一种优化的状态通道网络结构以提高区块链算法的可扩展性

A. Ajorlou, A. Abbasfar
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引用次数: 2

摘要

如今,区块链已经非常普遍,广泛应用于各个领域。基于区块链的算法的特性,如去中心化和不受机构和政府控制,是吸引许多应用的主要原因。安全性和可扩展性的限制是这些系统开发面临的主要挑战。利用第二层网络是提高系统可扩展性的方法之一。这个网络可以通过在不同层的节点之间创建额外的通道来增加每秒的交易总数,而这些节点不需要在共识分类账上运行。本文给出了第二层网络的最优结构。在提出的结构中,我们尝试尽可能对称地分布第二层网络的参数。为了证明该结构的最优性,我们首先引入了最大可伸缩性界,然后计算了该结构的最大可伸缩性界。本文将展示第二层方法如何在没有任何关于节点之间事务速率的信息的情况下提高可伸缩性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An Optimized Structure of State Channel Network to Improve Scalability of Blockchain Algorithms
Nowadays, blockchain is very common and widely used in various fields. The properties of blockchain-based algorithms such as being decentralized and uncontrolled by institutions and governments, are the main reasons that has attracted many applications. The security and the scalability limitations are the main challenges for the development of these systems. Using second layer network is one of the various methods proposed to improve the scalability of these systems. This network can increase the total number of transactions per second by creating extra channels between the nodes that operate in a different layer not obligated to be on consensus ledger. In this paper, the optimal structure for the second layer network has been presented. In the proposed structure we try to distribute the parameters of the second layer network as symmetrically as possible. To prove the optimality of this structure we first introduce the maximum scalability bound, and then calculate it for the proposed structure. This paper will show how the second layer method can improve the scalability without any information about the rate of transactions between nodes.
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