Coarse estimation of the incident angle for VLP with an aperture-based receiver

Sander Bastiaens, H. Steendam
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引用次数: 1

Abstract

Recently, an estimation algorithm for the angle-of- arrival (AoA) for visible light positioning (VLP) was investigated [1]. In this paper, the authors considered an aperture-based receiver, and estimated for each light beacon the incident angle and polar angle between the beacon and the receiver using an iterative maximum likelihood (ML) based algorithm. For the iterative ML algorithm to converge, an accurate initial estimate was required. To obtain this initial estimate, a coarse ad hoc estimation algorithm for the incident angle was proposed. However, the proposed estimator for the incident angle was not able to deliver sufficiently accurate estimates for a wide range of incident angles, resulting in slow convergence of the iterative algorithm and large positioning errors. In this paper, we propose three novel estimators for the incident angle that are not only more accurate than the coarse estimator proposed in [1], but also have a wider estimation range.
基于孔径的VLP接收机入射角的粗略估计
近年来,研究了一种用于可见光定位(VLP)的到达角(AoA)估计算法[1]。在本文中,作者考虑了一种基于孔径的接收机,并使用基于迭代最大似然(ML)的算法估计了每个信标与接收机之间的入射角和极角。为了使迭代ML算法收敛,需要精确的初始估计。为了得到这个初始估计,提出了一种粗略的入射角估计算法。然而,所提出的入射角估计器无法在大入射角范围内提供足够精确的估计,导致迭代算法收敛速度慢,定位误差大。在本文中,我们提出了三种新的入射角估计,它们不仅比[1]中提出的粗估计更精确,而且具有更大的估计范围。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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