在无线传感器网络中使用 SPRT 和有序传输进行高能效信号检测

IF 2.9 Q2 ENGINEERING, ELECTRICAL & ELECTRONIC
Shailee Yagnik;Ramanarayanan Viswanathan;Lei Cao
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引用次数: 0

摘要

在具有多个传感器的分布式检测系统中,Blum 和 Sadler 提出的有序传输方案(OTS)与具有相同错误概率性能的固定样本量测试相比,需要的传输次数更少。在这项工作中,我们提出了一种使用截断顺序概率比测试(SPRT)的有序传输方案,称为 OSPRT。通过对两个设计参数的适当选择,OSPRT 的错误概率上限可以不超过 OTS 错误概率的一定百分比,但却能显著节省做出决定所需的平均样本数和信号传输的平均能量。与无序传输相比,有序传输的优越性是通过库尔贝-莱伯勒信息来量化的。对高斯噪声中中等强度恒定信号检测的仿真分析表明,OSPRT 的错误概率大大低于理论上限,仅比 OTS 的错误大一点,可以忽略不计。分析还表明,OSPRT 比原始 OTS 更节能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Energy Efficient Signal Detection Using SPRT and Ordered Transmissions in Wireless Sensor Networks
In a distributed detection system with multiple sensors, the ordered transmission scheme (OTS) proposed by Blum and Sadler requires a fewer number of transmissions in comparison with a fixed sample size test with the same probability of error performance. In this work, we propose an ordered transmission scheme using a truncated sequential probability ratio test (SPRT), termed as OSPRT. With a suitable choice of two design parameters, the probability of error of the OSPRT can be upper bounded by no more than a certain percentage above the probability of error of OTS, yet achieving significant savings in both the average number of samples needed to arrive at a decision, and the average energy in signal transmission. The superiority of ordered transmissions over unordered transmissions is quantified in terms of Kullback-Leibler information. Simulation analysis for the detection of a constant signal of moderate strength in Gaussian noise shows that the probability of error of OSPRT, which is substantially below the theoretical upper bound, is only negligibly larger than the OTS error. Analysis also shows that OSPRT is more energy efficient than the original OTS.
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来源期刊
CiteScore
5.30
自引率
0.00%
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审稿时长
22 weeks
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