Localization in wireless sensor networks under non line-of-sight propagation

Seshan Srirangarajan, A. Tewfik
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引用次数: 15

Abstract

This paper addresses ranging in indoor quasi-static sensor environments and presents a time-of-arrival (TOA) based ranging algorithm. A statistical model of the multipath channel in the form of the signal return and noise characterization is derived, and utilized to distinguish signal components from noise. The algorithm then uses multiple signal receptions at each base station, to differentiate between line-of-sight (LOS) and non-LOS components, and to accurately estimate the position of the LOS component in the received multipath signal. The location is estimated through a mathematical programming problem formulation. Using a synthesized bandwidth of 2 GHz, a 4-bit analog-to-digital converter (ADC) and with 5-10 dB signal-to-noise ratio (SNR), range estimation with sub-meter accuracy is achieved. Furthermore, the associated range estimation error does not increase with increase in the transmitter-receiver range
非视距传播下无线传感器网络的定位
针对室内准静态传感器环境下的测距问题,提出了一种基于到达时间(TOA)的测距算法。推导了以信号回波和噪声特征为形式的多径信道统计模型,并利用该模型来区分信号成分和噪声。然后,该算法在每个基站使用多个信号接收,以区分视距(LOS)和非视距分量,并准确估计视距分量在接收的多径信号中的位置。通过一个数学规划问题公式来估计位置。利用2 GHz的合成带宽,4位模数转换器(ADC)和5-10 dB的信噪比(SNR),实现了亚米精度的距离估计。此外,相关距离估计误差不随收发距离的增加而增加
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