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Enhancement of signal-noise-ratio in a distributed polarization mode coupling detection system
A distributed polarization-mode coupling measurement system was designed and implemented using white light interferometry. It can be used for the measurement of polarization mode coupling in a high-birefringence fiber of up to 1 km. This system can be used in both fiber-optic sensors and optical fib...
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Published in: | Optoelectronics letters 2007-01, Vol.3 (1), p.57-61, Article 57 |
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creator | Jing, Wen-cai Li, Xiao-jingi Liu, Kun Xu, Tian-hua Zhang, Yi-mo Zhang, Hong-xia Jia, Da-gong Peng, Gang-Ding |
description | A distributed polarization-mode coupling measurement system was designed and implemented using white light interferometry. It can be used for the measurement of polarization mode coupling in a high-birefringence fiber of up to 1 km. This system can be used in both fiber-optic sensors and optical fiber communications. Wavelet Transform was adopted in data processing to improve the signal-noise-ratio. The signal-noise-ratio of this system was improved more than 15 dB after denoising. The influence of denoising threshold on signal-noise-ratio and measurement accuracy was also discussed. Hilbert Transform and non-linear regression can be used in conjunction with Wavelet Transform to enhance the signal-noise-ratio and spatial resolution of this system. |
doi_str_mv | 10.1007/s11801-007-6158-4 |
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It can be used for the measurement of polarization mode coupling in a high-birefringence fiber of up to 1 km. This system can be used in both fiber-optic sensors and optical fiber communications. Wavelet Transform was adopted in data processing to improve the signal-noise-ratio. The signal-noise-ratio of this system was improved more than 15 dB after denoising. The influence of denoising threshold on signal-noise-ratio and measurement accuracy was also discussed. Hilbert Transform and non-linear regression can be used in conjunction with Wavelet Transform to enhance the signal-noise-ratio and spatial resolution of this system.</description><identifier>ISSN: 1673-1905</identifier><identifier>EISSN: 1993-5013</identifier><identifier>DOI: 10.1007/s11801-007-6158-4</identifier><language>eng</language><publisher>Heidelberg: Springer Nature B.V</publisher><subject>Birefringence ; Coupled modes ; Coupling ; Data processing ; Fiber optics ; Hilbert transformation ; Noise ; Noise measurement ; Noise reduction ; Noise threshold ; Optical communication ; Optical fibers ; Polarization ; Signal processing ; Spatial resolution ; Wavelet transforms ; White light interferometry</subject><ispartof>Optoelectronics letters, 2007-01, Vol.3 (1), p.57-61, Article 57</ispartof><rights>Tianjin University of Technology 2007.</rights><rights>Copyright © Wanfang Data Co. Ltd. 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Hilbert Transform and non-linear regression can be used in conjunction with Wavelet Transform to enhance the signal-noise-ratio and spatial resolution of this system.</description><subject>Birefringence</subject><subject>Coupled modes</subject><subject>Coupling</subject><subject>Data processing</subject><subject>Fiber optics</subject><subject>Hilbert transformation</subject><subject>Noise</subject><subject>Noise measurement</subject><subject>Noise reduction</subject><subject>Noise threshold</subject><subject>Optical communication</subject><subject>Optical fibers</subject><subject>Polarization</subject><subject>Signal processing</subject><subject>Spatial resolution</subject><subject>Wavelet transforms</subject><subject>White light interferometry</subject><issn>1673-1905</issn><issn>1993-5013</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2007</creationdate><recordtype>article</recordtype><recordid>eNpFkE1LAzEQhhdRsGh_gLeAFy_RzGY3mxyl1A8oeNGrIU1ma2qb1GQXaX-9u1Ywh8nLzMPAPEVxBewWGGvuMoBkQIdIBdSSVifFBJTitGbAT4csGk5Bsfq8mOa8ZsPjZSMrNSne5-HDBItbDB2JLcl-FcyGhugz0mQ6H4kPxBDnc5f8su_QkV3cmOQP4zCQbXRIbOx3Gx9WxGGH9ref97nD7WVx1ppNxunff1G8PcxfZ0908fL4PLtfUFvWsqMlVqqxIFGi4M42vGYVcGugtqYsUSx541TbNMY4rErbOiYMIgeuVCWEbPlFcXPc-21Ca8JKr2OfhkOyXrnD51JjOchhwEAO6PUR3aX41WPu_tlSiErWaigDBUfKpphzwlbvkt-atNfA9ChdH6XrMY7SdcV_AAdhdTY</recordid><startdate>200701</startdate><enddate>200701</enddate><creator>Jing, Wen-cai</creator><creator>Li, Xiao-jingi</creator><creator>Liu, Kun</creator><creator>Xu, Tian-hua</creator><creator>Zhang, Yi-mo</creator><creator>Zhang, Hong-xia</creator><creator>Jia, Da-gong</creator><creator>Peng, Gang-Ding</creator><general>Springer Nature B.V</general><general>School of Electrical Engineering and Telecommunications, University of New South Wales, Australia%College of Precision Instrument & Opto-electronics Engineering, Natioual Education ministry Key Laboratory of Opto electronics Information and Technical Science, Tianjin University, Tianjin 300072, China%School of Electrical Engineering and Telecommunications, University of New South Wales, Australia</general><general>College of Precision Instrument & Opto-electronics Engineering, Natioual Education ministry Key Laboratory of Opto electronics Information and Technical Science, Tianjin University, Tianjin 300072, China</general><scope>AAYXX</scope><scope>CITATION</scope><scope>2B.</scope><scope>4A8</scope><scope>92I</scope><scope>93N</scope><scope>PSX</scope><scope>TCJ</scope></search><sort><creationdate>200701</creationdate><title>Enhancement of signal-noise-ratio in a distributed polarization mode coupling detection system</title><author>Jing, Wen-cai ; 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issn | 1673-1905 1993-5013 |
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source | Springer Nature |
subjects | Birefringence Coupled modes Coupling Data processing Fiber optics Hilbert transformation Noise Noise measurement Noise reduction Noise threshold Optical communication Optical fibers Polarization Signal processing Spatial resolution Wavelet transforms White light interferometry |
title | Enhancement of signal-noise-ratio in a distributed polarization mode coupling detection system |
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