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A sensor for stiffness change sensing based on three weakly coupled resonators with enhanced sensitivity

机译:基于三种弱耦合谐振器具有增强灵敏度的刚度变化感测的传感器

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摘要

This paper reports on a novel MEMS resonant sensing device consisting of three weakly coupled resonators that can achieve an order of magnitude improvement in sensitivity to stiffness change, compared to current state-of-the-art resonator sensors with similar size and resonant frequency. In a 3 degree-of-freedom (DoF) system, if an external stimulus causes change in the spring stiffness of one resonator, mode localization occurs, leading to a drastic change of mode shape, which can be detected by measuring the modal amplitude ratio change. A 49 times improvement in sensitivity compared to a previously reported 2DoF resonator sensor, and 4 orders of magnitude enhancement compared to a 1DoF resonator sensor has been achieved.
机译:这篇论文报道了一种由三个弱耦合谐振器组成的新型MEMS谐振传感设备,与具有类似尺寸和谐振频率的最新技术谐振器传感器相比,其对刚度变化的敏感性提高了一个数量级。在3自由度(DoF)系统中,如果外部刺激导致一个谐振器的弹簧刚度发生变化,则会发生模式定位,从而导致模式形状急剧变化,这可以通过测量模式振幅比来检测更改。与以前报道的2DoF谐振器传感器相比,灵敏度提高了49倍,与1DoF谐振器传感器相比,灵敏度提高了4个数量级。

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