Tong Youwan, Zeng Hualin, Li Liyan, Zhou Yan
Optoelectronics System Laboratory, Institute of Semiconductors, Chinese Academy of Science, Beijing, China.
Appl Opt. 2012 Oct 10;51(29):6962-7. doi: 10.1364/AO.51.006962.
In this paper we propose a novel, improved, phase generated carrier (PGC) demodulation algorithm based on the PGC-differential-cross-multiplying approach (PGC-DCM). The influence of phase modulation amplitude variation and light intensity disturbance (LID) on traditional PGC demodulation algorithms is analyzed theoretically and experimentally. An experimental system for remote no-contact microvibration measurement is set up to confirm the stability of the improved PGC algorithm with LID. In the experiment, when the LID with a frequency of 50 Hz and the depth of 0.3 is applied, the signal-to-noise and distortion ratio (SINAD) of the improved PGC algorithm is 19 dB, higher than the SINAD of the PGC-DCM algorithm, which is 8.7 dB.
在本文中,我们基于相位生成载波差分交叉相乘方法(PGC-DCM)提出了一种新颖的、改进的相位生成载波(PGC)解调算法。从理论和实验两方面分析了相位调制幅度变化和光强干扰(LID)对传统PGC解调算法的影响。搭建了一个用于远程非接触式微振动测量的实验系统,以验证改进后的PGC算法在存在光强干扰情况下的稳定性。在实验中,当施加频率为50Hz、深度为0.3的光强干扰时,改进后的PGC算法的信噪失真比(SINAD)为19dB,高于PGC-DCM算法的8.7dB的SINAD。