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

Shien Kuei Liaw, Pei Shih Tsai, Kuang Yu Hsu, Andrey Tverjanovich

Результат исследований: Публикации в книгах, отчётах, сборниках, трудах конференцийстатья в сборнике материалов конференции

1 цитирование (Scopus)

Выдержка

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.

Язык оригиналаанглийский
Название основной публикации16th European Conference on Networks and Optical Communications, NOC 2011
Страницы103-106
Число страниц4
СостояниеОпубликовано - 19 сен 2011
Событие16th European Conference on Networks and Optical Communications, NOC 2011 - Newcastle-Upon-Tyne, Великобритания
Продолжительность: 20 июл 201122 июл 2011

Конференция

Конференция16th European Conference on Networks and Optical Communications, NOC 2011
СтранаВеликобритания
ГородNewcastle-Upon-Tyne
Период20/07/1122/07/11

Отпечаток

Fiber Bragg gratings
Dense wavelength division multiplexing
Crosstalk
Wavelength division multiplexing
Signal to noise ratio
flexibility

Предметные области Scopus

  • Электротехника и электроника
  • Связь

Цитировать

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. В 16th European Conference on Networks and Optical Communications, NOC 2011 (стр. 103-106). [5996243]
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. стр. 103-106
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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.",
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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. в 16th European Conference on Networks and Optical Communications, NOC 2011., 5996243, стр. 103-106, Newcastle-Upon-Tyne, Великобритания, 20/07/11.

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. стр. 103-106 5996243.

Результат исследований: Публикации в книгах, отчётах, сборниках, трудах конференцийстатья в сборнике материалов конференции

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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.

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