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Parameter design of signal processing for transmission/reflection-type hybrid extrinsic Fabry-Perot optical fiber sensors

机译:透射/反射式混合型外在法布里-珀罗光纤传感器的信号处理参数设计

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摘要

A transmission/reflection-type hybrid extrinsic Fabry-Perot interferometric (TRHEFPI) optical fiber sensor presents transmission-type and reflection-type sensor signals simultaneously, and measurement directions can be robustly distinguished with the phase lead or lag of the linear combination signal from the original sensor signal. This sensor principle compensates for the ambiguous distinction of the measurement directions and direction changes of conventional interferometric optical fiber sensors, including extrinsic Fabry-Perot interferometric optical fiber sensors, due to the exclusive use of fringe counting in signal processing. Designing a sensor coefficient in the linear combination signal is one of the most important works in signal processing for the TRHEFPI optical fiber sensor because the magnitude of the phase shifts depends on the sensor coefficient. A design method of the sensor coefficient is presented in this research. The method was verified with experimental sensor signals and applied to strain measurement experiments. A method of absolute measurement using the TRHEFPI optical fiber sensor is also presented.
机译:传输/反射型混合型外在法布里-珀罗干涉(TRHEFPI)光纤传感器同时显示传输型和反射型传感器信号,并且可以通过线性组合信号的相位超前或滞后来可靠地区分测量方向原始传感器信号。这种传感器原理弥补了传统干涉式光纤传感器(包括外在法布里-珀罗干涉式光纤传感器)的测量方向和方向变化的歧义,这是由于信号处理中仅使用了条纹计数。在TRHEFPI光纤传感器的信号处理中,设计线性组合信号中的传感器系数是最重要的工作之一,因为相移的大小取决于传感器系数。提出了一种传感器系数的设计方法。该方法已通过实验传感器信号验证,并应用于应变测量实验。还介绍了一种使用TRHEFPI光纤传感器的绝对测量方法。

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