A Remote Temperature Measurement Using FSS-Based Sensing

S. Ramesh, K. Donnell
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Abstract

This paper presents a Frequency Selective Surface (FSS) based sensor for temperature sensing. The proposed sensor operates in Ku-band and measures changes in temperature using a rectangular patch-based unit cell that includes a conductor backed temperature-sensitive substrate. Changes in temperature are sensed by monitoring the change in resonant frequency of the FSS when interrogated by an incident electromagnetic signal linearly polarized parallel to the long dimension of the rectangular patch element. Simulation results of temperature measurement over a temperature difference (with respect to ambient, i.e., 23 ˚C) of 0˚C - 200˚C are presented. The simulated results indicate that the average value of sensitivity and error of the sensor, respectively, is 350 MHz and 29 MHz for a 50˚C change in temperature.
基于fss传感的远程温度测量
提出了一种基于频率选择表面(FSS)的温度传感器。该传感器工作在ku波段,并使用矩形贴片为基础的单元电池测量温度变化,该单元电池包括一个导体背侧的温度敏感衬底。温度的变化是通过监测FSS谐振频率的变化来感知的,当被平行于矩形贴片元件长尺寸的线性极化的入射电磁信号询问时。给出了0℃- 200℃温差(相对于环境,即23℃)下温度测量的仿真结果。仿真结果表明,当温度变化为50℃时,传感器的灵敏度平均值为350 MHz,误差平均值为29 MHz。
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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