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Accurate and Simple Wireless Localizations Based on Time Product of Arrival in the DDM-NLOS Propagation Environment

机译:在DDM-NLOS传播环境中基于到达时间乘积的精确而简单的无线定位

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摘要

Wireless localization has become an important issue in internet of things. However, its performance degrades significantly when there are only non-line-of-sight (NLOS) propagation paths instead of line-of-sight (LOS) propagation paths. Therefore, this paper proposes a novel localization algorithm to improve the localization accuracy, where we assume that the NLOS error satisfies the requirement of distance dependent model (DDM). In order to obtain a stronger NLOS tolerance than conventional methods, the proposed algorithm analyzes the localization geometry and employs a new localization parameter, namely the time product of arrival (TPOA), to construct the linear localization equation group (LLEQ). Meanwhile, a simple least-squares (LS) principle is applied to solve this LLEQ, resulting in a low complexity. We verify our algorithm by computer simulations, and the result demonstrates that the proposed algorithm yields a better performance than traditional algorithms in the NLOS-DDM environment.
机译:无线本地化已成为物联网中的重要问题。但是,当仅存在非视线(LOS)传播路径而不是视线(LOS)传播路径时,其性能会大大降低。因此,本文提出一种新颖的定位算法以提高定位精度,其中我们假设NLOS误差满足距离相关模型(DDM)的要求。为了获得比常规方法更强的NLOS容忍度,该算法分析了定位几何形状,并采用了新的定位参数,即到达时间乘积(TPOA),以构建线性定位方程组(LLEQ)。同时,采用简单的最小二乘(LS)原理来解决该LLEQ,从而降低了复杂度。我们通过计算机仿真验证了我们的算法,结果表明该算法在NLOS-DDM环境中比传统算法具有更好的性能。

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