一种采用双功率测量技术的新型rfid应变传感器

M. Hasani, A. Vena, L. Sydanheimo, L. Ukkonen, M. Tentzeris
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引用次数: 2

摘要

本文利用射频识别芯片的非线性特性,利用雷达截面测量技术,研究了一种新型的射频识别应变传感方法。作为概念验证,我们将该方法应用于测量使用电子纺织品在织物上实现的rfid启用应变传感器,以观察峰值功率频率和相应应变水平的大变化。我们首先采用三目标校准技术进行雷达测量,然后采用新型的双功率检测方法,该方法依赖于检测两种不同发射功率水平的后向散射响应,然后计算这两种响应的差值。芯片的非线性导致其阻抗值发生很大变化,因此对于精心选择的功率电平,RCS值存在很大差异,从而消除了校准的需要。实际测量结果验证了该方法和技术的可靠性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A novel RFID-enabled strain sensor using the double power measurement technique
This paper studies a novel RFID-enabled strain sensing approach using the radar cross-section measurement technique and taking advantage of the nonlinearity properties of the RFID chip. As a proof of concept, we applied the method for the measurement of an RFID-enabled strain sensor that was realized on fabric using electro-textiles in order to observe large variations of peak-power frequencies and corresponding strain levels. We carried out the radar measurements first applying the three-target calibration technique and then using the novel double-power-detection method, which relies upon the detection of the backscattered response for two distinct transmitting power levels and then calculating the difference of these two responses. The nonlinearity of the chip causes a large variation of its impedance value and thus a large difference of RCS values for carefully chosen power levels, allowing for the elimination of the need for calibration. Practical measurements have validated the method and the reliability of the technique.
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