Simulation Of Optimized Cluster Based PBFT Blockchain Validation Process

Rabeb Ben Othmen, Wassim Abbessi, Sofiane Ouni, Wafa Badreddine, Gilles Dequen
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Abstract

Recently, blockchain technology has emerged as a revolutionary innovation with its distributed ledger feature that allows applications to store and transmit data in a secure, transparent, and immutable manner. One of the main ideas of blockchain technology is the consensus mechanism for reaching an agreement on the state of the distributed ledger. In this context, Practical Byzantine Fault Tolerance (PBFT) is one of the most popular algorithms. However, it has a high communication overhead and poor scalability. To overcome these limits, this paper presents the effectiveness of our algorithm Random Cluster PBFT (RC-PBFT) through an evaluation of its performance under various network conditions. Our algorithm runs on randomly selected clusters, and the results are then broadcast on the blockchain network. The effectiveness of RC-PBFT is demonstrated by implementations on the NS-3 network simulator, and the tests performed show that our approach achieves significant improvements compared to the original PBFT algorithm.
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基于PBFT的优化聚类区块链验证过程仿真
最近,区块链技术以其分布式账本特性成为一项革命性的创新,它允许应用程序以安全、透明和不可变的方式存储和传输数据。区块链技术的主要思想之一是就分布式账本的状态达成一致的共识机制。在这种情况下,实用拜占庭容错(PBFT)是最流行的算法之一。然而,它具有较高的通信开销和较差的可扩展性。为了克服这些限制,本文通过评估随机聚类PBFT (RC-PBFT)算法在各种网络条件下的性能来展示其有效性。我们的算法在随机选择的集群上运行,然后结果在区块链网络上广播。通过在NS-3网络模拟器上的实现,验证了RC-PBFT算法的有效性,测试结果表明,与原始的PBFT算法相比,我们的方法取得了显著的改进。
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