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公开(公告)号:US20230130074A1
公开(公告)日:2023-04-27
申请号:US17806646
申请日:2022-06-13
Inventor: Jiang Xiao , Bingru Si , Jiajie Zeng , Shijie Zhang , Hanhua Chen , Hai Jin
Abstract: The present invention relates to a network transmission optimization device for a graph-type blockchain, at least comprising a transaction processing module, a node managing module, and a route managing module, wherein the transaction processing module performs compression on a transaction, and transaction data obtained through the compression are transmitted among different clusters through a routing node selected by the route managing module from at least one cluster, wherein the at least one cluster is obtained through dividing plural nodes by the node managing module. The network transmission optimization method provides a transaction coding scheme to the existing graph-type blockchain systems, and improve use efficiency of network bandwidth by means of parallelized broadcast. The structured network topology of the network transmission optimization method is made to address delay among nodes, and is adaptive to dynamic joining and exit of nodes, thereby improving network transmission efficiency.
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公开(公告)号:US11792105B2
公开(公告)日:2023-10-17
申请号:US17249838
申请日:2021-03-16
Inventor: Jiang Xiao , Shijie Zhang , Jiajie Zeng , Hai Jin , Chen Yu
IPC: H04L45/02 , H04L45/12 , H04L45/48 , H04L45/74 , G06F18/243
CPC classification number: H04L45/02 , G06F18/24323 , H04L45/123 , H04L45/48 , H04L45/74
Abstract: The present invention relates to a method of building a dynamic overlay network topology based on cross-chain interaction between blockchains, at least comprising: selecting at least one gateway node and at least one ordinary node from at least one cross-chain interaction node; clustering the ordinary nodes into ordinary node clusters based on a clustering algorithm; building a structured network topology and cross-chain connections between the cross-chain interaction nodes based on the gateway node; performing topology building on the ordinary node clusters based on a breadth-first spanning tree algorithm.
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公开(公告)号:US12242634B2
公开(公告)日:2025-03-04
申请号:US17664760
申请日:2022-05-24
Inventor: Jiang Xiao , Jian Chang , Junpei Ni , Xiaohai Dai , Shijie Zhang , Hai Jin
Abstract: The present invention relates to a highly flexible, scalable multi-blockchain, hierarchical data-sharing and data-storing system, at least comprising a third-party blockchain system, a data-sharing blockchain system, and an application-layer client, wherein the data-sharing blockchain system performs data aggregation and hierarchical storage on shared data uploaded by the third-party blockchain system through accessing the data-sharing blockchain system, so as to allow the application-layer client to require the shared data from the data-sharing blockchain system. The disclosure herein creates a single reliable data-sharing blockchain apparatus based on blockchain systems, so as to facilitate aggregation of data coming from different blockchain systems, reduce node complexity and block data redundancy when data are acquired from multiple parties, and define different sharing rules for different data contents, thereby being adaptive to scenarios where data are shared among parties.
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公开(公告)号:US12124433B2
公开(公告)日:2024-10-22
申请号:US17806668
申请日:2022-06-13
Inventor: Jiang Xiao , Shuohua Dong , Jingtao Yue , Xiaohai Dai , Jian Chang , Shijie Zhang , Hai Jin
CPC classification number: G06F16/2379 , G06F16/27
Abstract: The present invention relates to an implementation method for graphic-blockchain-orientated hybrid consensus, at least comprising: calling at least one module to generate a new data block and broadcast it; calling at least one module to check and validate the received new block based on predetermined rules; calling at least one module to generate a void block; and calling at least one module to update a committee member list. The existing graphic blockchain can only achieve probabilistic consensus, yet the present invention achieves deterministic consensus on graphic blockchain for the first time, thereby reaching consensus faster. The present invention decouples generation and consensus of blocks for the first time, so that the two parts can be designed separately in a modularized manner. The present invention provides the first totally decentralized hybrid consensus algorithm in the graphic blockchain. This is unachievable to many existing graphic blockchain such as IOTA and Obyte.
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公开(公告)号:US12113699B2
公开(公告)日:2024-10-08
申请号:US17806646
申请日:2022-06-13
Inventor: Jiang Xiao , Bingru Si , Jiajie Zeng , Shijie Zhang , Hanhua Chen , Hai Jin
Abstract: The present invention relates to a network transmission optimization device for a graph-type blockchain, at least comprising a transaction processing module, a node managing module, and a route managing module, wherein the transaction processing module performs compression on a transaction, and transaction data obtained through the compression are transmitted among different clusters through a routing node selected by the route managing module from at least one cluster, wherein the at least one cluster is obtained through dividing plural nodes by the node managing module. The network transmission optimization method provides a transaction coding scheme to the existing graph-type blockchain systems, and improve use efficiency of network bandwidth by means of parallelized broadcast. The structured network topology of the network transmission optimization method is made to address delay among nodes, and is adaptive to dynamic joining and exit of nodes, thereby improving network transmission efficiency.
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公开(公告)号:US20220182308A1
公开(公告)日:2022-06-09
申请号:US17249838
申请日:2021-03-16
Inventor: Jiang Xiao , Shijie Zhang , Jiajie Zeng , Hai Jin , Chen Yu
IPC: H04L12/751 , H04L12/741 , H04L12/753 , H04L12/721 , G06K9/62
Abstract: The present invention relates to a method of building a dynamic overlay network topology based on cross-chain interaction between blockchains, at least comprising: selecting at least one gateway node and at least one ordinary node from at least one cross-chain interaction node; clustering the ordinary nodes into ordinary node clusters based on a clustering algorithm; building a structured network topology and cross-chain connections between the cross-chain interaction nodes based on the gateway node; performing topology building on the ordinary node clusters based on a breadth-first spanning tree algorithm.
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