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On-Line Phase Tracking of EFPI Sensor and Fuzzy Logic Vibration Control

机译:EFPI传感器的在线相位跟踪和模糊逻辑振动控制

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摘要

On-line phase tracking of an extrinsic Fabry-Perot interferometer (EFPI) and experimental vibration control of a composite beam with a sensing-patch are investigated. We propose a sensing-patch for the compensation of the interferometric non-linearity. In this paper, a sensing-patch that comprises an EFPI and a piezo ceramic is fabricated and the characteristics of the sensing-patch are experimentally investigated. A simple and practical logic is applied for the real-time tracking of optical phase of an interferometer. Experimental results show that the proposed sensing-patch does not have the non-linear behavior of conventional EFPI and hysteresis of piezoelectric material. Moreover, it has good strain resolution and wide dynamic sensing range. Finally, vibration control with the developed sensing-patch has been performed using Fuzzy logic controller.
机译:研究了外在法布里-珀罗干涉仪(EFPI)的在线相位跟踪和带有传感片的复合梁的实验振动控制。我们提出了一种用于补偿干涉非线性的感测补丁。在本文中,制造了包括EFPI和压电陶瓷的传感贴片,并通过实验研究了该传感贴片的特性。一种简单实用的逻辑应用于干涉仪光学相位的实时跟踪。实验结果表明,所提出的传感贴片不具有常规EFPI的非线性特性和压电材料的滞后性。此外,它具有良好的应变分辨率和宽动态感测范围。最后,使用模糊逻辑控制器对开发的传感片进行了振动控制。

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