Effect of beampattern on directional beacon based position location algorithm for UWB systems

S.F.A. Shah, A. Tewfik
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Abstract

Motivated from the results of previous studies, we aim to evaluate the effect of antenna beampattern on the performance of directional beacon based position location algorithm in this paper. We make use of earliest arrivals to detect the line of sight components. Directional beacons are generated using four element uniform linear antenna array (ULA) at the transmitting nodes. To achieve narrow beamwidth, we design the beampattern using Dolph-Chebyshev method that provides a way to tradeoff beamwidth for sidelobes level in an optimum manner. Simulation results show that the minimum error in time estimation (consequently position location) does not occur at the minimum beamwidth. The increase in range estimation error at the minimum beamwidth is due to the significant sidelobes level at this point. Through simulation results, we show that the minimum error in range estimation occurs at 0.33 rad beamwidth for 20 dB SNR case.
波束方向对超宽带定向信标定位算法的影响
在前人研究成果的基础上,本文旨在评估天线波束方向图对定向信标定位算法性能的影响。我们利用最早到达的位置来检测视线成分。定向信标是在发射节点使用四元均匀线性天线阵列(ULA)产生的。为了实现窄波束宽度,我们使用dolphi - chebyshev方法设计波束模式,该方法提供了一种以最佳方式权衡波束宽度和旁瓣电平的方法。仿真结果表明,在波束宽度最小时,时间估计误差最小(即定位误差最小)。在最小波束宽度处距离估计误差的增加是由于该点旁瓣水平显著。仿真结果表明,在信噪比为20 dB的情况下,波束宽度为0.33时距离估计误差最小。
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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