Gas concentration and flow speed measurements using a polymer-based membrane sensor

C. Hepp, F. Krogmann, G. Urban
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引用次数: 1

Abstract

This contribution presents a polymer-based membrane sensor that is capable of determining simultaneously flow speed and gas concentration of binary gas mixtures. The sensor therefore combines two excitation modes. It consists of an unsymmetrical 1D-resistor array made of platinum. The well defined temperature coefficient of resistance enables to switch between constant temperature and constant power excitation modes of the heating element. The response signal of the downstream temperature sensor allows the gas concentration measurement of a binary gas mixture using constant power excitation mode. A switch to constant temperature excitation allows flow speed measurements. A sinusoidal AC-excitation with a frequency of 1 Hz is chosen to carry out the proof-of-concept.
使用聚合物膜传感器测量气体浓度和流速
这一贡献提出了一种基于聚合物的膜传感器,能够同时确定二元气体混合物的流速和气体浓度。因此,传感器结合了两种激励模式。它由一个由铂制成的不对称一维电阻阵列组成。定义良好的电阻温度系数使加热元件的恒温和恒功率激励模式之间切换。下游温度传感器的响应信号允许使用恒定功率激励模式测量二元气体混合物的气体浓度。切换到恒温激励允许流速测量。选择频率为1hz的正弦交流激励进行概念验证。
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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