树状传感器网络中分散检测的跨层设计

A. Tantawy, X. Koutsoukos, Gautam Biswas
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引用次数: 1

摘要

用于检测应用的无线传感器网络设计是一项具有挑战性的任务。一方面,经典的去中心化检测工作没有考虑实际的无线传感器网络。另一方面,实际的传感器网络设计方法将传感器网络的信号处理和通信方面分开处理,导致检测性能次优,因为网络资源没有得到有效分配。在这项工作中,我们试图跨越理论分散检测工作与实际传感器网络实现之间的差距。我们考虑了一种跨层方法,将信息质量、信道状态信息和剩余能量信息包含在树状拓扑传感器网络的设计过程中。设计目标是指定哪些传感器应该参与给定的检测任务,并计算相关的通信参数。我们比较了两种设计方案:(1)直接传输,原始数据在不压缩的情况下传输到融合中心;(2)网络内处理,数据在传输前被量化。针对这两种方案,我们设计了最优传输控制策略,协调传感器节点与融合中心之间的通信。我们展示了与经典的解耦和最大吞吐量设计方法相比,所提出的设计方案的性能改进。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Cross-Layer Design for Decentralized Detection in Tree Sensor Networks
The design of wireless sensor networks for detection applications is a challenging task. On one hand, classical work on decentralized detection does not consider practical wireless sensor networks. On the other hand, practical sensor network design approaches that treat the signal processing and communication aspects of the sensor network separately result in sub optimal detection performance because network resources are not allocated efficiently. In this work, we attempt to cross the gap between theoretical decentralized detection work and practical sensor network implementations. We consider a cross-layer approach, where the quality of information, channel state information, and residual energy information are included in the design process of tree-topology sensor networks. The design objective is to specify which sensors should contribute to a given detection task, and to calculate the relevant communication parameters. We compare two design schemes: (1) direct transmission, where raw data are transmitted to the fusion center without compression, and (2) in-network processing, where data is quantized before transmission. For both schemes, we design the optimal transmission control policy that coordinates the communication between sensor nodes and the fusion center. We show the performance improvement for the proposed design schemes over the classical decoupled and maximum throughput design approaches.
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