论文标题

闪电网络的蚂蚁路由可伸缩性

Ant Routing scalability for the Lightning Network

论文作者

Grunspan, Cyril, Lehéricy, Gabriel, Pérez-Marco, Ricardo

论文摘要

闪电网络的野心是为比特币网络提供第二层,以使用分散的协议立即,安全和匿名地确认,牢固,匿名地确认交易。当前的一些命题和实现在匿名,缩放和去世方面遇到了一些困难。在\ cite {grunspanperez}中提出了用于闪电网络的蚂蚁路由算法,用于最大程度地下放,匿名和潜在缩放。它解决了当前实施的几个问题,例如信标节点的频道信息更新和集中化。蚂蚁路由节点扮演着相同的角色,并且不需要有关网络拓扑的任何额外信息,而不是他们的直接邻居。 LN交易的目标是瞬间和匿名完成的。我们研究蚂蚁路由协议的缩放。我们提出了一个精确的实现,并使用AVL树有效的内存管理。我们评估算法的效率,并通过局部节点工作负载模拟估算节点的内存使用情况。我们证明,蚂蚁路由可以维持的每秒交易数量是数千个订单,这足以容纳全球支付网络。

The ambition of the Lightning Network is to provide a second layer to the Bitcoin network to enable transactions confirmed instantly, securely and anonymously with a world scale capacity using a decentralized protocol. Some of the current propositions and implementations present some difficulties in anonymity, scaling and decentalization. The Ant Routing algorithm for the Lightning Network was proposed in \cite{GrunspanPerez} for maximal decentralization, anonymity and potential scaling. It solves several problems of current implementation, such as channel information update and centralization by beacon nodes. Ant Routing nodes play all the same role and don't require any extra information on the network topology beside for their immediate neighbors. The goal of LN transactions are completed instantaneously and anonymously. We study the scaling of the Ant Routing protocol. We propose a precise implementation, with efficient memory management using AVL trees. We evaluate the efficiency of the algorithm and we estimate the memory usage of nodes by local node workload simulations. We prove that the number of transactions per second that Ant Routing can sustain is of the order of several thousands which is enough for a global payment network.

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