Optimal design of timer-based, distributed selection with unknown number of nodes

Rajat Talak, N. Mehta
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引用次数: 1

Abstract

The timer-based selection scheme is a popular, simple, and distributed scheme that is used to select the best node from a set of available nodes. In it, each node sets a timer as a function of a local preference number called a metric, and transmits a packet when its timer expires. The scheme ensures that the timer of the best node, which has the highest metric, expires first. However, it fails to select the best node if another node transmits a packet within Δ s of the transmission by the best node. We derive the optimal timer mapping that maximizes the average success probability for the practical scenario in which the number of nodes in the system is unknown but only its probability distribution is known. We show that it has a special discrete structure, and present a recursive characterization to determine it. We benchmark its performance with ad hoc approaches proposed in the literature, and show that it delivers significant gains. New insights about the optimality of some ad hoc approaches are also developed.
节点数未知、基于时间的分布式选择优化设计
基于计时器的选择方案是一种流行的、简单的分布式方案,用于从一组可用节点中选择最佳节点。在该协议中,每个节点设置一个定时器,作为一个称为度量的本地优先级数的函数,并在定时器到期时发送数据包。该方案确保度量值最高的最佳节点的定时器首先过期。但是,如果在最佳节点的传输Δ s内有另一个节点传输数据包,则无法选择最佳节点。对于系统中节点数量未知但仅知道其概率分布的实际场景,我们推导出了使平均成功概率最大化的最优计时器映射。我们证明了它具有特殊的离散结构,并给出了一个递归表征来确定它。我们用文献中提出的特别方法对其性能进行基准测试,并表明它提供了显著的收益。本文还对一些特殊方法的最优性提出了新的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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