合成孔径导航算法在多路径环境下的应用

W. Leong, K. Patel, J. Weinfield, D. Karnick
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引用次数: 2

摘要

射频导航系统的精度依赖于测距测量的精度,而在恶劣环境下,测距测量的精度受到多径传播的极大限制。合成孔径技术已被提出以减轻多路径的影响,利用用户运动与阵列处理和波束形成技术来隔离视线分量,从而减少传播的影响。这个概念有几个优点,包括即使在使用单元件天线存在更强的多径的情况下也能获得精确的瞄准线测量,并且减少了对信号带宽的依赖来缓解多径。为了测试该算法,我们设计了一个实验,其中驾驶用户从两个信标收集射频数据,一个作为控制,另一个测试合成孔径技术。在这里,我们量化了合成孔径技术在现实环境中对视线信号到达方向和多径的多普勒估计性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Synthetic aperture navigation algorithms applied to a driving user in multipath environments
The accuracy of radio frequency based navigation systems is dependent on the precision of ranging measurements, which are greatly limited by multipath propagation in severe environments. Synthetic aperture techniques have been proposed to mitigate the effects of multipath, leveraging user motion with array processing and beamforming techniques to isolate the line of sight component, thus reducing the impacts of propagation. This concept has several advantages, including the ability to obtain accurate line of sight measurements even in the presence of stronger multipath using a single element antenna, and reduced reliance on signal bandwidth to mitigate multipath. To test the algorithm, we designed an experiment in which RF data was collected by a driving user from two beacons, one serving as a control and the other testing synthetic aperture techniques. Here, we quantify Doppler estimation performance of the synthetic aperture techniques for the direction of arrival of the line of sight signal and of multipath in real-world environments.
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