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Design of Lock-In Amplifier in the Optical Fiber Methane Harmonic Detection

机译:光纤甲烷谐波检测中的锁相放大器设计

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A new safety system of optical fiber detection for methane measurement is described based on the near-infrared absorption mechanism. An optical fiber methane gas detector is designed for methane gas concentration below 5% v/v. The detector bases on tunable diode laser absorption spectroscopy, scans the methane gas absorption lines locate at 1653.722 nm, uses the orthogonal lock-in amplifier technology to extract weak first harmonic signal and second harmonic signal, eliminates light intensity disturbance by using the ratio of the second harmonic peak and the first harmonic average value, realizes the gas concentration measurement. This paper mainly analyzes the principle and key technology of orthogonal lock-in amplifier in the optical fiber methane gas detector. Experimental results show that the response time is 1s, the measurement accuracy up to 500ppm.
机译:基于近红外吸收机理,描述了一种新的用于甲烷测量的光纤检测安全系统。光纤甲烷气体检测器设计用于甲烷气体浓度低于5%v / v的情况。该探测器基于可调谐二极管激光吸收光谱,扫描位于1653.722 nm处的甲烷气体吸收线,使用正交锁定放大器技术提取弱的一阶谐波信号和二阶谐波信号,通过利用二次谐波峰值和一次谐波平均值,实现气体浓度测量。本文主要分析了光纤甲烷气体探测器中正交锁相放大器的原理和关键技术。实验结果表明,响应时间为1s,测量精度可达500ppm。

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