Simulation of Dissemination Strategies on Temporal Networks

Luca Serena, Mirko Zichichi, Gabriele D’angelo, S. Ferretti
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引用次数: 6

Abstract

In distributed environments, such as distributed ledgers technologies and other peer-to-peer architectures, communication represents a crucial topic. The ability to efficiently disseminate contents is strongly influenced by the type of system architecture, the protocol used to spread such contents over the network and the actual dynamicity of the communication links (i.e. static vs. temporal nets). In particular, the dissemination strategies either focus on achieving an optimal coverage, minimizing the network traffic or providing assurances on anonymity (that is a fundamental requirement of many cryptocurrencies). In this work, the behaviour of multiple dissemination protocols is discussed and studied through simulation. The performance evaluation has been carried out on temporal networks with the help of LUNES-temporal, a discrete event simulator that allows to test algorithms running on a distributed environment. The experiments show that some gossip protocols allow to either save a considerable number of messages or to provide better anonymity guarantees, at the cost of a little lower coverage achieved and/or a little increase of the delivery time.
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时间网络上传播策略的仿真
在分布式环境中,例如分布式账本技术和其他点对点架构,通信是一个至关重要的主题。有效传播内容的能力受到系统架构类型、用于在网络上传播此类内容的协议以及通信链路的实际动态(即静态网络与时态网络)的强烈影响。特别是,传播策略要么专注于实现最佳覆盖,最小化网络流量,要么提供匿名保证(这是许多加密货币的基本要求)。在本工作中,通过仿真讨论和研究了多种传播协议的行为。性能评估是在LUNES-temporal的帮助下在时间网络上进行的,LUNES-temporal是一个离散事件模拟器,允许测试在分布式环境中运行的算法。实验表明,一些八卦协议允许保存相当数量的消息或提供更好的匿名性保证,但代价是覆盖率较低和/或交付时间略有增加。
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