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Hybrid Consensus Algorithm Optimization: A Mathematical Method Based on POS and PBFT and Its Application in Blockchain

机译:混合共识算法优化:基于POS和PBFT的数学方法及其在区块链中的应用

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Blockchain is a new technology for processing complex and disordered information with respect to business and other industrial applications. This work is aimed at studying the consensus algorithm of blockchain to improve the performance of blockchain. Despite their advantages, the proof of stake (POS) algorithm and the practical Byzantine fault tolerance (PBFT) algorithm have high latency, low throughput, and poor scalability. In this paper, a blockchain hybrid consensus algorithm which combines advantages of the POS and PBFT algorithms is proposed, and the algorithm is divided into two stages: sortition and witness. The proposed algorithm reduces the number of consensus nodes to a constant value by verifiable pseudorandom sortition and performs transaction witness between nodes. The algorithm is improved and optimized from three dimensions: throughput, latency, and scalability. The experimental results show that the improved hybrid consensus algorithm is significantly superior to the previous single algorithms for its excellent scalability, high throughput, and low latency.
机译:BlockChain是一种新技术,用于处理业务和其他工业应用的复杂和无序信息。这项工作旨在研究区间区块链的共识算法,以提高区块链的性能。尽管他们的优势,股权证明(POS)算法和实用的拜占庭式容错(PBFT)算法具有高延迟,低吞吐量和可扩展性差。本文提出了一种基区混合共识算法,其结合了POS和PBFT算法的优点,并且该算法分为两个阶段:排列和证人。所提出的算法通过可验证的伪随机排序将共识节点的数量减少到恒定值,并在节点之间执行交易证人。算法从三维提高和优化:吞吐量,延迟和可扩展性。实验结果表明,改进的混合共识算法显着优于先前的单一算法,以实现其出色的可扩展性,高吞吐量和低延迟。

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