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QPBFT: Practical Byzantine Fault Tolerance Consensus Algorithm Based on Quantified-Role

机译:QPBFT:基于量化 - 角色的实用拜占庭式容错共识算法

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Practical Byzantine Fault Tolerance (PBFT) is an optional consensus protocol for consortium blockchains scenarios where strong consistency is required. However, it also inevitably incurs high energy consumption, low efficiency and poor scalability. What is more, the reliability of the consensus node cannot be guaranteed by itself. For addressing these problems, this paper proposes practical byzantine consensus algorithm based on quantified-role (QPBFT), which can achieve the following advantages: (1) Improving the security and reliability of the blockchain. The reliability attributes of nodes are quantified based on analytic hierarchy process (AHP), those nodes with high reliability evaluation scores are more likely to participate in block production by introduction of the quantified-role, which can ensure the reliability of blockchain network; (2) Realizing high efficiency and low energy consumption. Voting mechanism is adopted to simplify and optimize the PBFT consensus process; (3) Implementing adaptation to dynamic network environments. Management nodes, voting nodes, candidate nodes, and ordinary nodes are dynamically adjusted according to node reliability evaluation score for optimizing consensus performance. The paper demonstrates the security feature including reliability and fault tolerance. Meanwhile, simulation experiments are conducted to validate the higher efficiency and less resource consumption of QPBFT compared with PBFT.
机译:实用的拜占庭式容错(PBFT)是一个可选的共识协议,用于集团区块中需要强大的一致性。然而,它也不可避免地引发了高能耗,低效率和可扩展性差。更重要的是,自身不能保证共识节点的可靠性。为了解决这些问题,本文提出了基于量化作用(QPBFT)的实用拜占庭共识算法,这可以实现以下优点:(1)提高区块链的安全性和可靠性。节点的可靠性属性基于分析层次处理(AHP)量化,具有高可靠性评估分数的那些节点通过引入量化的作用,更有可能参与块生产,这可以确保区块链网络的可靠性; (2)实现高效率和低能耗。采用投票机制来简化和优化PBFT共识过程; (3)实施适应动态网络环境。管理节点,投票节点,候选节点和普通节点是根据节点可靠性评估分数动态调整,以优化共识性能。本文演示了安全特征,包括可靠性和容错能力。同时,与PBFT相比,进行了模拟实验以验证QPBFT的较高效率和资源消耗。

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