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Enhancing the efficiency and scalability of blockchain through probabilistic verification and clustering

机译:通过概率验证和聚类增强区块链的效率和可扩展性

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摘要

Blockchain is a disruptive technique that finds many applications in FinTech, IoT, and token economy. Because of the asynchrony, the competitive mining, and the indeterministic block propagation delay in networks, forks in the blockchain occur frequently, which not only waste a lot of computing resources but also result in potential security issues. This issue will greatly affect the efficiency of blockchain networks. In the meantime, when blockchain networks expand, the storage data for each node will be increasing dramatically. Participates are about to face the problem of storage limitation. Blockchain is hard to scale. This paper introduced PvScheme, a probabilistic verification scheme that could effectively reduce the block propagation delay and reduce the occurrence of blockchain forks. We further enhanced the security of PvScheme to provide reliable block delivery. We also analysed the resistance of PvScheme to fake blocks and double spending attacks. Furthermore, we proposed ICIStrategy, a multi-node collaborative storage strategy based on intra-cluster integrity. In ICIStrategy, we divided all participates into several clusters. Each cluster requires holding all data of the network, whereas a node within the cluster does not need to maintain data integrity. It aims to solve the storage pressure by reducing the amount data that each participate need to store and reduce communication overhead by collaboratively storing and verifying blocks through in-cluster nodes. We designed the experiments to study the performance of PvScheme and ICIStrategy. The experiment results illustrated that PvScheme could reduce the propagation delay of the standard protocol by 43.1% when the validation degree was 0.5. And we got the best effect when the validation degree is 0.9. It got a relatively lower forks and a relatively higher security at the same time, which achieved a compromise between the efficiency and security in the blockchain. According to the experimental results, ICIStrategy decreased effectively the storage of each node. And the larger the scale of networks, the less the storage of each node.
机译:BlockChain是一种在金融气,物联网,IOT和令牌经济中找到许多应用的中断技术。由于异步,竞争的挖掘和网络中的不确定的块传播延迟,块中的叉子频繁发生,这不仅浪费了大量的计算资源,而且导致潜在的安全问题。这个问题将极大地影响区块链网络的效率。同时,当区块链网络扩展时,每个节点的存储数据将急剧增加。参与即将面临存储限制的问题。区块链很难规模。本文介绍了PVScheme,概率验证方案,可以有效地降低块传播延迟并减少块叉的发生。我们进一步提高了PVScheme的安全性,提供可靠的块交付。我们还分析了PVScheme对假块和双重支出攻击的阻力。此外,我们提出了一种基于簇内完整性的多节点协同存储策略。在icistrategy,我们分为几个集群。每个群集都需要保存网络的所有数据,而群集中的节点不需要维护数据完整性。它旨在通过减少每次参与的量数据来解决储存压力,通过在群集节点中协同存储和验证块来验证和缩短通信开销。我们设计了研究PVScheme和Icistrategy的表现的实验。实验结果表明,当验证度为0.5时,PVScheme可以将标准方案的传播延迟降低43.1%。当验证度为0.9时,我们得到了最佳效果。它同时获得了相对较低的叉子和相对较高的安全性,这在区块链中的效率和安全性之间取得了折衷。根据实验结果,icistrategy有效地减少了每个节点的存储。网络的规模越大,每个节点的存储越少。

著录项

  • 来源
    《Information Processing & Management》 |2021年第5期|102650.1-102650.19|共19页
  • 作者单位

    College of Computer Science and Technology Harbin Institute of Technology Shenzhen China;

    College of Computer Science and Technology Harbin Institute of Technology Shenzhen China;

    College of Computer Science and Technology Harbin Institute of Technology Shenzhen China;

    Department of Computer Science Hong Kong Baptist University Hong Kong China;

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

    Blockchain; Fork; Security; Storage limitation; Clustering; Node collaboration;

    机译:区块链;叉子;安全;储存限制;聚类;节点协作;
  • 入库时间 2022-08-19 02:25:57

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