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An improved sensitivity normalization technique of PGC demodulation with low minimum phase detection sensitivity using laser modulation to generate carrier signal

机译:一种改进的PGC解调灵敏度归一化技术,具有最低的最低相位检测灵敏度,该灵敏度使用激光调制来生成载波信号

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摘要

The phase carrier signal of the PGC demodulation in fiber optic interferometric sensors (FOIS) may be generated by using laser current modulation to achieve all-fiber structures in long-distance and outdoor applications. An optical intensity modulation with carrier frequency induced from the laser modulation will cause the instability and distortion in the PGC demodulation output. Additionally, since the optical intensity attenuation of the FOIS will degrade the PGC demodulation output, proper sensitivity compensation on the PGC demodulator is necessary for the field applications. In this paper, we propose an improved technique by using a balanced photoreceiver in the FOIS to attain significant improvements in the instability and distortion of the PGC demodulation output. Moreover, we choose a small phase scrambler signal amplitude of 1 rad to achieve improved the minimum phase detection sensitivity (MPDS) as well as sensitivity normalization because the improvement of the MPDS is very important to the advanced FOIS. The experimental results show that the improved values of the best MPDS are 5.7 dB (for DFB laser diode) and 4.3 dB (for EP1550 laser diode), respectively, by using the improved technique. From the sensitivity normalization experiment results, the relative error is shown to be less than 0.5% when the optical intensity attentuation is no more than 15 dB. It verifies the effectiveness of the sensitivity normalization technique proposed in our improved PGC demodulation system.
机译:光纤干涉传感器(FOIS)中PGC解调的相位载波信号可以通过使用激光电流调制来生成,以在长距离和室外应用中实现全光纤结构。由激光调制引起的具有载波频率的光强度调制将导致PGC解调输出中的不稳定和失真。另外,由于FOIS的光强度衰减会降低PGC解调输出,因此对于现场应用,必须在PGC解调器上进行适当的灵敏度补偿。在本文中,我们提出了一种改进的技术,即在FOIS中使用平衡的光接收器来显着改善PGC解调输出的不稳定性和失真。此外,我们选择1 rad的小相位扰频器信号幅度来实现改进的最小相位检测灵敏度(MPDS)和灵敏度归一化,因为MPDS的改进对于高级FOIS非常重要。实验结果表明,通过使用改进的技术,最佳MPDS的改进值分别为5.7 dB(对于DFB激光二极管)和4.3 dB(对于EP1550激光二极管)。从灵敏度归一化实验结果可以看出,当光强度衰减不大于15 dB时,相对误差小于0.5%。它验证了在我们改进的PGC解调系统中提出的灵敏度归一化技术的有效性。

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