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A Shoe to Shoe RF Ranging Sensor for Aiding Inertial Navigation

机译:用于鞋RF测距传感器的鞋,用于辅助惯性导航

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An RF ranging sensor based on time-interleaved Dual Frequency Continuous Wave (DFCW) radar is proposed to measure the absolute distance between two shoes to aid a dead reckoning system for pedestrian navigation. Conventional single frequency Continuous Wave (CW) radar provides accurate but ambiguous range measurement, while DFCW techniques are employed to find the approximate range of the target and to remove the ambiguity of the single frequency CW radar. The two frequencies in the proposed DFCW radar work in a Time-division Duplexing (TDD) manner so that they can share the same transceiver hardware. Such a composite DFCW/CW system can be implemented with a simple direct conversion receiver which is desirable for applications such as pedestrian navigation where compact and low power consumption devices are required. The feasibility of the proposed sensor is demonstrated by a sensor prototype based on Commercial Off The Shelf (COTS) components in a practical environment. An absolute accuracy (RMS) of 0.92 mm has been achieved for a maximum test range of 600 mm. The results show that the proposed ranging sensor is promising for measuring the distance in short range applications.
机译:提出了一种基于时间交织的双频连续波(DFCW)雷达的RF测距传感器,以测量两种鞋之间的绝对距离,以帮助用于行人导航的死亡估算系统。传统的单频连续波(CW)雷达提供精确但模糊的范围测量,而DFCW技术被采用以找到目标的近似范围,并去除单频CW雷达的模糊性。所提出的DFCW雷达中的两个频率以时分双工(TDD)方式工作,使得它们可以共享相同的收发器硬件。这种复合DFCW / CW系统可以用简单的直接转换接收器实现,这对于需要紧凑且低功耗设备的行人导航,这是期望的。基于在实际环境中的商业架子(婴儿床)组件的商业场外,所提出的传感器的可行性。在600mm的最大测试范围内实现了0.92mm的绝对精度(RMS)。结果表明,建议的测距传感器具有测量短程应用中的距离。

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