Locality based approach to improve propagation delay on the Bitcoin peer-to-peer network

M. Sallal, Gareth Owenson, M. Adda
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引用次数: 22

Abstract

The delay overhead of transaction verification in Bitcoin, a peer-to-peer electronic currency system, is a complicated issue which makes the system vulnerable to double spend attacks. In this paper, we propose a new approach, that is based on how the clusters are formulated and the nodes define their membership, to improve the transaction propagation delay in the Bitcoin network. In this approach, the locality of connectivity in the Bitcoin network is increased by grouping Bitcoin nodes based on their geographical location. We show, through simulations, that location based-distance better defines clustering structures that optimize the performance of the transaction propagation delay. A key reason behind this improvement is mainly due to the reduction of the communication link cost measured by the distance between nodes. Compared to the existing clustering protocol (BCBSN) that we proposed in our previous work, location based clustering is more effective at reducing the transaction propagation delay.
基于局部性的比特币点对点网络传播延迟改进方法
比特币是一种点对点的电子货币系统,其交易验证的延迟开销是一个复杂的问题,使得系统容易受到双花攻击。在本文中,我们提出了一种新的方法,基于如何制定集群和节点定义其成员资格,以改善比特币网络中的交易传播延迟。在这种方法中,通过根据比特币节点的地理位置分组比特币节点来增加比特币网络中连接的局部性。我们通过模拟表明,基于位置的距离可以更好地定义集群结构,从而优化事务传播延迟的性能。这种改进背后的一个关键原因主要是由于减少了以节点之间的距离衡量的通信链路成本。与我们在之前的工作中提出的现有聚类协议(BCBSN)相比,基于位置的聚类在减少事务传播延迟方面更有效。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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