DocumentCode :
2141912
Title :
Temperature compensation for the photoelastic modulator with a digital phase-locked loop
Author :
Yan-chao Wang ; Dong-e Zhao ; Zhi-Bin Wang ; You-hua Chen
Author_Institution :
Eng. Technol. Res. Center, Shanxi Province for Opto-Electron. Inf. & Instrum., Taiyuan, China
fYear :
2013
fDate :
23-25 July 2013
Firstpage :
1686
Lastpage :
1690
Abstract :
For temperature drift in the ultra-high speed photoelastic modulation interferometer, a control model with temperature compensation is presented including the voltage and phase compensation. First, according to the similar and modeling theory, an equivalent circuit of mechanical properties of the ultra-high speed photoelastic modulation interferometer is established. The impact on its resonance frequency is analyzed which is caused by temperature drift. And a mathematical model which contains drive voltage, frequency and resonance frequency is set up. Then, a design method including the voltage and phase compensation is given for optical path difference deviation control, which merges the digital phase lock loop and the phase compensation. Finally, the test between a drive control system including voltage and phase compensation and a traditional drive control system is executed, using a laser Doppler vibrometer to record the amount of change of optical path difference within 3 hours. Results show that the optical path difference deviation caused by temperature drift in long terms is reduced by about 50%.
Keywords :
compensation; digital phase locked loops; equivalent circuits; light interferometers; mathematical analysis; modulators; optical modulation; photoelasticity; vibration measurement; digital phase-locked loop; drive control system; equivalent circuit; laser Doppler vibrometer; mathematical model; mechanical property; optical path difference deviation control; phase compensation; resonance frequency analysis; temperature compensation; time 3 h; ultrahigh speed photoelastic modulation interferometer; voltage compensation; Frequency modulation; Optical interferometry; Resonant frequency; Temperature control; Voltage control; digital phase-locked loop; frequency tracking; photoelastic modulator; temperature compensation;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Natural Computation (ICNC), 2013 Ninth International Conference on
Conference_Location :
Shenyang
Type :
conf
DOI :
10.1109/ICNC.2013.6818253
Filename :
6818253
Link To Document :
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