A passive temperature sensor based on a printed magnetoinductive-wave (MIW) delay line

F. Herraiz-Martínez, J. Martínez-Cebrián, D. Segovia-Vargas
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引用次数: 5

Abstract

Novel fully passive and electromagnetic sensors are proposed. These sensors are implemented with magnetoinductive-wave (MIW) delay lines. Such lines are composed of a periodic array of coupled square split ring resonators (SSRRs) and propagate slow waves. A reflector with a transducer element (temperature, moisture, etc.) is coupled to the end of the MIW line. When the sensor is interrogated with a pulse in time domain, the reflector produces a replica of the original pulse modulated in amplitude, which depends on the magnitude under sensing. Thanks to the slow group velocity of the MIW delay line, the replica and the original pulse are not overlapped in time domain and can be demodulated, thus obtaining a measurement of the magnitude. A design of a temperature sensor based on the proposed technology is presented. The reported results validate the proposed approach and the feasibility of the proposed application.
一种基于印刷磁感波延迟线的无源温度传感器
提出了一种新型全无源电磁传感器。这些传感器采用磁感应波(MIW)延迟线实现。这种线路由一个周期性阵列的耦合方形分裂环谐振器(ssrr)组成,并传播慢波。带有传感器元件(温度,湿度等)的反射器耦合到MIW线的末端。当传感器接收到时域脉冲时,反射器产生一个振幅调制的原始脉冲的复制品,其振幅取决于被感知的幅度。由于MIW延迟线的慢群速度,复制脉冲和原始脉冲在时域上不重叠,可以解调,从而得到幅度的测量。提出了一种基于该技术的温度传感器设计方案。报告的结果验证了所提出的方法和所提出的应用的可行性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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