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Efficient Byzantine Consensus Mechanism Based on Reputation in IoT Blockchain

机译:基于IOT区块链的声誉的高效拜占庭共识机制

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Blockchain technology has advanced rapidly in recent years and is now widely used in a variety of fields. Blockchain appears to be one of the best solutions for managing massive heterogeneous devices while achieving advanced data security and data reputation, particularly in the field of large-scale IoT (Internet of Things) networks. Despite the numerous advantages, there are still challenges while deploying IoT applications on blockchain systems due to the limited storage, power, and computing capability of IoT devices, and some of these problems are caused by the consensus algorithm, which plays a significant role in blockchain systems by ensuring overall system reliability and robustness. Nonetheless, most existing consensus algorithms are prone to poor node reliability, low transaction per second (TPS) rates, and scalability issues. Aiming at some critical problems in the existing consensus algorithms, this paper proposes the Efficient Byzantine Reputation-based Consensus (EBRC) mechanism to resolve the issues raised above. In comparison to traditional algorithms, we reinvented ways to evaluate node reliability and robustness and manage active nodes. Our experiments show that the EBRC algorithm has lower consensus delay, higher throughput, improved security, and lower verification costs. It offers new reference ideas for solving the Internet of Things+blockchain+Internet court construction problem.
机译:近年来,区块链技术迅速推进,现在广泛应用于各种领域。区块链似乎是管理大规模异构设备的最佳解决方案之一,同时实现高级数据安全性和数据信誉,特别是在大规模IOT(物联网)网络领域。尽管存在许多优点,但由于IOT设备的存储,电源和计算能力,在区块链系统上部署IOT应用程序仍存在挑战,并且这些问题中的一些问题是由共识算法引起的,这在区块链中起着重要作用通过确保整体系统可靠性和鲁棒性来实现系统。尽管如此,大多数现有的共识算法易于易于节点可靠性,低交易(TPS)率和可扩展性问题。针对现有共识算法中的一些关键问题,本文提出了基于拜占庭的信誉的高效基于信誉的共识(EBRC)机制,以解决上述问题。与传统算法相比,我们重新设计了评估节点可靠性和鲁棒性并管理活动节点的方法。我们的实验表明,EBRC算法的共识延迟较低,吞吐量越高,安全性和较低的验证成本。它提供了解决事物互联网+区块链+互联网法院施工问题的新参考思路。

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