基于概率数据关联的射频多径室内地理定位

D. Gustafson, M. Bottkol, J. R. Parry, J. Elwell, T.Q. Nguyen
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引用次数: 4

摘要

考虑了一个室内导航问题,其目标是在多路径环境中使用在固定和已知位置的一组射频(RF)源发送和接收的信号实时跟踪应答标签。当前的系统依赖于直接路径信号的检测,并将多路径信号视为杂散。我们提出了一种利用多径信号在未检测到直接路径时保持跟踪的方法。该方法依赖于间接路径长度最小复杂度模型参数的估计。对平面上任意数量的镜面反射产生的间接路径长度进行建模时,最多需要三个参数。使用概率数据关联滤波器(PDAF)来减轻由噪声、紧密间隔的路径长度和路径长度交叉引起的不确定性。利用射线跟踪数据合成的带限信号进行了仿真测试。性能与使用蒙特卡罗分析的优化直接路径滤波器进行了比较。无需预先了解多路径参数或室内基础设施,测量仅限于到达时间(TOA)。结果表明,当一条或多条直接路径被阻塞时,PDAF的性能始终优于直接路径过滤器。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Indoor geolocation using RF multipath with probabilistic data association
An indoor navigation problem is considered where the objective is real-time tracking of transponding tags in multipath environments using signals sent from and received at a set of radio frequency (RF) sources at fixed and known locations. Current systems depend on detection of direct path signals and treat multipath signals as spurious. We present an approach for exploiting the multipath signals to maintain tracking when direct paths are undetected. The method relies on estimating the parameters of minimum-complexity models of the indirect path lengths. A maximum of three parameters is required to model indirect path lengths arising from an arbitrary number of specular reflections off planar surfaces. A probabilistic data association filter (PDAF) is used to mitigate uncertainties arising from noise, closely-spaced path lengths, and path length crossovers. The method is tested via simulation using bandlimited signals synthesized from ray trace data. Performance is compared to an optimized direct path filter using Monte Carlo analysis. No prior knowledge of multipath parameters or indoor infrastructure is assumed, and measurements are restricted to time-of-arrival (TOA) only. The results indicate that the PDAF consistently outperforms the direct path filter when one or more direct paths are blocked.
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