WO2018076759A1 - 基于区块链的多链管理方法、系统、电子装置及存储介质 - Google Patents

基于区块链的多链管理方法、系统、电子装置及存储介质 Download PDF

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WO2018076759A1
WO2018076759A1 PCT/CN2017/091247 CN2017091247W WO2018076759A1 WO 2018076759 A1 WO2018076759 A1 WO 2018076759A1 CN 2017091247 W CN2017091247 W CN 2017091247W WO 2018076759 A1 WO2018076759 A1 WO 2018076759A1
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Prior art keywords
blockchain
transaction
node
organization
identity management
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PCT/CN2017/091247
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English (en)
French (fr)
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陆陈一帆
张臻杰
余哲
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上海亿账通区块链科技有限公司
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Priority to US16/305,072 priority Critical patent/US20200374288A1/en
Priority to EP17865831.6A priority patent/EP3534320A4/en
Priority to SG11201810841TA priority patent/SG11201810841TA/en
Publication of WO2018076759A1 publication Critical patent/WO2018076759A1/zh

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    • G06Q40/00Finance; Insurance; Tax strategies; Processing of corporate or income taxes
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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
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    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
    • G06Q40/00Finance; Insurance; Tax strategies; Processing of corporate or income taxes
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L41/00Arrangements for maintenance, administration or management of data switching networks, e.g. of packet switching networks
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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
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    • H04L41/00Arrangements for maintenance, administration or management of data switching networks, e.g. of packet switching networks
    • H04L41/08Configuration management of networks or network elements
    • H04L41/0803Configuration setting
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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L41/00Arrangements for maintenance, administration or management of data switching networks, e.g. of packet switching networks
    • H04L41/08Configuration management of networks or network elements
    • H04L41/0876Aspects of the degree of configuration automation
    • H04L41/0886Fully automatic configuration
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L41/00Arrangements for maintenance, administration or management of data switching networks, e.g. of packet switching networks
    • H04L41/08Configuration management of networks or network elements
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    • H04ELECTRIC COMMUNICATION TECHNIQUE
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    • H04ELECTRIC COMMUNICATION TECHNIQUE
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    • H04L9/00Cryptographic mechanisms or cryptographic arrangements for secret or secure communications; Network security protocols
    • H04L9/06Cryptographic mechanisms or cryptographic arrangements for secret or secure communications; Network security protocols the encryption apparatus using shift registers or memories for block-wise or stream coding, e.g. DES systems or RC4; Hash functions; Pseudorandom sequence generators
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    • GPHYSICS
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    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
    • G06Q2220/00Business processing using cryptography
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
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    • H04L9/50Cryptographic mechanisms or cryptographic arrangements for secret or secure communications; Network security protocols using hash chains, e.g. blockchains or hash trees

Definitions

  • the present invention relates to the field of blockchain technology, and in particular, to a blockchain-based multi-chain management method, system, electronic device and storage medium.
  • the main object of the present invention is to provide a blockchain-based multi-chain management method, system, electronic device and storage medium, which are intended to effectively and automatically manage multiple blockchain nodes of the same institution node.
  • the first aspect of the present application provides a blockchain-based multi-chain management method, the method comprising the following steps:
  • the virtual node Constructing a virtual node for each of the institutional nodes, the virtual node comprising a cluster of nodes generated based on a blockchain that processes each transaction and/or process involved by each of the institutional nodes;
  • the second aspect of the present application provides a blockchain center control system for managing multiple chains, the blockchain center control system comprising:
  • a building module for constructing a virtual node for each of the organization nodes, the virtual node comprising a node group generated based on a blockchain that processes each transaction and/or process involved by each organization node;
  • a blockchain identity management module configured to connect identity information of each organization node to a blockchain identity management system corresponding to the blockchain of each of the virtual nodes;
  • a blockchain transaction proxy module configured to acquire identity information corresponding to each transaction by using the blockchain identity management module, package the acquired identity information and corresponding transaction parameters to generate package information, and send the packaged information to execution Transaction execution is performed on the target blockchain corresponding to the transaction.
  • a third aspect of the present application provides an electronic device, including a processing device, a storage device, and a blockchain center control system, where the blockchain center control system is stored in the storage device, including at least one computer readable instruction, the at least one Computer readable instructions are executable by the processing device to:
  • the virtual node Constructing a virtual node for each of the institutional nodes, the virtual node comprising a cluster of nodes generated based on a blockchain that processes each transaction and/or process involved by each of the institutional nodes;
  • a fourth aspect of the present application provides a computer readable storage medium having stored thereon at least one computer readable instruction executable by a processing device to:
  • the virtual node Constructing a virtual node for each of the institutional nodes, the virtual node comprising a cluster of nodes generated based on a blockchain that processes each transaction and/or process involved by each of the institutional nodes;
  • the blockchain-based multi-chain management method, system, electronic device and storage medium proposed by the present invention are linked by a node group generated by a blockchain for processing different transactions and/or processes involved in each organization node.
  • the organization node constructs a virtual node, and constructs a blockchain identity management module for managing the identity information of the organization node for each virtual node, and a blockchain transaction proxy module for managing transaction transactions of the organization node, based on the blockchain identity Management module and blockchain transaction agent module Perform multi-chain management. Since a node of an organization node is connected to a node on a plurality of blockchain networks to form a virtual node, based on the virtual node, identity information and transaction information of the organization node on the plurality of blockchain networks can be performed. Integrated management, without the need for users to store their own identities on multiple blockchain networks one by one, backup and other cumbersome operations, to achieve effective automatic management of multiple blockchain nodes.
  • FIG. 1 is a schematic diagram of an application environment of a preferred embodiment of a blockchain-based multi-chain management method according to the present invention
  • FIG. 2 is a schematic flow chart of an embodiment of a multi-chain management method based on a blockchain according to the present invention
  • FIG. 3 is a schematic diagram of a virtual node constructed in an embodiment of a blockchain-based multi-chain management method according to the present invention.
  • FIG. 4 is a schematic diagram of transactions in an embodiment of a blockchain-based multi-chain management method according to the present invention.
  • FIG. 5 is a schematic diagram of functional modules of an embodiment of a blockchain center control system according to the present invention.
  • FIG. 1 it is a schematic diagram of an application environment of a preferred embodiment of a blockchain-based multi-chain management method according to the present invention.
  • the application environment diagram includes an electronic device 1 and a terminal device 2.
  • the electronic device 1 can perform data interaction with the terminal device 2 through a suitable technology such as a network or a near field communication technology.
  • the terminal device 2 includes, but is not limited to, any electronic product that can interact with a user through a keyboard, a mouse, a remote controller, a touch pad, or a voice control device, for example, a personal computer, a tablet computer, a smart phone, or an individual.
  • Digital Assistant (PDA) game console, Internet Protocol Television (IPTV), smart wearable device, etc.
  • the electronic device 1 is an apparatus capable of automatically performing numerical calculation and/or information processing in accordance with an instruction set or stored in advance.
  • the electronic device 1 may be a computer, a single network server, a server group composed of multiple network servers, or a cloud-based cloud composed of a large number of hosts or network servers, where cloud computing is a type of distributed computing, A super virtual computer consisting of a loosely coupled set of computers.
  • the electronic device 1 includes, but is not limited to, a storage device 11, a processing device 12, and a network interface 13 that are communicably connected to each other through a system bus. It should be noted that FIG. 1 only shows the electronic device 1 having the components 11-13, but it should be understood that not all illustrated components are required to be implemented, and more or fewer components may be implemented instead.
  • the storage device 11 includes a memory and at least one type of readable storage medium.
  • the memory provides a cache for the operation of the electronic device 1;
  • the readable storage medium may be a non-volatile storage medium such as a flash memory, a hard disk, a multimedia card, a card type memory, or the like.
  • the readable storage medium may be an internal storage unit of the electronic device 1, such as a hard disk of the electronic device 1; in other embodiments, the non-volatile storage medium may also be external to the electronic device 1.
  • a storage device such as a plug-in hard disk equipped with an electronic device 1, a smart memory card (SMC), a Secure Digital (SD) card, a flash card, or the like.
  • SMC smart memory card
  • SD Secure Digital
  • the readable storage medium of the storage device 11 is generally used to store an operating system installed in the electronic device 1 and various types of application software, such as program code of the blockchain center control system 10 in an embodiment of the present application. . Further, the storage device 11 can also be used to temporarily store various types of data that have been output or are to be output.
  • Processing device 12 may, in some embodiments, include one or more microprocessors, microcontrollers, digital processors, and the like.
  • the processing device 12 is generally used to control the operation of the electronic device 1, for example, to perform control and processing related to data interaction or communication with the terminal device 2.
  • the processing device 12 is configured to run program code or process data stored in the storage device 11, such as running the blockchain center control system 10 and the like.
  • the network interface 13 may comprise a wireless network interface or a wired network interface, which is typically used to establish a communication connection between the electronic device 1 and other electronic devices.
  • the network interface 13 is mainly used to connect the electronic device 1 with one or more terminal devices 2, and establish a data transmission channel and a communication connection between the electronic device 1 and one or more terminal devices 2.
  • the blockchain center control system 10 includes at least one computer readable instructions stored in the storage device 11, the at least one computer readable instructions being executable by the processing device 12 to implement the method of picture recognition of various embodiments of the present application. As described later, the at least one computer readable instruction can be classified into different logic modules depending on the functions implemented by its various parts.
  • the blockchain center control system 10 when executed by the processing device 12, the following operations are implemented: first, construct a virtual node for each organization node, and construct a blockchain identity management module and region for each virtual node constructed.
  • Blockchain transaction proxy module then, by the blockchain identity management module, the identity information of each organization node is connected to the blockchain identity management system corresponding to the blockchain of each of the virtual nodes; by the blockchain
  • the transaction agent module obtains the identity information corresponding to each transaction by using the blockchain identity management module, packages the acquired identity information and the corresponding transaction parameters to generate package information, and sends the packaged information to the target block that performs the corresponding transaction.
  • the chain performs transaction execution, and transmits related information of the transaction and the transaction result to the terminal device 2 for display to the end user.
  • the blockchain center control system 10 is stored in the storage device 11 and includes at least one computer readable instruction stored in the storage device 11, the at least one computer readable instruction being executable by the processing device 12 to A method of realizing picture recognition of various embodiments of the present application.
  • the at least one computer readable instruction can be classified into different logic modules depending on the functions implemented by its various parts.
  • the invention provides a blockchain based multi-chain management method.
  • FIG. 2 is a schematic flowchart diagram of an embodiment of a multi-chain management method based on a blockchain according to an embodiment of the present invention.
  • the blockchain-based multi-chain management method includes:
  • Step S10 constructing a virtual node for each organization node, where the virtual node includes a node group generated based on a blockchain that processes each transaction and/or process involved by each organization node;
  • a virtual node is formed by linking a node of a mechanism node on a plurality of blockchain networks by constructing a virtual node.
  • the virtual node includes a node group generated based on a blockchain that processes different transactions and/or processes involved by each organization node.
  • the group of nodes under the virtual node can be divided into two categories: one is a plurality of chain nodes of the same organization node formed in a scenario to solve the traffic problem, because they are Belong to the same application scenario and all nodes on the chain are the same, so they are grouped into the same type of node group.
  • the characteristics of this type of node group are that they belong to the same identity management system (the identity management system is not controlled by the node);
  • a node group is a plurality of chain nodes of a blockchain network that supports certain transactions or processes. The characteristics of such chain nodes are that the nodes of each chain are different (participants are different), so they may be managed by multiple identities. System support may also be achieved using different blockchain techniques;
  • Step S20 constructing a blockchain identity management module and a blockchain transaction proxy module for each virtual node that is constructed;
  • Step S30 the identity information of each organization node is connected to the blockchain identity management system corresponding to the blockchain in each virtual node by using the blockchain identity management module;
  • Step S40 The blockchain transaction proxy module obtains identity information corresponding to each transaction by using the blockchain identity management module, and packages the acquired identity information and corresponding transaction parameters to generate package information, and the package information is Send to the target blockchain that executes the corresponding transaction for trade execution.
  • the blockchain identity management module is configured to use the identity information of each institution node, such as a user name and an account number, in a one-to-many form. Connected to the blockchain identity management system corresponding to different blockchains in each virtual node, the identity information of the respective node nodes of the blockchain identity management module is called, verified, etc. on different blockchains in each virtual node. Manage.
  • the blockchain transaction proxy module is configured to obtain identity information corresponding to each transaction by using a blockchain identity management module corresponding to each virtual node, and package the acquired identity information and corresponding transaction parameters to generate package information, and the generated package is packaged.
  • the information is sent to the target blockchain that performs the corresponding transaction for transaction execution. Therefore, when the transaction is executed, the function of the identity information retrieval and verification corresponding to the transaction is completed based on the blockchain identity management module corresponding to each virtual node, and the transaction is performed based on the blockchain transaction proxy module corresponding to each virtual node. The process is controlled.
  • a virtual node is constructed for each organization node by linking a node group generated by a blockchain of different transactions and/or processes involved in each organization node, and is a virtual node for each virtual node. Constructing a blockchain identity management module for managing organization node identity information and a blockchain transaction proxy module for managing transaction transactions of the organization node, performing multi-chain based on the blockchain identity management module and the blockchain transaction proxy module management. Since a node of an organization node is connected to a node on a plurality of blockchain networks to form a virtual node, based on the virtual node, identity information and transaction information of the organization node on the plurality of blockchain networks can be performed. Integrated management, without the need for users to store their own identities on multiple blockchain networks one by one, backup and other cumbersome operations, to achieve effective automatic management of multiple blockchain nodes.
  • FIG. 3 is a schematic diagram of a virtual node constructed in an embodiment of a multi-chain management method based on a blockchain according to the present invention.
  • the foregoing step S10 may include:
  • a virtual node including a first type of node group is constructed for each of the organization nodes, and the first type of node group is generated by a corresponding type of blockchain component slice that is processed by the corresponding organization node to process different transactions.
  • a virtual node including a first type of node group is constructed for each of the organization nodes, and the first type of node group is generated by a corresponding type of blockchain component slice that is processed by the corresponding organization node to process different transactions.
  • the first type of blockchain group in which an institution node participates includes a class A financial product chain, a class B financial product chain, and a class C financial product chain, wherein the class A financial product chain segmentation area is divided into four.
  • the first small chain is slice 1, slice 2, slice 3 and slice 4, and the segmented areas of the B-type financial product chain and the C-type financial product chain are divided into four first small chains, and the segments are divided into four segments. 1. Fragment 2, Fragment 3, and Fragment 4, wherein each of the first small chains has a node of the mechanism.
  • step S10 may further include:
  • a second type of node group is constructed for the virtual node, and the second type of node group is generated by a second type of blockchain component participant that processes the different processes involved by the corresponding organization node.
  • a virtual node including a second type of node group is constructed for each of the organization nodes, and the second type of node group is generated by a second type of blockchain component participant that processes the different processes involved by the corresponding organization node.
  • the second type of blockchain group involved in an organization node includes an X process chain and a Y process chain, wherein the X process chain is divided into 8 second small chains, which are the participant ABC chain and the participant.
  • ACD chain, participant ABCE chain, participant ACE chain, participant AB chain, participant AC chain, participant AD chain, participant AE chain, Y process chain is divided into 4 second small chains, respectively, participant AB
  • FIG. 4 is a schematic diagram of a transaction in a blockchain-based multi-chain management method according to an embodiment of the present invention; in other embodiments, the method further includes:
  • the blockchain identity management module is configured to use one-to-many identity information of each institution node, such as a user name and an account number.
  • the form is connected to the blockchain identity management system corresponding to each of the first type of blockchain group and the second type of blockchain group.
  • the blockchain identity management system corresponding to the class A financial product chain is “A chain identity management”
  • the blockchain identity management system corresponding to the class B financial product chain is “B chain identity management”
  • X process The blockchain identity management system corresponding to the chain is "X-chain identity management" and many more.
  • the blockchain transaction agent module corresponding to the blockchain corresponds to the blockchain through the blockchain.
  • the blockchain identity management module obtains the identity information corresponding to each transaction, and packages the acquired identity information and the corresponding transaction parameters to generate package information, and sends the generated package information to the target blockchain that performs the corresponding transaction for transaction execution. Therefore, based on the virtual node, comprehensive and effective automatic management of identity information, transaction information, and the like of the organization node on the plurality of blockchain networks can be realized.
  • the method further includes:
  • the organization When an organization initiates a transaction request with a transaction parameter into a blockchain, the organization sends the transaction request to the blockchain transaction agent module corresponding to the blockchain, and the blockchain transaction agent The module finds the blockchain identity management system corresponding to the blockchain through the blockchain identity management module, and obtains the node parameters and the transaction digital certificate required to execute the transaction request from the found blockchain identity management system;
  • the node parameter and the transaction digital certificate obtained by the blockchain transaction proxy module are packaged together with the transaction parameter and sent to the blockchain for transaction execution.
  • the blockchain transaction proxy module corresponding to the blockchain passes the block corresponding to the blockchain.
  • the chain identity management module finds the blockchain identity management system corresponding to the blockchain, and obtains the node parameters and the transaction digital certificate required to execute the transaction request from the found blockchain identity management system, and then obtains the node parameters and The transaction digital certificate is packaged together with the transaction parameters and sent to the blockchain for transaction execution, so that the transaction of the organization node on the plurality of blockchain networks can be effectively and automatically managed based on the virtual node.
  • the present invention further provides a blockchain center control system for managing multiple chains.
  • FIG. 5 is a schematic diagram of functional modules of an embodiment of a blockchain center control system according to the present invention.
  • the blockchain center control system includes a building block 01, a blockchain identity management module 02, and a blockchain transaction agent module 03, wherein:
  • a building module 01 configured to build a virtual node for each of the organization nodes, the virtual node comprising a node group generated based on a blockchain that processes each transaction and/or process involved by each organization node;
  • a virtual node is formed by linking a node of a mechanism node on a plurality of blockchain networks by constructing a virtual node.
  • the virtual node includes a node group generated based on a blockchain that processes different transactions and/or processes involved by each organization node.
  • the group of nodes under the virtual node can be divided into two categories: one is a plurality of chain nodes of the same organization node formed in a scenario to solve the traffic problem, because they are Belong to the same application scenario and all nodes on the chain are the same, so it is summarized
  • the same type of node group the characteristics of this type of node group are that they belong to the same identity management system (the identity management system is not controlled by the node);
  • the other type of node group is the blockchain network that supports certain transactions or processes.
  • Chain nodes which are characterized by different nodes (different participants), so they may be supported by multiple identity management systems, or they may be implemented using different blockchain technologies;
  • the building block module 01 also constructs a blockchain identity management module 02 and a blockchain transaction proxy module 03 for each virtual node that is constructed; wherein the blockchain identity management module 02 is configured to connect the identity information of each organization node to each location.
  • the blockchain transaction proxy module 03 is configured to obtain the identity information corresponding to each transaction by using the blockchain identity management module, and obtain the identity information and The corresponding transaction parameters are packaged to generate package information, and the package information is sent to a target blockchain that performs the corresponding transaction for transaction execution.
  • the blockchain identity management module is configured to use the identity information of each institution node, such as a user name and an account number, in a one-to-many form. Connected to the blockchain identity management system corresponding to different blockchains in each virtual node, the identity information of the respective node nodes of the blockchain identity management module is called, verified, etc. on different blockchains in each virtual node. Manage.
  • the blockchain transaction proxy module is configured to obtain identity information corresponding to each transaction by using a blockchain identity management module corresponding to each virtual node, and package the acquired identity information and corresponding transaction parameters to generate package information, and the generated package is packaged.
  • the information is sent to the target blockchain that performs the corresponding transaction for transaction execution. Therefore, when the transaction is executed, the function of the identity information retrieval and verification corresponding to the transaction is completed based on the blockchain identity management module corresponding to each virtual node, and the transaction is performed based on the blockchain transaction proxy module corresponding to each virtual node. The process is controlled.
  • a virtual node is constructed for each organization node by linking the node groups generated by the blockchains of different transactions and/or processes involved in each organization node, and the identity of the management node is constructed for each virtual node.
  • the blockchain identity management module of the information and the blockchain transaction proxy module for managing transaction transactions of the organization node perform multi-chain management based on the blockchain identity management module and the blockchain transaction proxy module. Since a node of an organization node is connected to a node on a plurality of blockchain networks to form a virtual node, based on the virtual node, identity information and transaction information of the organization node on the plurality of blockchain networks can be performed. Integrated management, without the need for users to store their own identities on multiple blockchain networks one by one, backup and other cumbersome operations, to achieve effective automatic management of multiple blockchain nodes.
  • the foregoing building module 01 can also be used to:
  • a virtual node including a first type of node group is constructed for each of the organization nodes, and the first type of node group is generated by a corresponding type of blockchain component slice that is processed by the corresponding organization node to process different transactions.
  • a virtual node including a first type of node group is constructed for each of the organization nodes, and the first type of node group is generated by a corresponding type of blockchain component slice that is processed by the corresponding organization node to process different transactions.
  • the first type of blockchain group in which an organization node participates includes a class A financial product chain and a class B financial Product chain, C-type financial product chain, in which the A-type financial product chain segmentation area is divided into four first small chains, namely, slice 1, slice 2, slice 3 and slice 4, class B financial product chain
  • the fragmentation area of the C-type financial product chain is divided into four first small chains, a slice 1, a slice 2, a slice 3 and a slice 4, wherein each of the first small chains has the mechanism The node exists.
  • the foregoing building module 01 can also be used to:
  • a second type of node group is constructed for the virtual node, and the second type of node group is generated by a second type of blockchain component participant that processes the different processes involved by the corresponding organization node.
  • a virtual node including a second type of node group is constructed for each of the organization nodes, and the second type of node group is generated by a second type of blockchain component participant that processes the different processes involved by the corresponding organization node.
  • a second type of blockchain group involved in an organization node includes an X process chain and a Y process chain, wherein the X process chain is divided into 8 second small chains, namely, a participant ABC chain, a participant ACD chain, and participation.
  • Party ABCE chain, participant ACE chain, participant AB chain, participant AC chain, participant AD chain, participant AE chain, Y process chain is divided into 4 second small chains, respectively, participant AB chain, participants The AC chain, the participant AD chain, and the participant AE chain, wherein each of the second type of blockchain groups has a node of the institution in a small chain in each process chain.
  • the method further includes:
  • the blockchain identity management module is configured to use one-to-many identity information of each institution node, such as a user name and an account number.
  • the form is connected to the blockchain identity management system corresponding to each of the first type of blockchain group and the second type of blockchain group.
  • the blockchain identity management system corresponding to the Class A financial product chain is “A chain identity management”
  • the blockchain identity management system corresponding to the Class B financial product chain is “B chain identity management”
  • the X process chain corresponds to the zone.
  • the blockchain identity management system is "X-chain identity management" and the like.
  • the blockchain transaction agent module corresponding to the blockchain corresponds to the blockchain through the blockchain.
  • the blockchain identity management module obtains the identity information corresponding to each transaction, and packages the acquired identity information and the corresponding transaction parameters to generate package information, and sends the generated package information to the target blockchain that performs the corresponding transaction for transaction execution. Therefore, based on the virtual node, comprehensive and effective automatic management of identity information, transaction information, and the like of the organization node on the plurality of blockchain networks can be realized.
  • the above blockchain transaction proxy module 03 can also be used to:
  • the blockchain identity management system corresponding to the blockchain is found through the corresponding blockchain identity management module, and the blockchain is found from the blockchain.
  • the identity management system obtains the node parameters and transaction digital certificates required to execute the transaction request;
  • the obtained node parameters and the transaction digital certificate are packaged together with the transaction parameters and sent to the blockchain for transaction execution.
  • the blockchain transaction proxy module corresponding to the blockchain passes the blockchain.
  • the corresponding blockchain identity management module finds the blockchain identity management system corresponding to the blockchain, and obtains the node parameters and transaction digital certificates required to execute the transaction request from the found blockchain identity management system, and then obtains The node parameter and the transaction digital certificate are packaged together with the transaction parameter and sent to the blockchain for transaction execution, so that the transaction of the organization node on the plurality of blockchain networks can be effectively performed based on the virtual node.
  • Automated management is
  • the present invention also provides a computer readable storage medium storing a blockchain center control system, the blockchain center control system being executable by at least one processing device to cause The at least one processing device performs the steps of the blockchain-based multi-chain management method in the foregoing embodiment, and the specific implementation processes of the block chain-based multi-chain management method, such as steps S10, S20, and S30, are as described above. This will not be repeated here.
  • the foregoing embodiment method can be implemented by means of software plus a necessary general hardware platform, and can also be implemented by hardware, but in many cases, the former is A better implementation.
  • the technical solution of the present invention which is essential or contributes to the prior art, may be embodied in the form of a software product stored in a storage medium (such as ROM/RAM, disk,
  • the optical disc includes a number of instructions for causing a terminal device (which may be a cell phone, a computer, a server, an air conditioner, or a network device, etc.) to perform the methods described in various embodiments of the present invention.

Abstract

一种基于区块链的多链管理方法、系统、电子装置及存储介质,该方法包括:为每一个机构节点构建一个虚拟节点(S10),所述虚拟节点包括基于每一机构节点参与的处理不同事务和/或流程的区块链生成的节点群;为构建的各个虚拟节点构建区块链身份管理模块和区块链交易代理模块(S20);通过区块链身份管理模块将各个机构节点的身份信息连接到各个所述虚拟节点中区块链对应的区块链身份管理系统上(S30);由区块链交易代理模块通过所述区块链身份管理模块获取各个交易对应的身份信息,将获取的身份信息与对应的交易参数打包生成打包信息,并将所述打包信息发送至执行对应交易的目标区块链进行交易执行(S40)。该方法、系统、电子装置及存储介质实现了对多个区块链节点进行有效地自动化管理。

Description

基于区块链的多链管理方法、系统、电子装置及存储介质
优先权申明
本申请基于巴黎公约申明享有2016年10月27日递交的申请号为CN201610960022.1、名称为“基于区块链的多链管理方法及系统”中国专利申请的优先权,该中国专利申请的整体内容以参考的方式结合在本申请中。
技术领域
本发明涉及区块链技术领域,尤其涉及一种基于区块链的多链管理方法、系统、电子装置及存储介质。
背景技术
在区块链生态系统中,一个越来越不可避免的问题就是会有越来越多条区块链网络的存在。造成多链环境的存在主要是因为几个因素:1)很多区块链的节点会仅限于某个事物或流程的参与方,比如说一个供应链,问题是很多机构在一个业务场景都会有多条业务链,而大型机构又更会有多条业务场景,结果是一个公司会在不知不觉中生成多个散乱难以统一管理的区块链网络;2)由于对区块链本身的秒流量需求很高,所以某些区块链会采用数据分片方式把每日交易分布到在多条区块链上运行,同样会造成管理上的困难。
目前还没有真正的解决方案可以有效解决上述多链环境存在的问题。用户目前需要自行管理多个区块链节点,如果每个区块链有自身的身份验证机构,那么用户还要对自己在各个链上的身份进行储存备份,操作繁琐,数据容易出错,系统效能低下。
发明内容
本发明的主要目的在于提供一种基于区块链的多链管理方法、系统、电子装置及存储介质,旨在对同一机构节点的多个区块链节点进行有效地自动化管理。
本申请第一方面提供一种基于区块链的多链管理方法,所述方法包括以下步骤:
为每一个机构节点构建一个虚拟节点,所述虚拟节点包括基于每一机构节点参与的处理不同事务和/或流程的区块链生成的节点群;
为构建的各个虚拟节点构建区块链身份管理模块和区块链交易代理模块;
通过所述区块链身份管理模块将各个机构节点的身份信息连接到各个所述虚拟节点中区块链对应的区块链身份管理系统上;
由所述区块链交易代理模块通过所述区块链身份管理模块获取各个交易对应的身份信息,将获取的身份信息与对应的交易参数打包生成打包信息,并将所述打包信息发送至执行对应交易的目标区块链进行交易执行。
本申请第二方面提供一种用于管理多链的区块链中心控制系统,所述区块链中心控制系统包括:
构建模块,用于为每一个机构节点构建一个虚拟节点,所述虚拟节点包括基于每一机构节点参与的处理不同事务和/或流程的区块链生成的节点群;
区块链身份管理模块,用于将各个机构节点的身份信息连接到各个所述虚拟节点中区块链对应的区块链身份管理系统上;
区块链交易代理模块,用于通过所述区块链身份管理模块获取各个交易对应的身份信息,将获取的身份信息与对应的交易参数打包生成打包信息,并将所述打包信息发送至执行对应交易的目标区块链进行交易执行。
本申请第三方面提供一种电子装置,包括处理设备、存储设备及区块链中心控制系统,该区块链中心控制系统存储于该存储设备中,包括至少一个计算机可读指令,该至少一个计算机可读指令可被所述处理设备执行,以实现以下操作:
为每一个机构节点构建一个虚拟节点,所述虚拟节点包括基于每一机构节点参与的处理不同事务和/或流程的区块链生成的节点群;
为构建的各个虚拟节点构建区块链身份管理模块和区块链交易代理模块;
通过所述区块链身份管理模块将各个机构节点的身份信息连接到各个所述虚拟节点中区块链对应的区块链身份管理系统上;
由所述区块链交易代理模块通过所述区块链身份管理模块获取各个交易对应的身份信息,将获取的身份信息与对应的交易参数打包生成打包信息,并将所述打包信息发送至执行对应交易的目标区块链进行交易执行。
本申请第四方面提供一种计算机可读存储介质,其上存储有至少一个可被处理设备执行以实现以下操作的计算机可读指令:
为每一个机构节点构建一个虚拟节点,所述虚拟节点包括基于每一机构节点参与的处理不同事务和/或流程的区块链生成的节点群;
为构建的各个虚拟节点构建区块链身份管理模块和区块链交易代理模块;
通过所述区块链身份管理模块将各个机构节点的身份信息连接到各个所述虚拟节点中区块链对应的区块链身份管理系统上;
由所述区块链交易代理模块通过所述区块链身份管理模块获取各个交易对应的身份信息,将获取的身份信息与对应的交易参数打包生成打包信息,并将所述打包信息发送至执行对应交易的目标区块链进行交易执行。
本发明提出的基于区块链的多链管理方法、系统、电子装置及存储介质,通过将每一机构节点参与的处理不同事务和/或流程的区块链生成的节点群链接来为每一个机构节点构建一个虚拟节点,并为各个虚拟节点构建用于管理机构节点身份信息的区块链身份管理模块以及用于管理机构节点的交易事务的区块链交易代理模块,以基于区块链身份管理模块和区块链交易代理模块 进行多链管理。由于是把一个机构节点在多个区块链网络上的节点链接后搭建形成一个虚拟节点,基于该虚拟节点即可对该机构节点在多个区块链网络上的身份信息、交易信息等进行综合管理,而无需用户对自身在多个区块链网络上的身份进行逐一储存、备份等繁琐操作,实现了对多个区块链节点进行有效地自动化管理。
附图说明
图1为本发明基于区块链的多链管理方法的较佳实施例的应用环境示意图;
图2为本发明基于区块链的多链管理方法一实施例的流程示意图;
图3为本发明基于区块链的多链管理方法一实施例中构建的虚拟节点的示意图;
图4为本发明基于区块链的多链管理方法一实施例中的交易示意图;
图5为本发明区块链中心控制系统一实施例的功能模块示意图。
本发明目的的实现、功能特点及优点将结合实施例,参照附图做进一步说明。
具体实施方式
为了使本发明所要解决的技术问题、技术方案及有益效果更加清楚、明白,以下结合附图和实施例,对本发明进行进一步详细说明。应当理解,此处所描述的具体实施例仅仅用以解释本发明,并不用于限定本发明。
参阅图1所示,是本发明实现基于区块链的多链管理方法的较佳实施例的应用环境示意图。应用环境示意图包括电子装置1及终端设备2。电子装置1可以通过网络、近场通信技术等适合的技术与终端设备2进行数据交互。
终端设备2包括,但不限于,任何一种可与用户通过键盘、鼠标、遥控器、触摸板或者声控设备等方式进行人机交互的电子产品,例如,个人计算机、平板电脑、智能手机、个人数字助理(Personal Digital Assistant,PDA),游戏机、交互式网络电视(Internet Protocol Television,IPTV)、智能式穿戴式设备等。
电子装置1是一种能够按照事先设定或者存储的指令,自动进行数值计算和/或信息处理的设备。电子装置1可以是计算机、也可以是单个网络服务器、多个网络服务器组成的服务器组或者基于云计算的由大量主机或者网络服务器构成的云,其中云计算是分布式计算的一种,由一群松散耦合的计算机集组成的一个超级虚拟计算机。
在本实施例中,电子装置1包括,但不仅限于,可通过系统总线相互通信连接的存储设备11、处理设备12、及网络接口13。需要指出的是,图1仅示出了具有组件11-13的电子装置1,但是应理解的是,并不要求实施所有示出的组件,可以替代的实施更多或者更少的组件。
其中,存储设备11包括内存及至少一种类型的可读存储介质。内存为电子装置1的运行提供缓存;可读存储介质可为如闪存、硬盘、多媒体卡、卡型存储器等的非易失性存储介质。在一些实施例中,可读存储介质可以是电子装置1的内部存储单元,例如该电子装置1的硬盘;在另一些实施例中,该非易失性存储介质也可以是电子装置1的外部存储设备,例如电子装置1上配备的插接式硬盘,智能存储卡(Smart Media Card,SMC),安全数字(Secure Digital,SD)卡,闪存卡(Flash Card)等。本实施例中,存储设备11的可读存储介质通常用于存储安装于电子装置1的操作系统和各类应用软件,例如本申请一实施例中的区块链中心控制系统10的程序代码等。此外,存储设备11还可以用于暂时地存储已经输出或者将要输出的各类数据。
处理设备12在一些实施例中可以包括一个或者多个微处理器、微控制器、数字处理器等。该处理设备12通常用于控制电子装置1的运行,例如执行与终端设备2进行数据交互或者通信相关的控制和处理等。在本实施例中,处理设备12用于运行存储设备11中存储的程序代码或者处理数据,例如运行区块链中心控制系统10等。
网络接口13可包括无线网络接口或有线网络接口,该网络接口13通常用于在电子装置1与其他电子设备之间建立通信连接。本实施例中,网络接口13主要用于将电子装置1与一个或多个终端设备2相连,在电子装置1与一个或多个终端设备2之间建立数据传输通道和通信连接。
区块链中心控制系统10包括至少一个存储在存储设备11中的计算机可读指令,该至少一个计算机可读指令可被处理设备12执行,以实现本申请各实施例的图片识别的方法。如后续所述,该至少一个计算机可读指令依据其各部分所实现的功能不同,可被划为不同的逻辑模块。
在一实施例中,区块链中心控制系统10被处理设备12执行时,实现以下操作:首先为每一个机构节点构建一个虚拟节点,为构建的各个虚拟节点构建区块链身份管理模块和区块链交易代理模块;然后通过所述区块链身份管理模块将各个机构节点的身份信息连接到各个所述虚拟节点中区块链对应的区块链身份管理系统上;由所述区块链交易代理模块通过所述区块链身份管理模块获取各个交易对应的身份信息,将获取的身份信息与对应的交易参数打包生成打包信息,并将所述打包信息发送至执行对应交易的目标区块链进行交易执行,并将交易的相关信息及交易结果发送至终端设备2以显示给终端用户。
在一实施例中,区块链中心控制系统10存储在存储设备11中,包括至少一个存储在存储设备11中的计算机可读指令,该至少一个计算机可读指令可被处理设备12执行,以实现本申请各实施例的图片识别的方法。如后续所述,该至少一个计算机可读指令依据其各部分所实现的功能不同,可被划为不同的逻辑模块。
本发明提供一种基于区块链的多链管理方法。
参照图2,图2为本发明基于区块链的多链管理方法一实施例的流程示意图。
在一实施例中,该基于区块链的多链管理方法包括:
步骤S10,为每一个机构节点构建一个虚拟节点,所述虚拟节点包括基于每一机构节点参与的处理不同事务和/或流程的区块链生成的节点群;
由于很多机构在一个业务场景都会有多条业务链,而大型机构更会有多条业务场景,因此,往往同一个机构节点存在于多个用于处理不同事物或流程的区块链网络中。本实施例中,通过搭建虚拟节点的方式来把一个机构节点在多个区块链网络上的节点链接后形成一个虚拟节点。其中,所述虚拟节点包括基于每一机构节点参与的处理不同事务和/或流程的区块链生成的节点群。例如,在一种实施方式中,所述虚拟节点下的节点群可分成两类:一类是为解决流量问题而分片形成的同一机构节点在一个应用场景下的多个链节点,因为它们属于同一个应用场景而且所有链上的节点都一样,所以归纳成同一类节点群,这类节点群的特点是它们都所属同一个身份管理系统(身份管理系统不被节点掌控);另一类节点群是为支持某些事务或流程的区块链网络的多个链节点,这类链节点的特点是每条链的节点都不同(参与方不同),所以它们有可能被多个身份管理系统支撑,也有可能是用不同区块链技术实现的;
步骤S20,为构建的各个虚拟节点构建区块链身份管理模块和区块链交易代理模块;
步骤S30,通过所述区块链身份管理模块将各个机构节点的身份信息连接到各个所述虚拟节点中区块链对应的区块链身份管理系统上;
步骤S40,由所述区块链交易代理模块通过所述区块链身份管理模块获取各个交易对应的身份信息,将获取的身份信息与对应的交易参数打包生成打包信息,并将所述打包信息发送至执行对应交易的目标区块链进行交易执行。
为构建的各个虚拟节点构建一个区块链身份管理模块和区块链交易代理模块,该区块链身份管理模块用于将各个机构节点的身份信息如用户名、账号等以一对多的形式连接到各个虚拟节点中不同区块链对应的区块链身份管理系统上,由该区块链身份管理模块对各个机构节点的身份信息在各个虚拟节点中不同区块链上的调用、验证等进行管理。该区块链交易代理模块用于通过各个虚拟节点对应的区块链身份管理模块来获取各个交易对应的身份信息,并将获取的身份信息与对应的交易参数打包生成打包信息,将生成的打包信息发给执行对应交易的目标区块链进行交易执行。从而实现了在执行交易时,基于各个虚拟节点对应的区块链身份管理模块来完成交易对应的身份信息调取、验证等功能,并基于各个虚拟节点对应的区块链交易代理模块对交易执行的过程进行管控。
本实施例通过将每一机构节点参与的处理不同事务和/或流程的区块链生成的节点群链接来为每一个机构节点构建一个虚拟节点,并为各个虚拟节点 构建用于管理机构节点身份信息的区块链身份管理模块以及用于管理机构节点的交易事务的区块链交易代理模块,以基于区块链身份管理模块和区块链交易代理模块进行多链管理。由于是把一个机构节点在多个区块链网络上的节点链接后搭建形成一个虚拟节点,基于该虚拟节点即可对该机构节点在多个区块链网络上的身份信息、交易信息等进行综合管理,而无需用户对自身在多个区块链网络上的身份进行逐一储存、备份等繁琐操作,实现了对多个区块链节点进行有效地自动化管理。
进一步地,如图3所示,图3为本发明基于区块链的多链管理方法一实施例中构建的虚拟节点的示意图;在其他实施例中,上述步骤S10可以包括:
为每一个机构节点构建一个包括第一类节点群的虚拟节点,该第一类节点群由对应的机构节点参与的处理不同事务的第一类区块链组分片区生成。
为每一个机构节点构建一个包括第一类节点群的虚拟节点,该第一类节点群由对应的机构节点参与的处理不同事务的第一类区块链组分片区生成。例如图3所示,一个机构节点参与的第一类区块链组包括A类金融产品链、B类金融产品链、C类金融产品链,其中,A类金融产品链分片区划分成4个第一小链,分别是分片1、分片2、分片3及分片4,B类金融产品链、C类金融产品链均相同的分片区划分成4个第一小链,分片1、分片2、分片3及分片4,其中各个所述第一小链上都有该机构的节点存在。
进一步地,在其他实施例中,上述步骤S10还可以包括:
为所述虚拟节点构建第二类节点群,该第二类节点群由对应的机构节点参与的处理不同流程的第二类区块链组分参与者生成。
为每一个机构节点构建一个包括第二类节点群的虚拟节点,该第二类节点群由对应的机构节点参与的处理不同流程的第二类区块链组分参与者生成。例如图3所示,一个机构节点参与的第二类区块链组包括X流程链、Y流程链,其中,X流程链划分成8个第二小链,分别是参与方ABC链、参与方ACD链、参与方ABCE链、参与方ACE链、参与方AB链、参与方AC链、参与方AD链、参与方AE链,Y流程链划分成4个第二小链,分别是参与方AB链、参与方AC链、参与方AD链、参与方AE链,其中各个所述第二类区块链组里每个流程链里面的小链上都有该机构的节点存在。
进一步地,如图4所示,图4为本发明基于区块链的多链管理方法一实施例中的交易示意图;在其他实施例中,还包括:
为构建的各个虚拟节点构建对应的区块链身份管理模块和区块链交易代理模块,该区块链身份管理模块用于将各个机构节点的身份信息如用户名、账号等以一对多的形式连接到各个第一类区块链组和第二类区块链组对应的区块链身份管理系统上。例如图3所示,A类金融产品链对应的区块链身份管理系统为“A链身份管理”,B类金融产品链对应的区块链身份管理系统为“B链身份管理”,X流程链对应的区块链身份管理系统为“X链身份管理” 等等。当一个机构节点在一个区块链如A类金融产品链、B类金融产品链、X流程链等中发起交易请求后,该区块链对应的区块链交易代理模块通过该区块链对应的区块链身份管理模块获取各个交易对应的身份信息,并将获取的身份信息与对应的交易参数打包生成打包信息,将生成的打包信息发给执行对应交易的目标区块链进行交易执行。从而实现基于该虚拟节点即可对该机构节点在多个区块链网络上的身份信息、交易信息等进行综合有效地自动化管理。
进一步地,在其他实施例中,还包括:
当一个机构要向一个区块链中发起带有交易参数的交易请求后,由该机构将该交易请求发送给该区块链对应的区块链交易代理模块,并由该区块链交易代理模块通过区块链身份管理模块找到该区块链对应的区块链身份管理系统,并从找到的区块链身份管理系统获取执行该交易请求所需的节点参数及交易数字证书;
由该区块链交易代理模块将获取的节点参数及交易数字证书与所述交易参数一起进行打包发送至该区块链进行交易执行。
本实施例中,当一个机构节点在构建的虚拟节点一个区块链中发起带有交易参数的交易请求后,该区块链对应的区块链交易代理模块通过该区块链对应的区块链身份管理模块找到该区块链对应的区块链身份管理系统,并从找到的区块链身份管理系统获取执行该交易请求所需的节点参数及交易数字证书,再将获取的节点参数及交易数字证书与所述交易参数一起进行打包发送至该区块链进行交易执行,从而实现基于该虚拟节点即可对该机构节点在多个区块链网络上的交易进行有效地自动化管理。
本发明进一步提供一种用于管理多链的区块链中心控制系统。
参照图5,图5为本发明区块链中心控制系统一实施例的功能模块示意图。
在一实施例中,该区块链中心控制系统包括构建模块01、区块链身份管理模块02及区块链交易代理模块03,其中:
构建模块01,用于为每一个机构节点构建一个虚拟节点,所述虚拟节点包括基于每一机构节点参与的处理不同事务和/或流程的区块链生成的节点群;
由于很多机构在一个业务场景都会有多条业务链,而大型机构更会有多条业务场景,因此,往往同一个机构节点存在于多个用于处理不同事物或流程的区块链网络中。本实施例中,通过搭建虚拟节点的方式来把一个机构节点在多个区块链网络上的节点链接后形成一个虚拟节点。其中,所述虚拟节点包括基于每一机构节点参与的处理不同事务和/或流程的区块链生成的节点群。例如,在一种实施方式中,所述虚拟节点下的节点群可分成两类:一类是为解决流量问题而分片形成的同一机构节点在一个应用场景下的多个链节点,因为它们属于同一个应用场景而且所有链上的节点都一样,所以归纳成 同一类节点群,这类节点群的特点是它们都所属同一个身份管理系统(身份管理系统不被节点掌控);另一类节点群是为支持某些事务或流程的区块链网络的多个链节点,这类链节点的特点是每条链的节点都不同(参与方不同),所以它们有可能被多个身份管理系统支撑,也有可能是用不同区块链技术实现的;
构建模块01还为构建的各个虚拟节点构建区块链身份管理模块02和区块链交易代理模块03;其中,区块链身份管理模块02,用于将各个机构节点的身份信息连接到各个所述虚拟节点中区块链对应的区块链身份管理系统上;区块链交易代理模块03,用于通过所述区块链身份管理模块获取各个交易对应的身份信息,将获取的身份信息与对应的交易参数打包生成打包信息,并将所述打包信息发送至执行对应交易的目标区块链进行交易执行。
为构建的各个虚拟节点构建一个区块链身份管理模块和区块链交易代理模块,该区块链身份管理模块用于将各个机构节点的身份信息如用户名、账号等以一对多的形式连接到各个虚拟节点中不同区块链对应的区块链身份管理系统上,由该区块链身份管理模块对各个机构节点的身份信息在各个虚拟节点中不同区块链上的调用、验证等进行管理。该区块链交易代理模块用于通过各个虚拟节点对应的区块链身份管理模块来获取各个交易对应的身份信息,并将获取的身份信息与对应的交易参数打包生成打包信息,将生成的打包信息发给执行对应交易的目标区块链进行交易执行。从而实现了在执行交易时,基于各个虚拟节点对应的区块链身份管理模块来完成交易对应的身份信息调取、验证等功能,并基于各个虚拟节点对应的区块链交易代理模块对交易执行的过程进行管控。
本实施例通过将每一机构节点参与的处理不同事务和/或流程的区块链生成的节点群链接来为每一个机构节点构建一个虚拟节点,并为各个虚拟节点构建用于管理机构节点身份信息的区块链身份管理模块以及用于管理机构节点的交易事务的区块链交易代理模块,以基于区块链身份管理模块和区块链交易代理模块进行多链管理。由于是把一个机构节点在多个区块链网络上的节点链接后搭建形成一个虚拟节点,基于该虚拟节点即可对该机构节点在多个区块链网络上的身份信息、交易信息等进行综合管理,而无需用户对自身在多个区块链网络上的身份进行逐一储存、备份等繁琐操作,实现了对多个区块链节点进行有效地自动化管理。
进一步地,在其他实施例中,上述构建模块01还可以用于:
为每一个机构节点构建一个包括第一类节点群的虚拟节点,该第一类节点群由对应的机构节点参与的处理不同事务的第一类区块链组分片区生成。
为每一个机构节点构建一个包括第一类节点群的虚拟节点,该第一类节点群由对应的机构节点参与的处理不同事务的第一类区块链组分片区生成。例如,一个机构节点参与的第一类区块链组包括A类金融产品链、B类金融 产品链、C类金融产品链,其中,A类金融产品链分片区划分成4个第一小链,分别是分片1、分片2、分片3及分片4,B类金融产品链、C类金融产品链均相同的分片区划分成4个第一小链,分片1、分片2、分片3及分片4,其中各个所述第一小链上都有该机构的节点存在。
进一步地,在其他实施例中,上述构建模块01还可以用于:
为所述虚拟节点构建第二类节点群,该第二类节点群由对应的机构节点参与的处理不同流程的第二类区块链组分参与者生成。
为每一个机构节点构建一个包括第二类节点群的虚拟节点,该第二类节点群由对应的机构节点参与的处理不同流程的第二类区块链组分参与者生成。例如,一个机构节点参与的第二类区块链组包括X流程链、Y流程链,其中,X流程链划分成8个第二小链,分别是参与方ABC链、参与方ACD链、参与方ABCE链、参与方ACE链、参与方AB链、参与方AC链、参与方AD链、参与方AE链,Y流程链划分成4个第二小链,分别是参与方AB链、参与方AC链、参与方AD链、参与方AE链,其中各个所述第二类区块链组里每个流程链里面的小链上都有该机构的节点存在。
进一步地,在其他实施例中,还包括:
为构建的各个虚拟节点构建对应的区块链身份管理模块和区块链交易代理模块,该区块链身份管理模块用于将各个机构节点的身份信息如用户名、账号等以一对多的形式连接到各个第一类区块链组和第二类区块链组对应的区块链身份管理系统上。例如,A类金融产品链对应的区块链身份管理系统为“A链身份管理”,B类金融产品链对应的区块链身份管理系统为“B链身份管理”,X流程链对应的区块链身份管理系统为“X链身份管理”等等。当一个机构节点在一个区块链如A类金融产品链、B类金融产品链、X流程链等中发起交易请求后,该区块链对应的区块链交易代理模块通过该区块链对应的区块链身份管理模块获取各个交易对应的身份信息,并将获取的身份信息与对应的交易参数打包生成打包信息,将生成的打包信息发给执行对应交易的目标区块链进行交易执行。从而实现基于该虚拟节点即可对该机构节点在多个区块链网络上的身份信息、交易信息等进行综合有效地自动化管理。
进一步地,在其他实施例中,上述区块链交易代理模块03还可以用于:
当一个机构要向一个区块链中发起带有交易参数的交易请求后,通过对应的区块链身份管理模块找到该区块链对应的区块链身份管理系统,并从找到的区块链身份管理系统获取执行该交易请求所需的节点参数及交易数字证书;
将获取的节点参数及交易数字证书与所述交易参数一起进行打包发送至该区块链进行交易执行。
本实施例中,当一个机构节点在构建的虚拟节点一个区块链中发起带有交易参数的交易请求后,该区块链对应的区块链交易代理模块通过该区块链 对应的区块链身份管理模块找到该区块链对应的区块链身份管理系统,并从找到的区块链身份管理系统获取执行该交易请求所需的节点参数及交易数字证书,再将获取的节点参数及交易数字证书与所述交易参数一起进行打包发送至该区块链进行交易执行,从而实现基于该虚拟节点即可对该机构节点在多个区块链网络上的交易进行有效地自动化管理。
此外,本发明还提供一种计算机可读存储介质,所述计算机可读存储介质存储有区块链中心控制系统,所述区块链中心控制系统可被至少一个处理设备执行,以使所述至少一个处理设备执行如上述实施例中的基于区块链的多链管理方法的步骤,该基于区块链的多链管理方法的步骤S10、S20、S30等具体实施过程如上文所述,在此不再赘述。
需要说明的是,在本文中,术语“包括”、“包含”或者其任何其他变体意在涵盖非排他性的包含,从而使得包括一系列要素的过程、方法、物品或者装置不仅包括那些要素,而且还包括没有明确列出的其他要素,或者是还包括为这种过程、方法、物品或者装置所固有的要素。在没有更多限制的情况下,由语句“包括一个……”限定的要素,并不排除在包括该要素的过程、方法、物品或者装置中还存在另外的相同要素。
通过以上的实施方式的描述,本领域的技术人员可以清楚地了解到上述实施例方法可借助软件加必需的通用硬件平台的方式来实现,当然也可以通过硬件来实现,但很多情况下前者是更佳的实施方式。基于这样的理解,本发明的技术方案本质上或者说对现有技术做出贡献的部分可以以软件产品的形式体现出来,该计算机软件产品存储在一个存储介质(如ROM/RAM、磁碟、光盘)中,包括若干指令用以使得一台终端设备(可以是手机,计算机,服务器,空调器,或者网络设备等)执行本发明各个实施例所述的方法。
以上参照附图说明了本发明的优选实施例,并非因此局限本发明的权利范围。上述本发明实施例序号仅仅为了描述,不代表实施例的优劣。另外,虽然在流程图中示出了逻辑顺序,但是在某些情况下,可以以不同于此处的顺序执行所示出或描述的步骤。
本领域技术人员不脱离本发明的范围和实质,可以有多种变型方案实现本发明,比如作为一个实施例的特征可用于另一实施例而得到又一实施例。凡在运用本发明的技术构思之内所作的任何修改、等同替换和改进,均应在本发明的权利范围之内。

Claims (20)

  1. 一种基于区块链的多链管理方法,其特征在于,所述方法包括以下步骤:
    为每一个机构节点构建一个虚拟节点,所述虚拟节点包括基于每一机构节点参与的处理不同事务和/或流程的区块链生成的节点群;
    为构建的各个虚拟节点构建区块链身份管理模块和区块链交易代理模块;
    通过所述区块链身份管理模块将各个机构节点的身份信息连接到各个所述虚拟节点中区块链对应的区块链身份管理系统上;
    由所述区块链交易代理模块通过所述区块链身份管理模块获取各个交易对应的身份信息,将获取的身份信息与对应的交易参数打包生成打包信息,并将所述打包信息发送至执行对应交易的目标区块链进行交易执行。
  2. 如权利要求1所述的基于区块链的多链管理方法,其特征在于,还包括:
    当一个机构要向一个区块链中发起带有交易参数的交易请求后,由该机构将该交易请求发送给对应的区块链交易代理模块;
    由该区块链交易代理模块通过对应的区块链身份管理模块找到该区块链对应的区块链身份管理系统,并从找到的区块链身份管理系统获取执行该交易请求所需的节点参数及交易数字证书;
    由该区块链交易代理模块将获取的节点参数及交易数字证书与所述交易参数一起进行打包发送至该区块链进行交易执行。
  3. 如权利要求1或2所述的基于区块链的多链管理方法,其特征在于,所述为每一个机构节点构建一个虚拟节点的步骤包括:
    为每一个机构节点构建一个包括第一类节点群的虚拟节点,该第一类节点群由对应的机构节点参与的处理不同事务的第一类区块链组分片区生成。
  4. 如权利要求3所述的基于区块链的多链管理方法,其特征在于,所述为每一个机构节点构建一个虚拟节点的步骤还包括:
    为所述虚拟节点构建第二类节点群,该第二类节点群由对应的机构节点参与的处理不同流程的第二类区块链组分参与者生成。
  5. 如权利要求1或2所述的基于区块链的多链管理方法,其特征在于,所述通过所述区块链身份管理模块将各个机构节点的身份信息连接到各个所述虚拟节点中区块链对应的区块链身份管理系统上的步骤包括:
    通过所述区块链身份管理模块将各个机构节点的用户名以一对多的形式连接到各个所述虚拟节点中区块链对应的区块链身份管理系统上。
  6. 一种用于管理多链的区块链中心控制系统,其特征在于,所述区块链中心控制系统包括:
    构建模块,用于为每一个机构节点构建一个虚拟节点,所述虚拟节点包括基于每一机构节点参与的处理不同事务和/或流程的区块链生成的节点群;
    区块链身份管理模块,用于将各个机构节点的身份信息连接到各个所述虚拟节点中区块链对应的区块链身份管理系统上;
    区块链交易代理模块,用于通过所述区块链身份管理模块获取各个交易对应的身份信息,将获取的身份信息与对应的交易参数打包生成打包信息,并将所述打包信息发送至执行对应交易的目标区块链进行交易执行。
  7. 如权利要求6所述的区块链中心控制系统,其特征在于,所述区块链交易代理模块还用于:
    当一个机构要向一个区块链中发起带有交易参数的交易请求后,通过对应的区块链身份管理模块找到该区块链对应的区块链身份管理系统;
    从找到的区块链身份管理系统获取执行该交易请求所需的节点参数及交易数字证书;
    将获取的节点参数及交易数字证书与所述交易参数一起进行打包发送至该区块链进行交易执行。
  8. 如权利要求6或7所述的区块链中心控制系统,其特征在于,所述构建模块还用于:
    为每一个机构节点构建一个包括第一类节点群的虚拟节点,该第一类节点群由对应的机构节点参与的处理不同事务的第一类区块链组分片区生成。
  9. 如权利要求8所述的区块链中心控制系统,其特征在于,所述构建模块还用于:
    为所述虚拟节点构建第二类节点群,该第二类节点群由对应的机构节点参与的处理不同流程的第二类区块链组分参与者生成。
  10. 如权利要求6或7所述的区块链中心控制系统,其特征在于,所述区块链身份管理模块还用于:
    将各个机构节点的用户名以一对多的形式连接到各个所述虚拟节点中区块链对应的区块链身份管理系统上。
  11. 一种电子装置,包括处理设备、存储设备及区块链中心控制系统,该区块链中心控制系统存储于该存储设备中,包括至少一个计算机可读指令,该至少一个计算机可读指令可被所述处理设备执行,以实现以下操作:
    为每一个机构节点构建一个虚拟节点,所述虚拟节点包括基于每一机构 节点参与的处理不同事务和/或流程的区块链生成的节点群;
    为构建的各个虚拟节点构建区块链身份管理模块和区块链交易代理模块;
    通过所述区块链身份管理模块将各个机构节点的身份信息连接到各个所述虚拟节点中区块链对应的区块链身份管理系统上;
    由所述区块链交易代理模块通过所述区块链身份管理模块获取各个交易对应的身份信息,将获取的身份信息与对应的交易参数打包生成打包信息,并将所述打包信息发送至执行对应交易的目标区块链进行交易执行。
  12. 如权利要求11所述的电子装置,其特征在于,所述至少一个计算机可读指令还可被所述处理设备执行,以实现以下操作:
    当一个机构要向一个区块链中发起带有交易参数的交易请求后,由该机构将该交易请求发送给对应的区块链交易代理模块;
    由该区块链交易代理模块通过对应的区块链身份管理模块找到该区块链对应的区块链身份管理系统,并从找到的区块链身份管理系统获取执行该交易请求所需的节点参数及交易数字证书;
    由该区块链交易代理模块将获取的节点参数及交易数字证书与所述交易参数一起进行打包发送至该区块链进行交易执行。
  13. 如权利要求11或12所述的电子装置,其特征在于,所述为每一个机构节点构建一个虚拟节点包括:
    为每一个机构节点构建一个包括第一类节点群的虚拟节点,该第一类节点群由对应的机构节点参与的处理不同事务的第一类区块链组分片区生成。
  14. 如权利要求13所述的电子装置,其特征在于,所述为每一个机构节点构建一个虚拟节点还包括:
    为所述虚拟节点构建第二类节点群,该第二类节点群由对应的机构节点参与的处理不同流程的第二类区块链组分参与者生成。
  15. 如权利要求11或12所述的电子装置,其特征在于,所述通过所述区块链身份管理模块将各个机构节点的身份信息连接到各个所述虚拟节点中区块链对应的区块链身份管理系统上包括:
    通过所述区块链身份管理模块将各个机构节点的用户名以一对多的形式连接到各个所述虚拟节点中区块链对应的区块链身份管理系统上。
  16. 一种计算机可读存储介质,其上存储有至少一个可被处理设备执行以实现以下操作的计算机可读指令:
    为每一个机构节点构建一个虚拟节点,所述虚拟节点包括基于每一机构节点参与的处理不同事务和/或流程的区块链生成的节点群;
    为构建的各个虚拟节点构建区块链身份管理模块和区块链交易代理模块;
    通过所述区块链身份管理模块将各个机构节点的身份信息连接到各个所述虚拟节点中区块链对应的区块链身份管理系统上;
    由所述区块链交易代理模块通过所述区块链身份管理模块获取各个交易对应的身份信息,将获取的身份信息与对应的交易参数打包生成打包信息,并将所述打包信息发送至执行对应交易的目标区块链进行交易执行。
  17. 如权利要求16所述的计算机可读存储介质,其特征在于,所述至少一个计算机可读指令还可被所述处理设备执行,以实现以下操作:
    当一个机构要向一个区块链中发起带有交易参数的交易请求后,由该机构将该交易请求发送给对应的区块链交易代理模块;
    由该区块链交易代理模块通过对应的区块链身份管理模块找到该区块链对应的区块链身份管理系统,并从找到的区块链身份管理系统获取执行该交易请求所需的节点参数及交易数字证书;
    由该区块链交易代理模块将获取的节点参数及交易数字证书与所述交易参数一起进行打包发送至该区块链进行交易执行。
  18. 如权利要求16或17所述的计算机可读存储介质,其特征在于,所述为每一个机构节点构建一个虚拟节点包括:
    为每一个机构节点构建一个包括第一类节点群的虚拟节点,该第一类节点群由对应的机构节点参与的处理不同事务的第一类区块链组分片区生成。
  19. 如权利要求18所述的计算机可读存储介质,其特征在于,所述为每一个机构节点构建一个虚拟节点还包括:
    为所述虚拟节点构建第二类节点群,该第二类节点群由对应的机构节点参与的处理不同流程的第二类区块链组分参与者生成。
  20. 如权利要求16或17所述的计算机可读存储介质,其特征在于,所述通过所述区块链身份管理模块将各个机构节点的身份信息连接到各个所述虚拟节点中区块链对应的区块链身份管理系统上包括:
    通过所述区块链身份管理模块将各个机构节点的用户名以一对多的形式连接到各个所述虚拟节点中区块链对应的区块链身份管理系统上。
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