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色散管理孤子传输特性分析

Analysis on the Characters of Dispersion-Managed Soliton Transmission
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摘要 色散管理孤子光波系统的色散图周期由具有正负色散值的两段光纤组成,并且在系统中周期性放置集中放大器及滤波器装置。采用变分法获得了描述此种系统性能的常微分方程组,并利用这组方程数值研究了各种参量对孤子传输性能的影响。研究结果表明,虽然从整体趋势上看,当要求色散管理孤子有较好的稳定性时,应适当降低系统的色散管理强度,但在一定条件下,调整光纤放大器的位置以及正负色散光纤的色散差值,可同时获得相对较大的色散管理强度和好的孤子稳定性;总体来讲,集总放大器的位置会对孤子传输的稳定性、色散管理孤子的能量增强因子、脉冲最佳入射位置以及波分复用系统中的信道间的孤子碰撞致定时抖动等系统性能参量产生较明显的影响,可通过优化放大器的位置使系统的性能得到优化。 The lumped amplifiers and filters are placed on the dispersion-managed soliton system with two-step periodic dispersion map. A set of coupled ordinary different equations for characterizing the system are derived by variational procedure. Applying the set of equations the system stability is studied numerically. It is shown that in the whole, the dispersion map strengh should be decreased when better stability of soliton is demanded, there are particular values of parameters including the lumped amplifier position,s and dispersion differences to make dispersion-managed soliton stable and dispersion map strengh strong simultaneously, In general, the lumped amplifier positions will greatly influence the stability of ,soliton, energy enhancement factor, the optimal launching position of pulse and the inter channel collision-induced timing jitter for wavelength division multiplexing (WDM) soliton system. Good performance of system can be obtained with the optimized lumped amplifier positions.
出处 《中国激光》 EI CAS CSCD 北大核心 2005年第9期1193-1196,共4页 Chinese Journal of Lasers
关键词 光通信 色散管理孤子 变分法 滤波 集总放大器 能量增强因子 optical communication dispersion-managed soliton variational approaeh filters lumped amplifier energy enhancement factor
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  • 1Patrick C. Chou, John M. Fini, Hermann A. Haus.Demostration of a feed-forward PMD compensation technique[J]. IEEE Photon. Technol. Lett. , 2002,14(2):161-163 被引量:1
  • 2N. Gisin, B. Hutter. Combined effects of polarization mode dispersion and polarization dependent losses in optical fibers[J].Opt. Commun. , 1997, 142:119-125 被引量:1
  • 3Nobuhiko Kikuchi. Analysis of signal degree of polarization degradation used as control signal for optical polarization mode dispersion compensation [J]. J. Lightwave Technol. , 2001, 19(4) :480-486 被引量:1
  • 4B. Hutter, N. Gisin. Anomalous pulse spreading in birefringent optical fibers with polarlzation-dependent losses[J]. Opt. Lett. , 1997, 22(8):504-506 被引量:1
  • 5J. Hansryd, H. Sunnerud, P. A. Andrekson. Impact of PMD on four-wave-mixing-induced crosstalk in WDM systems [J].IEEE Photon. Technol. Lett. , 2000, 12(9):1261-1263 被引量:1
  • 6Y. Li, A. Yariv. Solutions to the dynamical equation of polarization-mode dispersion and polarization-dependent losses[J]. J. Opt. Soc. Am. B, 2000, 17(11):1821-1827 被引量:1
  • 7P.Lu, L. Chen, X. Bao. Statistical distribution of polarization-dependent loss in presence of the polarization-mode dispersion in single-mode fibers [J]. IEEE Photon. Technol.Lett.. 2001, 13(5) :451-453 被引量:1
  • 8J. P. Gordon, H. Kogelnik. PMD fundamentals: polarization mode dispersion in optical fibers [J]. Natl. Acad. Sci. USA,2000, 97(9) :4541-4550 被引量:1
  • 9A. Meccozzi, M. Shataif. The statistics of polarization-dependent loss in optical communication systems [J]. IEEEPhoton. Technol. Lett. , 2002, 14(3):313-315 被引量:1
  • 10Agrawal G P. Nonlinear Fiber Optics. (2nd Edition) San Diego.. Academic Press, 1995. 178-182 被引量:1

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