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MEMS-Based Reflective Intensity-Modulated Fiber-Optic Sensor for Pressure Measurements

机译:用于压力测量的基于MEMS的反射强度调制光纤传感器

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摘要

A reflective intensity-modulated fiber-optic sensor based on microelectromechanical systems (MEMS) for pressure measurements is proposed and experimentally demonstrated. The sensor consists of two multimode optical fibers with a spherical end, a quartz tube with dual holes, a silicon sensitive diaphragm, and a high borosilicate glass substrate (HBGS). The integrated sensor has a high sensitivity due to the MEMS technique and the spherical end of the fiber. The results show that the sensor achieves a pressure sensitivity of approximately 0.139 mV/kPa. The temperature coefficient of the proposed sensor is about 0.87 mV/°C over the range of 20 °C to 150 °C. Furthermore, due to the intensity mechanism, the sensor has a relatively simple demodulation system and can respond to high-frequency pressure in real time. The dynamic response of the sensor was verified in a 1 kHz sinusoidal pressure environment at room temperature.
机译:提出并实验证明了一种基于微机电系统(MEMS)的反射强度调制光纤传感器。该传感器由两根带球形末端的多模光纤,带双孔的石英管,硅敏感膜片和高硼硅玻璃衬底(HBGS)组成。由于采用了MEMS技术和光纤的球形端,因此集成传感器具有很高的灵敏度。结果表明,该传感器实现了约0.139 mV / kPa的压力灵敏度。所提出的传感器的温度系数在20°C至150°C的范围内约为0.87 mV /°C。此外,由于强度机制,传感器具有相对简单的解调系统,并且可以实时响应高频压力。在室温下于1 kHz正弦压力环境中验证了传感器的动态响应。

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