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Latency performance modeling and analysis for hyperledger fabric blockchain network

机译:超级介入性能模拟和分析对超载ber结构区块链网络

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摘要

Blockchain has been one of the most attractive technologies for many modern and even future applications. Fabric, an open-source framework to implement the permissioned enterprise-grade blockchain, is getting increasing attention from innovators. The latency performance is crucial to the Fabric blockchain in assessing its effectiveness. Many empirical studies were conducted to analyze this performance based on different hardware platforms. These experimental results are not comparable as they are highly dependent on the underlying networks. Moreover, theoretical analysis on the latency of Fabric blockchain still receives much less attention. This paper provides a novel theoretical model to calculate the transaction latency under various network configurations such as block size, block interval, etc. Subsequently, we validate the proposed latency model with experiments, and the results show that the difference between analytical and experimental results is as low as 6.1%. We also identify some performance bottlenecks and give insights from the developer's perspective.
机译:BlockChain是许多现代甚至未来应用的最具吸引力的技术之一。 Fabric是一个用于实施许可企业级区块链的开源框架,正在越来越越来越涌入创新者。延迟性能对于织物区块链来评估其有效性至关重要。进行了许多实证研究,以根据不同的硬件平台分析这种性能。这些实验结果与他们高度依赖于底层网络的实验结果不相当。此外,对织物区块链延迟的理论分析仍然受到更少的关注。本文提供了一种新颖的理论模型,用于计算诸如块大小,块间隔等的各种网络配置下的交易延迟。随后,我们用实验验证所提出的延迟模型,结果表明分析和实验结果之间的差异是低至6.1%。我们还确定了一些性能瓶颈,并从开发人员的角度提供见解。

著录项

  • 来源
    《Information Processing & Management》 |2021年第1期|102436.1-102436.13|共13页
  • 作者单位

    Key Lab of Optical Fiber Sensing and Communications University of Electronic Science and Technology of China Chengdu China;

    Key Lab of Optical Fiber Sensing and Communications University of Electronic Science and Technology of China Chengdu China Agile and Intelligent Computing Key Laboratory of Sichuan Province Chengdu China;

    Key Lab of Optical Fiber Sensing and Communications University of Electronic Science and Technology of China Chengdu China;

    Key Lab of Optical Fiber Sensing and Communications University of Electronic Science and Technology of China Chengdu China;

    Key Lab of Optical Fiber Sensing and Communications University of Electronic Science and Technology of China Chengdu China Peng Cheng Laboratory Shenzhen China;

    Department of Computer Science and Technology Fuzhou University China Department of Computer Science Electrical and Space Engineering Lulea University of Technology Sweden School of Electrical and Data Engineering University Technology Sydney Australia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Permissioned blockchain; Hyperledger fabric; Latency performance; Theoretical analysis;

    机译:允许区块链;过度林业面料;延迟表现;理论分析;

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