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首页> 外文期刊>IEEE Transactions on Instrumentation and Measurement >On the Design of Force Sensors Based on Frustrated Total Internal Reflection
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On the Design of Force Sensors Based on Frustrated Total Internal Reflection

机译:基于挫折的全内反射的力传感器设计

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摘要

Frustrated total internal reflection (FTIR) of light is a physical phenomenon which can be used to accomplish several measurement tasks. This paper deals with the design and modeling of pressure field or force sensors based on FTIR. In fact, it is possible to convert the value of contact pressure into a light intensity signal, owing to the frustration of reflection of a dedicated medium. In this sense, it is possible to measure pressure/forces with a camera system or a photosensitive sensor. In this paper, the physical principles of the technique are recalled. Then, an experiment will document the behavior of FTIR at micromechanical level. Consequently, a Greenwood-Williamson (GW) model is proposed as a tool to predict the response of the FTIR-based pressure sensor. Experimental data and uncertainty analysis show that the design methodology is able to predict the behavior of the sensor with an uncertainty that is about +/- 10% of the actual specimen response, thus providing an effective tool to optimize the FTIR experiments.
机译:令人沮丧的全内反射(FTIR)的光是一种物理现象,可用于实现几个测量任务。本文涉及基于FTIR的压力场或力传感器的设计和建模。实际上,由于专用介质的反射令人沮丧,可以将接触压力的值转换为光强度信号。从这个意义上讲,可以用相机系统或光敏传感器测量压力/力。在本文中,召回了该技术的物理原理。然后,实验将在微机械水平下记录FTIR的行为。因此,提出了一种Greenwood-Williamson(GW)模型作为预测基于FTIR的压力传感器的响应的工具。实验数据和不确定性分析表明,设计方法能够预测传感器的行为,其不确定度约为实际样本响应的+/-10%,从而提供了优化FTIR实验的有效工具。

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