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Improved Byzantine fault tolerance with fast consensus

Jaya Singh, Aditya Kumawat, Subramanian Venkatesan

Open publisher page 7 citations

Abstract

Abstract This article presents an improved Byzantine fault tolerance algorithm to tolerate Byzantine faults rapidly by minimizing the load of the network with a minimum cost that provides a very simple methodology to design Byzantine fault tolerance (BFT) state machine replication protocol with the most favorable flexibility. Although, we have taken the initiative of fault tolerance from earlier works and conversely perform a different approach than them. Our protocol just requires replicas forffaults instead of in previous Byzantine protocols to mitigate the attacks by faulty primary and replicas. It also improves prior algorithms in terms of different parameters and requires fewer cryptographic techniques. Similar to previous BFT protocols, this protocol also guarantees correctness.

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What this paper is about

Abstract This article presents an improved Byzantine fault tolerance algorithm to tolerate Byzantine faults rapidly by minimizing the load of the network with a minimum cost that provides a very simple methodology to design Byzantine fault tolerance (BFT) state machine replication protocol with the most favorable flexibility. Although, we have taken the initiative of fault tolerance from earlier works and conversely perform a different approach than them. Our protocol just requires replicas forffaults instead of in previous Byzantine protocols to mitigate the attacks by faulty primary and replicas. It also improves prior algorithms in terms of different parameters and requires fewer cryptographic techniques. Similar to previous BFT protocols, this protocol also guarantees correctness.

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Available abstract

Abstract This article presents an improved Byzantine fault tolerance algorithm to tolerate Byzantine faults rapidly by minimizing the load of the network with a minimum cost that provides a very simple methodology to design Byzantine fault tolerance (BFT) state machine replication protocol with the most favorable flexibility. Although, we have taken the initiative of fault tolerance from earlier works and conversely perform a different approach than them. Our protocol just requires replicas forffaults instead of in previous Byzantine protocols to mitigate the attacks by faulty primary and replicas. It also improves prior algorithms in terms of different parameters and requires fewer cryptographic techniques. Similar to previous BFT protocols, this protocol also guarantees correctness.

Key concepts: Byzantine fault tolerance, Quantum Byzantine agreement, Computer science, Correctness, Fault tolerance, Replication (statistics), Protocol (science), Distributed computing

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