3D Localization Algorithm Based on Linear Regression and Least Squares in NLOS Environments

Jiang Li, Lei Zhang
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引用次数: 1

Abstract

Based on the positive bias property of the time of arrival(TOA) measurement error caused by the non-line-of-sight(NLOS) propagation, a simple and effective three dimensional(3D) geometrical localization algorithm was proposed, the algorithm needs no prior knowledge of time delay distribution of TOA, and only linear regression was used to estimate the parameters of the relationship between the NLOS distance error and the true distance, thus, the approximate real distance between mobile terminal (MT) and base station (BS) was reduced, then, the 3D geometric localization of mobile terminal was carried out by the least square method. The experimental results shows the effectiveness of the algorithm, and the positional accuracy is far higher than the required accuracy by E-911 in NLOS environments.
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NLOS环境下基于线性回归和最小二乘的三维定位算法
基于非视距(NLOS)传播引起的到达时间(TOA)测量误差的正偏性,提出了一种简单有效的三维几何定位算法,该算法不需要预先知道TOA的时延分布,只使用线性回归估计NLOS距离误差与真距离之间的关系参数,从而实现了对到达时间(TOA)测量误差的精确定位。将移动终端(MT)与基站(BS)之间的近似真实距离进行约简,然后利用最小二乘法对移动终端进行三维几何定位。实验结果表明了该算法的有效性,定位精度远远高于E-911在近距离定位环境下所需要的精度。
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