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Stochastic Models and Wide-Area Network Measurements for Blockchain Design and Analysis

机译:区块链设计和分析的随机模型和广域网测量

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The Blockchain paradigm provides a popular mechanism for establishing trust and consensus in distributed environments. While Blockchain technology is currently primarily deployed in crypto-currency systems like Bitcoin, the concept is also expected to emerge as a key component of the Internet-of-Things (IoT), enabling novel applications in digital health, smart energy, asset tracking and smart transportation. As Blockchain networks evolve to industrial deployments with large numbers of geographically distributed nodes, the block transfer and processing delays arise as a critical issue which may create greater potential for forks and vulnerability to adversarial attacks. Motivated by these issues, we develop stochastic network models to capture the Blockchain evolution and dynamics and analyze the impact of the block dissemination delay and hashing power of the member nodes on Blockchain performance in terms of the overall block generation rate and required computational power for launching a successful attack. The results provide useful insight in crucial design issues, e.g., how to adjust the `difficulty-of-work' in the presence of delay so as to achieve a target block generation rate or appropriate level of immunity from adversarial attacks. We employ a combination of analytical calculations and simulation experiments to investigate both stationary and transient performance features, and demonstrate close agreement with measurements on a wide-area network testbed running the Ethereum protocol.
机译:区块链范式提供了一种流行的机制,用于在分布式环境中建立信任和共识。虽然区块链技术目前主要部署在比特币等加密货币系统中,但该概念也有望成为物联网(IoT)的关键组成部分,从而在数字健康,智能能源,资产跟踪和智能化方面实现新颖的应用。智能交通。随着区块链网络发展为具有大量地理上分散的节点的工业部署,区块传输和处理延迟成为一个关键问题,可能会产生更大的潜在分叉和对抗性攻击的脆弱性。受这些问题的驱使,我们开发了随机网络模型来捕获区块链的演变和动态,并根据整体区块生成率和启动所需的计算能力来分析区块传播延迟和成员节点的哈希能力对区块链性能的影响。成功的攻击。结果为关键设计问题提供了有用的见解,例如,如何在存在延迟的情况下调整``工作难度'',以达到目标区块生成率或适当的抵抗对抗攻击的能力。我们结合分析计算和模拟实验来研究稳态和瞬态性能特征,并证明与运行以太坊协议的广域网测试平台上的测量结果非常吻合。

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