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首页> 外文期刊>Journal of Micromechanics and Microengineering >Extending the remote distance of LC passive wireless sensors via strongly coupled magnetic resonances
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Extending the remote distance of LC passive wireless sensors via strongly coupled magnetic resonances

机译:通过强耦合磁共振扩展LC无源无线传感器的远程距离

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摘要

This paper presents an approach to extend the remote distance of inductive-capacitance (LC) passive wireless sensors via strongly coupled magnetic resonances. The use of an intermediate resonator (repeater) for enhancing the magnetic resonance results in multiple peak frequencies of a readout system. A coefficient matrix method is used here to analyze the effects of the repeater theoretically, including frequency splitting and sensitivity decay. The circuit simulation results agree well with the analytical analysis. An interrogation approach to avoid sensitivity decay is proposed by summing the two peak frequencies. A varactor-based LC passive voltage sensor is wirelessly measured with three different repeaters and without the repeater, respectively. It is shown that the remote distance of the passive wireless sensor with the repeater can be improved to 180% without sensitivity decay.
机译:本文提出了一种通过强耦合磁共振扩展感应电容(LC)无源无线传感器的远程距离的方法。使用中间谐振器(中继器)来增强磁共振会导致读取系统出现多个峰值频率。此处使用系数矩阵方法从理论上分析中继器的效果,包括分频和灵敏度衰减。电路仿真结果与解析分析吻合良好。通过将两个峰值频率相加,提出了一种避免灵敏度衰减的询问方法。基于变容二极管的LC无源电压传感器分别使用三个不同的中继器和不使用中继器进行无线测量。结果表明,无源无线传感器与中继器之间的远程距离可以提高到180%,而不会降低灵敏度。

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