首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Optimum algorithm for WDM channel allocation for reducing four-wave mixing effects
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Optimum algorithm for WDM channel allocation for reducing four-wave mixing effects

机译:WDM信道分配的最佳算法,可降低四波混频效应

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摘要

A novel channel allocation method, based on optical Golomb ruler (OGR), that allows reduction of the FWM effect while maintaining bandwidth efficiency along with the algorithms has been presented in this paper. Very high-capacity, long-haul optical communication systems can be designed by wavelength division multiplexing (WDM) of high-bit-rate channels and by using erbium-doped fiber amplifiers (EDFAs) to periodically compensate the fiber loss. In such all-optical systems, the effects of chromatic dispersion and nonlinearities accumulate during light propagation, imposing limits on the achievable performance. Chromatic dispersion at 1.55 pm can be effectively reduced by using dispersion-shifted fiber (DSF). The use of very-low-dispersion fiber, however, enhances the efficiency of generation of four-wave mixing (FWM) waves by reducing the phase mismatch naturally provided by the fiber dispersion. For this reason, crosstalk due to FWM is the dominant nonlinear effect in long-haul WDM systems using DSFs. To reduce four-wave-mixing crosstalk in high capacity long-haul repeater less WDM light wave systems, the use of the channel allocation method that involves unequal spaced channels has been proposed.
机译:本文提出了一种基于光学哥伦布尺(OGR)的新颖的信道分配方法,该方法可以在保持带宽效率的同时降低FWM效应,并提出了算法。可以通过高比特率信道的波分复用(WDM)和使用掺using光纤放大器(EDFA)定期补偿光纤损耗来设计超高容量,长距离的光通信系统。在这样的全光学系统中,色散和非线性的影响在光传播过程中累积,从而限制了可达到的性能。通过使用色散位移光纤(DSF),可以有效减少1.55 pm时的色散。但是,使用极低色散的光纤可通过减少光纤色散自然产生的相位失配来提高四波混合(FWM)波的生成效率。因此,在使用DSF的长距离WDM系统中,由FWM引起的串扰是主要的非线性效应。为了减少大容量长距离无中继器的WDM光波系统中的四波混频串扰,已提出了使用不等间隔信道的信道分配方法。

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