In this work, we consider distributed agreement tasks in microbial distributed systems under stochastic population dynamics and competitive interactions. We examine how competitive exclusion can be used to solve distributed agreement tasks in the microbial setting. To this end, we develop a new technique for analyzing the time to reach competitive exclusion in systems with two competing species under biologically realistic population dynamics. We use this technique to analyze a protocol that exploits competitive interactions to solve approximate majority consensus efficiently in microbial systems. To corroborate our analytical results, we use computer simulations to show that these consensus dynamics occur within practical time scales.
翻译:在这项工作中,我们考虑根据随机人口动态和竞争性互动,在微生物分布系统中分配协议任务。我们研究如何利用竞争性排斥解决微生物环境中分配协议任务。为此,我们开发了一种新的技术,用于分析在生物现实的人口动态下与两个相互竞争的物种在系统中实现竞争性排斥的时间。我们利用这一技术分析一项议定书,利用竞争性互动有效解决微生物系统中大约多数人共识的问题。为了证实我们的分析结果,我们利用计算机模拟来表明这些共识动态是在实际时间范围内发生的。