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Sharding blockchain = fundamentals and applications /
紀錄類型:
書目-語言資料,印刷品 : Monograph/item
正題名/作者:
Sharding blockchain/ by Yizhong Liu, Dongyu Li, Jianwei Liu.
其他題名:
fundamentals and applications /
作者:
Liu, Yizhong.
其他作者:
Liu, Jianwei.
出版者:
Singapore :Springer Nature Singapore : : 2025.,
面頁冊數:
xviii, 335 p. :ill. (some col.), digital ; : 24 cm.;
Contained By:
Springer Nature eBook
標題:
Artificial Intelligence. -
電子資源:
https://doi.org/10.1007/978-981-96-3686-0
ISBN:
9789819636860
Sharding blockchain = fundamentals and applications /
Liu, Yizhong.
Sharding blockchain
fundamentals and applications /[electronic resource] :by Yizhong Liu, Dongyu Li, Jianwei Liu. - Singapore :Springer Nature Singapore :2025. - xviii, 335 p. :ill. (some col.), digital ;24 cm.
Introduction -- Building Blocks of Sharding Blockchain Systems -- Shard Reconfiguration Protocol Realizing Fairness -- Shard Reconfiguration Protocol Against Proof-of-Work Solution Withhold Attack -- Secure and Scalable Sharding Blockchain Utilizing Aggregation-Supported Multi-Signature -- Secure and Scalable Sharding Blockchain with a Formal Security Framework -- Secure and Scalable Sharding Blockchain Based on Cross-Shard Byzantine Fault Tolerance -- Sharding Blockchain Application in Cross-Domain Data Sharing Under Zero-Trust Cloud-Edge-End Environments -- Sharding Blockchain Application in Cross-Domain Authentication Management System -- Sharding Blockchain Application in Consensus Control and Formation Flying of Intelligent Systems.
This book presents a novel approach by decoupling the various modules of sharding blockchains and providing detailed insights into the functions and design methodologies of each key module. Previous sharding blockchain solutions suffered from tight coupling between functional modules, making it challenging to achieve optimal security, performance, and scalability. Building upon this foundation, the authors present a universal composable method for composing sharding blockchains in a flexible manner. Additionally, the authors propose a novel shard member configuration method that leverages proof-of-work and verifiable distributed randomness to guarantee that each shard maintains a sufficient proportion of honest nodes, preventing it from falling below the safety threshold. Furthermore, the authors offer a complete design methodology for creating secure and scalable sharding blockchains. This includes reducing the complexity of intra-shard transaction processing through aggregation-supported multi-signature. The authors ensure optimal sharding of computational, communication, and storage resources within a formal security framework. To facilitate flexible cross-shard transaction processing, the authors introduce a new cross-shard Byzantine fault tolerance protocol. Lastly, the authors explore practical applications of sharding blockchains in typical scenarios. In the context of zero-trust cloud-edge-end scenarios, the authors demonstrate how sharding blockchains enable scalable data cross-shard sharing. Simultaneously, the authors design a secure and universally applicable cross-domain device authentication scheme.
ISBN: 9789819636860
Standard No.: 10.1007/978-981-96-3686-0doiSubjects--Topical Terms:
646849
Artificial Intelligence.
LC Class. No.: QA76.9.B56
Dewey Class. No.: 005.7588
Sharding blockchain = fundamentals and applications /
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Introduction -- Building Blocks of Sharding Blockchain Systems -- Shard Reconfiguration Protocol Realizing Fairness -- Shard Reconfiguration Protocol Against Proof-of-Work Solution Withhold Attack -- Secure and Scalable Sharding Blockchain Utilizing Aggregation-Supported Multi-Signature -- Secure and Scalable Sharding Blockchain with a Formal Security Framework -- Secure and Scalable Sharding Blockchain Based on Cross-Shard Byzantine Fault Tolerance -- Sharding Blockchain Application in Cross-Domain Data Sharing Under Zero-Trust Cloud-Edge-End Environments -- Sharding Blockchain Application in Cross-Domain Authentication Management System -- Sharding Blockchain Application in Consensus Control and Formation Flying of Intelligent Systems.
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This book presents a novel approach by decoupling the various modules of sharding blockchains and providing detailed insights into the functions and design methodologies of each key module. Previous sharding blockchain solutions suffered from tight coupling between functional modules, making it challenging to achieve optimal security, performance, and scalability. Building upon this foundation, the authors present a universal composable method for composing sharding blockchains in a flexible manner. Additionally, the authors propose a novel shard member configuration method that leverages proof-of-work and verifiable distributed randomness to guarantee that each shard maintains a sufficient proportion of honest nodes, preventing it from falling below the safety threshold. Furthermore, the authors offer a complete design methodology for creating secure and scalable sharding blockchains. This includes reducing the complexity of intra-shard transaction processing through aggregation-supported multi-signature. The authors ensure optimal sharding of computational, communication, and storage resources within a formal security framework. To facilitate flexible cross-shard transaction processing, the authors introduce a new cross-shard Byzantine fault tolerance protocol. Lastly, the authors explore practical applications of sharding blockchains in typical scenarios. In the context of zero-trust cloud-edge-end scenarios, the authors demonstrate how sharding blockchains enable scalable data cross-shard sharing. Simultaneously, the authors design a secure and universally applicable cross-domain device authentication scheme.
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