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Millimeter Accuracy Passive Tag Ranging via Second Harmonics RF Backscattering Against Body Movement Interference

机译:毫米精度被动标签通过第二次谐波RF反向散射来抗身抗身干扰

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Interference caused by unpredictable body motion is notorious in RF-based ranging and tracking. For passive tags, the strong self-leakage signal and large unwanted direct reflections encountered in conventional RFID transceivers make precision ranging even more difficult. To achieve fast, high accuracy ranging capability against body motion interference, we investigate a second harmonic backscattering solution in the opportunistic method of sequential-test heuristic multi-frequency continuous wave ranging (ST-HMFCW). We show that direct reflection and self-interference are greatly suppressed, so the received second harmonic phase variation is decoupled from the power-dependent phase distortion caused by large interference. ST-HMFCW further seeks opportunities in phase fluctuations caused by interferer motion with drastic performance improvement as bandwidth increases. Robust millimeter-accuracy ranging is achieved under strong body-motion interference with the broadband nonlinear transmission line (NLTL) backscatter tags. We present the theory, simulation and experimental prototypes to verify the effectiveness of the proposed ST-HMFCW ranging method.
机译:在基于RF的测距和跟踪中,不可预测的身体运动引起的干扰是臭名昭着的。对于被动标签,在传统的RFID收发器中遇到的强烈的自漏信号和遇到的大量不需要的直接反射使得精确测距更加困难。为实现快速,高精度的对体运动干扰的能力,我们以顺序测试启发式多频连续波测距的机会方法调查二次谐波反向散射解决方案(ST-HMFCW)。我们表明,极大地抑制了直接反射和自干扰,因此接收的第二次谐波相位变异是由大的干扰引起的幂依赖性相位失真解耦。 ST-HMFCW进一步寻求由干扰运动引起的相波动的机会,随着带宽的增加,随着具有急剧性能改善的干扰运动。在强大的身体运动干扰下实现强大的毫米准确度测距,与宽带非线性传输线(NLTL)反向散射标签。我们介绍了理论,仿真和实验原型,以验证所提出的ST-HMFCW测距方法的有效性。

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