DocumentCode
41214
Title
Design of Closed-Loop Detection System for Optical Voltage Sensors Based on Pockels Effect
Author
Hui Li ; Lan Bi ; Rui Wang ; LiJing Li ; Zhili Lin ; Chunxi Zhang
Author_Institution
Sch. of Instrum. Sci. & Optoelectron. Eng., Beihang Univ., Beijing, China
Volume
31
Issue
12
fYear
2013
fDate
15-Jun-13
Firstpage
1921
Lastpage
1928
Abstract
A closed-loop detection system is established to make optical voltage sensors (OVSs) based on Pockels effect particularly ideal for high-voltage applications. For the closed-loop OVSs, the signal intensity fluctuation due to temperature variation contributes to the gain drift of the forward channel and finally influences the dynamic performance of the OVSs. Meanwhile, the closed-loop error of the OVS is also a weak signal that is hard to be accurately extracted. In this work, we propose a signal detection circuit based on weak signal detection theory to reduce noise levels for improving detection accuracy of OVS. In consideration of the influence of signal intensity fluctuation, we design a control algorithm for the closed-loop detection system to guarantee that the OVS is exponentially stable in order to have a fast dynamic response. The experimental results show that the OVS based on the proposed closed-loop system has accuracy within 0.2%, a fast rise time less than 25.2 μs and a wide bandwidth up to 24.5 kHz.
Keywords
Pockels effect; closed loop systems; optical sensors; Pockels effect; closed-loop detection system; closed-loop error; control algorithm; dynamic performance; forward channel; gain drift; high-voltage applications; noise levels; optical voltage sensors; signal detection circuit; signal intensity fluctuation; temperature variation; weak signal detection theory; Frequency modulation; Heuristic algorithms; Noise; Optical sensors; Signal detection; Voltage measurement; Closed-loop detection; dynamic performance; optical voltage sensor;
fLanguage
English
Journal_Title
Lightwave Technology, Journal of
Publisher
ieee
ISSN
0733-8724
Type
jour
DOI
10.1109/JLT.2013.2260855
Filename
6510448
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