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Consensus Crash Testing: Exploring Ripple’s Decentralization Degree in Adversarial Environments

机译:共识碰撞测试:探索涟漪在对抗环境中的分散程度

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The inception of Bitcoin as a peer-to-peer payment system, and its underlying blockchain data-structure and protocol, has led to an increased interest in deploying scalable and reliable distributed- ledger systems that build on robust consensus protocols. A critical requirement of such systems is to provide enough fault tolerance in the presence of adversarial attacks or network faults. This is essential to guarantee liveness when the network does not behave as expected and ensure that the underlying nodes agree on a unique order of transactions over a shared state. In comparison with traditional distributed systems, the deployment of a distributed- ledger system should take into account the hidden game theoretical aspects of such protocols, where actors are competing with each other in an environment which is likely to experience various well-motivated malicious and adversarial attacks. Firstly, this paper discusses the fundamental principles of existing consensus protocols in the context of both permissioned and permissionless distributed- ledger systems. The main contribution of this work deals with observations from experimenting with Ripple’s consensus protocol as it is embodied in the XRP Ledger. The main experimental finding suggests that, when a low percentage of malicious nodes is present, the centralization degree of the network can be significantly relaxed ensuring low convergence times. Those findings are of particular importance when engineering a consensus algorithm that would like to balance security with decentralization.
机译:比特币的成立为点对点支付系统,及其潜在的区块链数据结构和协议导致了在稳健的共识协议上部署可扩展和可靠的分布仪系统的兴趣增加。这种系统的关键要求是在存在对抗性攻击或网络故障的情况下提供足够的容错。这对于保证网络不按预期行事的行为并确保基础节点同意共享状态的独特交易顺序时,这是至关重要的。与传统的分布式系统相比,分布式分布账系统的部署应考虑到这种协议的隐藏游戏理论方面,其中演员在可能在可能体验各种激烈的恶意和对抗性的环境中彼此竞争攻击。首先,本文讨论了在许可和允许的分布式分布式分析器系统的背景下存在的现有共识协议的基本原则。这项工作的主要贡献涉及从试验波纹共识协议的观察结果,因为它在XRP分类帐中体现了。主要实验发现表明,当存在低百分比的恶意节点时,网络的集中程度可以显着放松,确保低收敛时间。当使用分散化的共识算法时,这些发现特别重要。

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