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带有电容式换能器的光声气体传感器的悬臂梁的分析优化。

Analytic Optimization of Cantilevers for Photoacoustic Gas Sensor with Capacitive Transduction.

机构信息

IES, University Montpellier, CNRS, 34095 Montpellier, France.

出版信息

Sensors (Basel). 2021 Feb 21;21(4):1489. doi: 10.3390/s21041489.

Abstract

We propose a new concept of photoacoustic gas sensing based on capacitive transduction which allows full integration while conserving the required characteristics of the sensor. For the sensor's performance optimization, trial and error method is not feasible due to economic and time constrains. Therefore, we focus on a theoretical optimization of the sensor reinforced by computational methods implemented in a Python programming environment. We present an analytic model to optimize the geometry of a cantilever used as a capacitive transducer in photoacoustic spectroscopy. We describe all the physical parameters which have to be considered for this optimization (photoacoustic force, damping, mechanical susceptibility, capacitive transduction, etc.). These parameters are characterized by opposite trends. They are studied and compared to obtain geometric values for which the signal output and signal-to-noise ratio are maximized.

摘要

我们提出了一种基于电容变换的新的光声气体传感概念,它允许完全集成,同时保留传感器所需的特性。由于经济和时间的限制,对于传感器的性能优化,尝试和错误的方法是不可行的。因此,我们专注于通过在 Python 编程环境中实现的计算方法来对传感器进行理论优化。我们提出了一种优化用作光声光谱学中电容换能器的悬臂梁几何形状的解析模型。我们描述了所有需要考虑的物理参数进行此优化(光声力、阻尼、机械灵敏度、电容变换等)。这些参数具有相反的趋势。对它们进行了研究和比较,以获得信号输出和信噪比最大化的几何值。

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