DocumentCode :
1733853
Title :
Vibration immunity fiber optic current sensor employing a spun or twisted highly linear birefringence fiber
Author :
Kang Menghua ; Wang Yingli ; Xu Jintao ; Ren Kaili ; Liu Shangbo
Author_Institution :
Xi´an Inst. of Opt. & Precision Mech., Xi´an, China
fYear :
2013
Firstpage :
7468
Lastpage :
7472
Abstract :
Fiber optic current sensors (FOCS) based on Faraday magneto-optical effect have plenty of privileges compared to the traditional current sensors. However, the residual linear birefringence and environmental vibration sensitive problem are the fatal drawback in Sagnac fiber optic current sensors. In this paper, a vibration immunity sensing loop with a function of passive fiber optic polarization control is proposed, which consist of a spun or twisted fiber with highly birefringence. A spun or twisted fiber possesses two crucial functions: remove the residual linear birefringence and control polarization of light. It is used as a substitute for fiber-optic quarter wave plate, which is sensitive to temperature fluctuation. Use the special fiber to encircle a distinctive geometric configuration, eliminating the influence of vibration or the Sagnac effect undesired. It has been demonstrated that the novel fiber optic current sensor has high sensitivity, considerable wide dynamic range, resistance to electromagnetic interference, and immunity of vibration.
Keywords :
birefringence; electric sensing devices; fibre optic sensors; optical fibre polarisation; optical fibres; optical variables control; vibration control; FOCS; Faraday magneto-optical effect; electromagnetic interference; environmental vibration sensitive problem; geometric configuration; light polarization control; passive fiber optic polarization control; residual linear birefringence; spun highly linear birefringence fiber; temperature fluctuation; twisted highly linear birefringence fiber; vibration immunity fiber optic current sensor; Coils; Optical fiber couplers; Optical fiber polarization; Optical fiber sensors; Vibrations; circular birefringence; fiber optic current sensor; nonreciprocal phase shift; spun fiber; vibration immunity;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Control Conference (CCC), 2013 32nd Chinese
Conference_Location :
Xi´an
Type :
conf
Filename :
6640752
Link To Document :
بازگشت