分布式环境中的有效阈值检测:扩展抽象

Y. Emek, Amos Korman
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引用次数: 9

摘要

考虑一个分布式网络,其中事件发生在任意节点和不可预测的时间。发生在节点u的事件仅由节点u感知,而节点u又可以调用允许节点与其邻居交换消息的通信协议。我们对分布式计算固有的以下阈值检测(TD)问题感兴趣:给定某个阈值k, TD协议的目标是在(整个网络)至少发生k个事件时广播一个终止信号。在本文中,我们开发了一个随机的TD协议,该协议可能会以可以忽略不计的概率失败,但它在消息复杂性方面显着提高了先前的结果,即所有参与节点发送的消息总数。通过正确的参数选择,我们的随机协议变成了一个确定性的协议,保证了任何节点的低通信负担。在无线网络的许多应用中,这是一个主要的复杂性度量,据我们所知,在这类问题的背景下,它以前没有被限制过。
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Efficient threshold detection in a distributed environment: extended abstract
Consider a distributed network in which events occur at arbitrary nodes and at unpredicted times. An event occurring at node u is sensed only by u which in turn may invoke a communication protocol that allows nodes to exchange messages with their neighbors. We are interested in the following threshold detection (TD) problem inherent to distributed computing: Given some threshold k, the goal of a TD protocol is to broadcast a termination signal when at least k events have occurred (throughout the network). In this paper we develop a randomized TD protocol that may fail with negligible probability but which significantly improves previous results in terms of the message complexity, namely, the total number of messages sent by all participating nodes. With the right choice of parameters our randomized protocol turns into a deterministic one that guarantees low communication burden for any node. This is a principal complexity measure in many applications of wireless networks and which, to the best of our knowledge, has not been bounded before in the context of such problems.
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