期刊文献+

基于光纤光栅的编解码器的研究 被引量:3

Encoder/Decoder Based on Optical Fiber Grating
下载PDF
导出
摘要 介绍了基于光纤光栅的光码分多址编解码方法,重点研究了基于均匀光纤光栅、啁啾光纤光栅、超结构光纤光栅编解码器的构造方法,总结了其最新发展动态,指出其应用于光码分多址系统的优缺点。 Several typical encoder/decoder method based on optical fiber grating for optical code division multiple access system is presented. Specifically, the configurations of three kinds of encoders/decoders, such as uniform optical fiber Bragg grating, chirp optical fiber Bragg grating and super-structure fiber grating have been emphatically investigated. Their recent development status are overviewed.
出处 《半导体光电》 EI CAS CSCD 北大核心 2006年第5期595-597,601,共4页 Semiconductor Optoelectronics
基金 国家自然科学基金资助项目(60577045) 北京邮电大学电子工程学院博士基金资助项目
关键词 光码分多址 光纤光栅 编解码器 optical code division multiple access optical fiber grating encoder/decoder
  • 相关文献

参考文献10

  • 1丁美玲,丛军,章献民,陈抗生.光码分多址系统中FBG编解码器的设计[J].电信科学,2001,17(9):57-59. 被引量:1
  • 2丁美玲,章献民,陈抗生.DS-OCDMA系统中FBG编解码器的研究[J].光子学报,2001,30(8):998-1002. 被引量:1
  • 3Kim S,Yu K,Park N.A new family of space/wavelength/time spread three-dimensional optical code for OCDMA networks[J].J.Lightwave Technol.,2000,18(4):502-511.
  • 4Salchi J A,Weiner A,Heritage J.Coherent ultrashot light pulse CDMA communication systems[J].J.Lightwave Technol.,1990,LT-8:478-491.
  • 5Jepsen A G,Johnson A E,Maniloff E S,et al.Fiber Bragg grating based spectral encoder/decoder for lightwave CDMA[J].Electron.Lett.,1999,35(13):1096-1097.
  • 6Eggleton B J,Krug P A,Poladian L,et al.Long superstructure Bragg gratings in optical fibers[J].Electron.Lett.,1994,30:1620-1622.
  • 7Teh P C,Petropoulos P,Ibsen M,et al.Phase encoding and decoding of short pulses at 10 Gb/s using superstructured fiber Bragg gratings[J].IEEE Photon.Technol.Lett.,2001,13(2):154-157.
  • 8Wang X,Matsushima K,Kitayama K I,et al.Demonstration of the improvement of apodized 127-chip SSFBG in coherent time-spreading OCDMA network[A].OFC'2004[C].2004.MF74.
  • 9Nellen P M,Bromniman R,Sennhauser U.Strain measurements on concrete beam and carbon fiber cable with distributed optical fiber Bragg grating sensors[J].Opt.Eng.,1996,35(9):2570-2577.
  • 10Wang X,Wada N Y,Hamanaka T,et al.10-user,truly-asynchronous OCDMA experiment with 511-chip SSFBG en/decoder and SC-based optical thresholder[A].OFC/NFOEC2005[C].2005,6:PDP33.

二级参考文献4

同被引文献16

  • 1王守源,余重秀,张琦.基于光纤光栅编解码和修正素数跳频码的一种光码分多址系统方案研究[J].中国激光,2005,32(8):1081-1085. 被引量:7
  • 2E. Lach, K. Schuh, B. Junginger et al.. Challenges for 100 Gbit/s ETDM transmission and implementation [C]. OFC 2007, OWE1.
  • 3Jianjun Yu, Xiang Zhou, Lei Xu et al.. A novel scheme to generate 100Gbit/s DQPSK signal with large PMD tolerance [C]. OFC 2007, 1-3.
  • 4Hongchun Bao, William Shieh. Transmission simulation of coherent optical OFDM signals in WDM systems [J]. Opt. Express, 2007, 15(8) :4410-4418.
  • 5Kyusang Lee, Chan T. D. Thai, June-Koo Kevin Rhee. All optical discrete Fourier transform processor for 100 Gbps OFDM transmission[J]. Opt. Ea-press, 2008, 16(6) :4023- 4028.
  • 6Kenichiro Tanaka, Seiji Norimatsu. Transmission performance of WDM/OFDM hybrid systems over optical fibers [J]. Electronics and Communications in Japan, 2007, 90(10):1431 -1440.
  • 7FATHALLAH H, LESLIE A R, SOPHIE L. Passive Optical Fast Frequency-Hop CDMA Communications System [J]. Journal of Lightwave Technol., 1999, 17(3): 397-405.
  • 8TEH P C, PETROPOULOS P, IBSEN M, ET AL. A Comparative Study of the Performance of Seven- and 63-Chip Optical Code-Division Multiple-Access Encoders and Decoders Based on Superstructured Fiber Bragg Gratings [J], Journal of Lightwave Technol., 2001, 19 (9) :1352-1365.
  • 9HAMANAKA T, WANG X, WADA N, et al. Ten-User Truly Asynchronous Gigabit OCDMA Transmission Experiment With a 511-Chip SSFBG En/Decoder [J]. Journal of Lightwave Technol., 2006, 24 (1): 95-102.
  • 10WANG X, WADA N, MIYAZAKI T, et al. Field trial of 3-WDM 10-OCDMA 10.71 Gbps, truly asynchronous, WDM/OCDMA using hybrid E/D without FEC and optical thresholding [C]. OFC'06 Anaheim, USA: 2006. PD 44.

引证文献3

二级引证文献8

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部