基于无线传播测量的被动定位间接路径检测

Junyang Shen, A. Molisch
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引用次数: 1

摘要

精确定位的一个重要先决条件是辨别“直接路径”(DP),即从发射器到接收器的途中遭受单一反射过程的路径,从间接路径(ip)。本文研究了如何仅通过测量无线电传播参数,即到达时间(TOA)、出发方向(DOD)和到达方向(DOA)来区分dp和ip。这两个参数的任意组合都可以计算出一个反射点。我们建立规则来决定这些点之间的偏差有多大才能将路径视为IP。讨论并比较了几种不同的决策规则。本文导出了这些决策准则的闭型方程和结果的性能。仿真结果表明,在使用超宽带信号的常见定位场景下,该算法能够有效检测ip,显著提高定位精度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Indirect path detection of passive localization based on wireless propagation measurements
An important prerequisite for precision localization is to discern "direct paths" (DP), i.e., paths that suffer a single reflection process on their way from the transmitter to the receiver, from indirect paths (IPs). This paper studies how to distinguish between DPs and IPs purely based on measurements of radio propagation parameters, namely the time of arrival (TOA), direction of departure (DOD), and direction of arrival (DOA). Any combination of two of those parameters allows the computation of a reflection point. We establish rules to decide how large the deviations between these points might be to consider a path an IP. Several different decision rules are discussed and compared. The paper derives closed-form equations for these decision criteria and the resulting performance. Simulation results show that under common localization scenarios employing ultrawideband signals, the proposed algorithms can effectively detect IPs and significantly improve localization accuracy.
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