing apparatus to function in a particular manner, such that the instructions stored in the computer-readable memory produce an article of manufacture including instruction means which implement the function specified in the flowchart flow or flows and/or block diagram block or blocks.
These computer program instructions may also be loaded onto a computer or other programmable data processing apparatus to cause a series of operational steps to be performed on the computer or other programmable apparatus to produce a computer implemented process such that the instructions which execute on the computer or other programmable apparatus provide steps for implementing the functions specified in the flowchart flow or flows and/or block diagram block or blocks.
The foregoing is illustrative of the present invention and is not to be construed as limiting thereof, but rather as providing for the use of additional embodiments and advantages of all such modifications, equivalents, improvements and similar to the present invention are intended to be included within the scope of the present invention as defined by the appended claims.
Claims (5)
1. A blockchain distribution system, the system comprising:
a service layer and a blockchain layer for the service layer to call;
the business layer is used for recording the uplink and downlink relation data of the user and transaction account dividing data;
the block chain layer is used for providing user uplink and downlink relation data and carrying out transaction accounting processing;
the blockchain layer includes: a user registration module;
the user registration module is used for distributing a user information address for each new registered user based on a user registration algorithm;
the service layer comprises:
a relationship storage subsystem;
the relation storage subsystem is used for calling a user registration algorithm of the blockchain layer and storing the position of the user on a relation chain after registration, the relation information of the user and the uplink and downlink and the personal asset condition data of the user;
the relationship storage subsystem includes:
the relationship creation module and the relationship query module;
the relation creation module is used for calling a user registration algorithm of the blockchain layer and storing the position information on a relation chain after the user registration, and the relation information between the user and the uplink and the downlink and the personal asset condition information data of the user;
the relation inquiry module is used for inquiring the first-level personal asset condition information of the position and the uplink and downlink relation information of the registered user on the relation chain;
the relation creation module includes:
a link relation construction sub-module and a judgment sub-module;
the uplink and downlink relation construction submodule is used for constructing the uplink and downlink relation between the current user and the newly added user according to the introduction relation between the current user and the newly added user, and judging that the newly added user is the uplink grade of the current user;
the judging submodule is used for judging whether the newly added user is repeatedly introduced, and if so, inputting the information introduced for the first time into the uplink and downlink relation construction submodule; otherwise, the information which is introduced currently is input into the uplink and downlink relation construction sub-module.
2. The system of claim 1, wherein the blockchain layer further comprises: a transaction allocation module;
the transaction allocation module is used for allocating a transaction activity address to each transaction activity based on a transaction allocation algorithm.
3. The system of claim 2, wherein the business layer further comprises a billing subsystem;
the accounting subsystem is used for calling a transaction allocation algorithm of the blockchain layer and managing transaction accounting behaviors.
4. The system of claim 3, wherein the billing subsystem comprises:
the system comprises a ledger creation module, a ledger module and a ledger inquiry module;
the account separation newly-built module is used for calling a transaction allocation algorithm of the blockchain layer and recording and storing transaction activity addresses;
the accounting module is used for calling the information data in the relation storage subsystem new module, and accounting the users in the transaction according to a set consensus mechanism based on the information data to generate transaction accounting information;
and the account dividing and inquiring module is used for inquiring the transaction account dividing information according to the information of the user and the transaction activity address.
5. The system of claim 3, wherein the business layer further comprises: an administrator subsystem;
the manager subsystem is used for managing the user transaction activities by the manager.
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