On the divergence-cost function in distributed detection with a secrecy constraint

S. Maranò, V. Matta, P. Willett
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引用次数: 1

Abstract

An energy-constrained wireless sensor network (WSN) is engaged in a binary detection task. An eavesdropper intercepts the messages sent by the nodes towards the central unit, thus trying to infer the state of the nature scrutinized by the system. We show that, under appropriate countermeasures against the eavesdropper, and adopting appropriate energy saving strategies, the system performances are characterized by a divergence-cost function D(beta) belonging to the class of the Ali-Silvey distances, where beta is related to the total energy consumption of the network. We also show that the most economic way of conveying information for detection is characterized by the related divergence per unit cost function D = supbeta D(beta)/beta. The properties of these performance metrics are investigated and two scenarios of interest are addressed: parallel and multiple access channels.
带保密约束的分布式检测中的发散代价函数
一个能量受限的无线传感器网络(WSN)从事二进制检测任务。窃听者拦截节点向中央单元发送的消息,从而试图推断系统审查的自然状态。我们表明,在适当的窃听对策和采取适当的节能策略下,系统性能的特征是一个属于Ali-Silvey距离类的散度成本函数D(beta),其中beta与网络的总能耗有关。我们还表明,传达检测信息的最经济方式的特征是单位成本函数D = supbeta D(beta)/beta的相关散度。研究了这些性能指标的属性,并解决了两个感兴趣的场景:并行和多访问通道。
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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