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Method and system for identification and mitigation of errors in non-line-of-sight distance estimation

机译:识别和减轻非视距距离估计中的错误的方法和系统

摘要

Ultra-wide bandwidth (UWB) transmission is a promising technology for indoor localization due to its fine delay resolution and obstacle-penetration capabilities. However, the presence of walls and other obstacles present a significant challenge in terms of localization, as they result in positively biased distance estimates. Measurement campaigns with FCC-compliant UWB radios can quantify effects of non-line-of-sight (NLOS) propagation. Features of waveforms measured during a campaign can be extracted for use in distinguishing between NLOS and line-of-sight situations in embodiments of the present invention. Embodiments further include classification and regression methods based on machine learning that improve the localization performance while relying solely on the received signal. Applications for systems employing an example embodiment of the invention include indoor or outdoor search and recovery with high accuracy and low cost.
机译:超宽带(UWB)传输具有良好的延迟分辨率和穿透障碍的能力,因此成为室内定位的一项有前途的技术。但是,墙壁和其他障碍物的存在对定位提出了巨大挑战,因为它们会导致距离估计值出现正偏。使用符合FCC的UWB无线电的测量活动可以量化非视距(NLOS)传播的影响。在本发明的实施例中,可以提取在活动期间测量的波形的特征以用于区分NLOS和视线情况。实施例还包括基于机器学习的分类和回归方法,其在仅依赖于接收信号的同时提高定位性能。采用本发明的示例实施例的系统的应用包括以高精度和低成本进行的室内或室外搜索和恢复。

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