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Design and Implementation of Dual-Edge Filter Demodulation System Based on the Dual LPFG and Embedded Technology

机译:基于双LPFG和嵌入式技术的双沿滤波器解调系统的设计与实现

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This investigation aims to design and implement an dual-edge filter fiber grating sensor demodulation system based on the dual Long Period Fiber Grating (LPFG) and embedded technology. The principle of linear dual-edge filter is introduced first, and the system architecture and runtime logic is designed and implemented based on the MCU system architecture. The LPFG is employed as the linear filtering equipment. As filter output differs when reflection light passes filters of different spectral characteristic, the Logarithm operation of light intensity ratio can be used to calculate the wavelength. Experiments demonstrate that this system designed in this investigation can stably demodulate the FBG sensor signals. The difference between linear fitting computation value and optical spectrometer measured value is 10pm, the dynamic rage is 4nm. The results indicate that the linearity is good and accurate is high, and this method provides valuable reference for engineering wavelength calibration and debugging.
机译:本研究旨在设计和实现基于双长周期光纤光栅(LPFG)和嵌入式技术的双边缘滤波器光纤光栅传感器解调系统。首先介绍了线性双沿滤波器的原理,并基于MCU系统架构设计和实现了系统架构和运行时逻辑。 LPFG被用作线性滤波设备。当反射光通过具有不同光谱特性的滤光器时,由于滤光器输出会有所不同,因此可以使用光强比的对数运算来计算波长。实验表明,该研究设计的系统可以稳定地解调FBG传感器信号。线性拟合计算值与光谱仪测量值之差为10pm,动态范围为4nm。结果表明,线性度好,精度高,为工程波长的标定和调试提供了有价值的参考。

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