Payment channel networks (PCNs) such as the Lightning Network offer an appealing solution to the scalability problem faced by many cryptocurrencies operating on a blockchain such as Bitcoin. However, PCNs also inherit the stringent dependability requirements of blockchain. In particular, in order to mitigate liquidity bottlenecks as well as on-path attacks, it is important that payment channel networks maintain a high degree of decentralization. Motivated by this requirement, we conduct an empirical centrality analysis of the popular Lightning Network, and in particular, the betweenness centrality distribution of the routing system. Based on our extensive data set (using several millions of channel update messages), we implemented a TimeMachine tool which enables us to study the network evolution over time. We find that although the network is generally fairly decentralized, a small number of nodes can attract a significant fraction of the transactions, introducing skew. Furthermore, our analysis suggests that over the last two years, the centrality has increased significantly, e.g., the inequality (measured by the Gini index) has increased by more than 10%.
翻译:灯光网络等付款渠道网络(PCNs)为许多在Bitcoin等链条上运行的加密系统所面临的可缩缩问题提供了具有吸引力的解决方案。然而,多氯化萘还继承了块链的严格可靠性要求。特别是,为了减轻流动性瓶颈和反向袭击,付款渠道网络必须保持高度的权力下放。受这一要求的驱动,我们对广受欢迎的灯光网络进行了经验中心点分析,特别是路由系统的中心点分布。根据我们广泛的数据集(使用数百万个频道更新信息),我们采用了TimeMachine工具,使我们能够研究网络的演变过程。我们发现,尽管网络一般相当分散,但少数节点可以吸引相当一部分的交易,引入了扭曲。此外,我们的分析表明,过去两年来,核心点大大增加了,例如,不平等(以吉尼指数衡量)增加了10%以上。