DocumentCode :
64208
Title :
A High-Performance Hybrid Current Transformer Based on a Fast Variable Optical Attenuator
Author :
Pu Wei ; Cheng Cheng ; Xuefeng Wang ; Xuekang Shan ; Xiaohan Sun
Author_Institution :
Nat. Res. Center for Opt. Sensing/Commun. Integrated Networking, Southeast Univ., Nanjing, China
Volume :
29
Issue :
6
fYear :
2014
fDate :
Dec. 2014
Firstpage :
2656
Lastpage :
2663
Abstract :
We present a novel hybrid electro-optic current transformer based on a fast variable optical attenuator (FVOA) with the features of ultra-low power consumption and polarization insensitivity. An optic-electro feedback loop with a PID control algorithm is designed to compensate the nonlinearity of the FVOA. In addition, the impacts of the power drift of the optical source and variance of fiber loss have been investigated and eliminated. The transformer is built with a verified power consumption of 0.85 mW. Experiments were made in which the linearity, the robustness, the accuracy and the temperature stability of the transformer were tested. The results show that the ratio errors and the phase errors are below 0.07% and 5 min, respectively, when the primary current increased from 25 to 600 A. In addition, the maximum error drifts of 0.17% and 2.8 min were recorded over the -20 to 80°C range.
Keywords :
current transformers; electro-optical devices; energy consumption; feedback; light sources; optical attenuators; optical fibres; three-term control; FVOA; PID control algorithm; fast variable optical attenuator; fiber loss; hybrid electrooptic current transformer; optical source; opticelectro feedback loop; phase errors; polarization insensitivity; power 0.85 mW; power consumption; power drift; temperature 20 degC to 80 degC; temperature stability; time 5 min; ultra-low power consumption; Adaptive optics; Current transformers; Feedback loop; Optical attenuators; Optical feedback; Optical polarization; Optical sensors; Current measurement; current transformers (CTs); electro-optic measurement; optical transducers; ultra-low power consumption;
fLanguage :
English
Journal_Title :
Power Delivery, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-8977
Type :
jour
DOI :
10.1109/TPWRD.2014.2322656
Filename :
6895185
Link To Document :
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