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Power-compensated 3×3 reconfigurable bidirectional multiwavelength cross-connect device based on strain tunable fiber Bragg gratings. / Liaw, Shien Kuei; Tsai, Pei Shih; Hsu, Kuang Yu; Tverjanovich, Andrey.

16th European Conference on Networks and Optical Communications, NOC 2011. 2011. p. 103-106 5996243.

Research output: Chapter in Book/Report/Conference proceedingConference contributionResearchpeer-review

Harvard

Liaw, SK, Tsai, PS, Hsu, KY & Tverjanovich, A 2011, Power-compensated 3×3 reconfigurable bidirectional multiwavelength cross-connect device based on strain tunable fiber Bragg gratings. in 16th European Conference on Networks and Optical Communications, NOC 2011., 5996243, pp. 103-106, 16th European Conference on Networks and Optical Communications, NOC 2011, Newcastle-Upon-Tyne, United Kingdom, 20/07/11.

APA

Liaw, S. K., Tsai, P. S., Hsu, K. Y., & Tverjanovich, A. (2011). Power-compensated 3×3 reconfigurable bidirectional multiwavelength cross-connect device based on strain tunable fiber Bragg gratings. In 16th European Conference on Networks and Optical Communications, NOC 2011 (pp. 103-106). [5996243]

Vancouver

Liaw SK, Tsai PS, Hsu KY, Tverjanovich A. Power-compensated 3×3 reconfigurable bidirectional multiwavelength cross-connect device based on strain tunable fiber Bragg gratings. In 16th European Conference on Networks and Optical Communications, NOC 2011. 2011. p. 103-106. 5996243

Author

Liaw, Shien Kuei ; Tsai, Pei Shih ; Hsu, Kuang Yu ; Tverjanovich, Andrey. / Power-compensated 3×3 reconfigurable bidirectional multiwavelength cross-connect device based on strain tunable fiber Bragg gratings. 16th European Conference on Networks and Optical Communications, NOC 2011. 2011. pp. 103-106

BibTeX

@inproceedings{3744c2553fb949f59a6431b3122770ea,
title = "Power-compensated 3×3 reconfigurable bidirectional multiwavelength cross-connect device based on strain tunable fiber Bragg gratings",
abstract = "A power-compensated, 3×3 reconfigurable bidirectional multiwavelength optical cross-connect (B-MOXC) device for dense wavelength division multiplexing networks is proposed using strain-tunable fiber Bragg gratings and optical circulators. The B-MOXC characteristics are verified by measuring inter-channel and intra-channel crosstalks, as well as signal-to-noise-ratio. The signals are reconfigurable by control of the fiber Bragg gratings. The selective B-MOXC device could provide more reconfigurability, flexibility and survivability in WDM networks.",
author = "Liaw, {Shien Kuei} and Tsai, {Pei Shih} and Hsu, {Kuang Yu} and Andrey Tverjanovich",
year = "2011",
month = sep,
day = "19",
language = "English",
isbn = "9781861353733",
pages = "103--106",
booktitle = "16th European Conference on Networks and Optical Communications, NOC 2011",
note = "16th European Conference on Networks and Optical Communications, NOC 2011 ; Conference date: 20-07-2011 Through 22-07-2011",

}

RIS

TY - GEN

T1 - Power-compensated 3×3 reconfigurable bidirectional multiwavelength cross-connect device based on strain tunable fiber Bragg gratings

AU - Liaw, Shien Kuei

AU - Tsai, Pei Shih

AU - Hsu, Kuang Yu

AU - Tverjanovich, Andrey

PY - 2011/9/19

Y1 - 2011/9/19

N2 - A power-compensated, 3×3 reconfigurable bidirectional multiwavelength optical cross-connect (B-MOXC) device for dense wavelength division multiplexing networks is proposed using strain-tunable fiber Bragg gratings and optical circulators. The B-MOXC characteristics are verified by measuring inter-channel and intra-channel crosstalks, as well as signal-to-noise-ratio. The signals are reconfigurable by control of the fiber Bragg gratings. The selective B-MOXC device could provide more reconfigurability, flexibility and survivability in WDM networks.

AB - A power-compensated, 3×3 reconfigurable bidirectional multiwavelength optical cross-connect (B-MOXC) device for dense wavelength division multiplexing networks is proposed using strain-tunable fiber Bragg gratings and optical circulators. The B-MOXC characteristics are verified by measuring inter-channel and intra-channel crosstalks, as well as signal-to-noise-ratio. The signals are reconfigurable by control of the fiber Bragg gratings. The selective B-MOXC device could provide more reconfigurability, flexibility and survivability in WDM networks.

UR - http://www.scopus.com/inward/record.url?scp=80052703884&partnerID=8YFLogxK

M3 - Conference contribution

AN - SCOPUS:80052703884

SN - 9781861353733

SP - 103

EP - 106

BT - 16th European Conference on Networks and Optical Communications, NOC 2011

T2 - 16th European Conference on Networks and Optical Communications, NOC 2011

Y2 - 20 July 2011 through 22 July 2011

ER -

ID: 34616339