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Power Modulation-Based Optical Sensor for High-Sensitivity Vibration Measurements

机译:基于功率调制的光学传感器,用于高灵敏度振动测量

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An intensity modulation-based curved waveguide sensor is developed in this paper for vibration measurements. Measurement of vibration is an important aspect in aerospace and automotive structures. The sensor is created using a single-mode optical fiber, where coupling between the fundamental and cladding modes at certain curvatures results in intensity peaks that enables the development of a high-sensitivity sensor. The sensor is calibrated at known frequencies and the functionality of the sensor is tested by measuring the complex vibration response of composite material beams. The results are validated by direct measurements through an alternate technique. Results confirm the possibility of using the fiber-optic sensor for vibration measurements. The present validation studies are conducted up to the frequency of 1 kHz; however, further testing may show a wider operating frequency range for the sensor.
机译:本文开发了一种基于强度调制的弯曲波导传感器,用于振动测量。振动的测量是航空航天和汽车结构中的重要方面。该传感器是使用单模光纤创建的,其中在某些曲率下,基本模和包层模之间的耦合会导致强度峰值,从而可以开发出高灵敏度的传感器。传感器以已知的频率进行校准,并且通过测量复合材料梁的复杂振动响应来测试传感器的功能。通过另一种方法通过直接测量来验证结果。结果证实了使用光纤传感器进行振动测量的可能性。目前的验证研究是在1 kHz的频率下进行的。但是,进一步的测试可能会显示传感器的工作频率范围更广。

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