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A portable analog lock-in amplifier for accurate phase measurement and application in high-precision optical oxygen concentration detection

机译:便携式模拟锁相放大器,用于精确的相位测量和在高精度光学氧气浓度检测中的应用

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A portable analog lock-in amplifier capable of accurate phase detection is proposed in this paper. The proposed lock-in amplifier, which uses the dual-channel orthometric signals as the references to build the xy coordinate system, can detect the relative phase between the input and x-axis based on trigonometric function. The sensitivity of the phase measurement reaches 0.014 degree, and a detection precision of 0.1 degree is achieved. At the same time, the performance of the lock-in amplifier is verified in the high precision optical oxygen concentration detection. Experimental results reveal that the portable analog lock-in amplifier is accurate for phase detection applications. In the oxygen sensing experiments, 0.058% oxygen concentration resulted in 0.1 degree phase shift detected by the lock-in amplifier precisely. In addition, the lock-in amplifier is small and economical compared with the commercial lock-in equipments, so it can be easily integrated in many portable devices for industrial applications.
机译:本文提出了一种可进行精确相位检测的便携式模拟锁相放大器。所提出的锁相放大器以双通道正交信号为参考来建立xy坐标系,可以基于三角函数检测输入和x轴之间的相对相位。相位测量的灵敏度达到0.014度,检测精度达到0.1度。同时,在高精度光学氧气浓度检测中验证了锁定放大器的性能。实验结果表明,便携式模拟锁相放大器对于相位检测应用是准确的。在氧气感测实验中,0.058%的氧气浓度导致锁定放大器精确检测到0.1度的相移。此外,与商用锁定设备相比,锁定放大器体积小且经济,因此可以轻松地将其集成到许多用于工业应用的便携式设备中。

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