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MAMPI – Multipath-assisted Device-free Localization with Magnitude and Phase Information

机译:MAMPI –具有幅度和相位信息的多路径辅助无设备定位

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Narrowband radio-frequency (RF)-based device-free localization (DFL) systems suffer from multipath propagation. Therefore, we propose multipath-assisted device-free localization with magnitude and phase information (MAMPI), a DFL system that employs ultra-wideband (UWB) channel impulse response (CIR) measurements between a transmitter and receiver and thereby benefits from multipath propagation. We implement a model that includes raytracing, diffraction, and inaccuracies of measurements in a validated error model. The multipath-assisted DFL system creates feature vectors at any position based on magnitude and phase measurements of each multipath component (MPC) of the CIR. We evaluate our new approach with a position error probability based on the propagation model including errors, as well as a distance metric of the feature vector of the positions. We compare the performance of the system with a line-of-sight solution with four instead of two nodes and variants of magnitude-only and phase-only approaches. By combining the magnitude and phase measurements of a multipath-assisted DFL system, we achieve a position error probability that is similar to the conventional DFL system.
机译:基于窄带射频(RF)的无设备定位(DFL)系统遭受多径传播的困扰。因此,我们提出了具有幅度和相位信息(MAMPI)的多路径辅助无设备定位,这是一种DFL系统,该系统在发射器和接收器之间采用超宽带(UWB)信道冲激响应(CIR)测量,从而受益于多径传播。我们实现了一个模型,该模型包括经过验证的误差模型中的射线追踪,衍射和测量误差。多路径辅助DFL系统基于CIR的每个多路径分量(MPC)的幅度和相位测量,在任意位置创建特征向量。我们基于包含误差的传播模型以及位置特征向量的距离度量,以位置错误概率评估我们的新方法。我们将系统的性能与视线解决方案进行比较,该解决方案具有四个而不是两个节点以及仅幅度和仅相位方法的变体。通过结合多径辅助DFL系统的幅度和相位测量,我们获得了与传统DFL系统相似的位置误差概率。

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