外文翻译--高比特率传输系统中非线性失真的表征
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1、 1 中文 4940 字 出处: Optical Communication Theory and Techniques. Springer US, 2005: 137-150 Characterization of Intrachannel Nonlinear Distortion in Ultra-high Bit-rate Transmission Systems Invited Paper Robert I. Killey, Vitaly Mikhailov, Shamil Appathurai, and Polina Bayvel Optical Networks Group, De
2、partment of Electronic and Electrical Engineering, University College London, Torrington Place, London WC1E 7JE, UK r.killeyee.ucl.ac.uk Abstract: Signal distortion due to intrachannel cross-phase modulation and four-wavemixing limits transmission distances in ultra-high bit-rate optical communicati
3、ons.To gain an understanding of the effects of nonlinear pulse interactions and to quantify the effectiveness of new methods to suppress them, accurate characterization techniques are required to isolate the effects of fibre nonlinearity from the other impairments which occur in transmission. In thi
4、s paper, we discuss two techniques: firstly, the direct measurements of the signal waveform distortion (pulse timing jitter, amplitude fluctuations, and FWM-induced ghostpulse power) and, secondly, measurements of the BER-dependence on optical signal launch power. We describe the use of these charac
5、terization methods to investigate the suppression of nonlinear distortion through the use of optimized dispersion maps, alternate-polarization and alternate-phase return-to-zero signal formats. Key words: dispersion management; optical fiber nonlinearity; four wave mixing; cross phase modulation. 1.
6、 INTRODUCTION Limits to the transmission distances achievable in high bit-rate systems are imposed by nonlinear refraction. The intensity modulation of the signals induces optical phase shifts due to the intensity-dependence of the refractive index of the transmission fibres. In WDM systems with nar
7、row channel spacing, the nonlinear refraction leads to interactions between channels through cross-phase modulation (XPM) and four-wave-mixing (FWM). As the channel bit-rate and channel wavelength spacing is increased, the impact of these interchannel effects is reduced, due to the walk-off between
8、the channels caused by the fibre dispersion, and intrachannel nonlinear effects become increasingly dominant. These effects result from the dispersion-induced pulse broadening and the consequent nonlinear interaction between overlapping pulses within the same channel. As in the multi-channel case, t
9、he pulse overlap leads to cross-phase modulation and four-wave-mixing. These effects were investigated experimentally and numerically in 110 and a number of methods have been proposed and 2 demonstrated aimed at suppressing intrachannel nonlinear distortion, through optimization of the dispersion ma
10、p and pre-compensation 1116, the use of optimized signal formats 17, in particular the use of phase modulated returnto- zero formats 1826, alternate-polarization RZ 2729, subchannel multiplexing30, polarization mode dispersion-supported transmission 31 and channel precoding 32. In this paper, we des
11、cribe experimental and numerical techniques developed to characterize intrachannel cross-phase modulation and four-wave-mixing in long-haul 40 Gbit/s systems. We explain how these techniques can be used to quantify the improvements in performance achievable using new methods, including optimized dis
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