DWDM系统中动态基单元信道分配的传输损伤研究

Yugnanda Malhotra
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引用次数: 0

摘要

在非等间隔(US)密集波分复用(DWDM)系统中,传统的固定基单元(FBU)方法优于等间隔(ES)DWDM系统。针对下一代光通信系统对带宽的不同需求,设计了一种新的动态基单元(DBU)非均匀信道(US)分配策略,并对比了现有固定基信道分配策略的性能优势。该算法决定了覆盖光带宽的基本单元的总数。在第一个基本单元$BU_{i=0}$中的信道分配之后,当前的工作讨论了将后续基本单元$(BU_{i=1,2,..})$中的信道数量减少2倍的情况。此外,相邻基单元被分配偶数和奇数频率槽。因此,这是一种最优策略,它在信道分配中考虑到最大的非均匀性。这大大减少了在使用色散移位光纤的DWDM系统中突出的四波混频(FWM)的非线性效应。根据带宽占用和四波混频产品的数量对该算法进行了评价。观察到FWM的性能降低超过34.6%。带宽占用比目前流行的不均匀重复传输(URUS)、配对传输(URUS)和交替配对传输(PURUS)方案分别降低了13.7%、6.25%和7.45%。当使用DBU-US时,观察到较高的改进因子。结果表明,动态基单元-非等间隔信道分配方法具有较好的优势,是高速DWDM传输系统的理想选择。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigation of Transmission Impairment for Dynamic Base Unit Channel Allocation in DWDM Systems
The traditional approach of Fixed Base Units (FBU) in Unequally Spaced (US) Dense Wavelength Division Multiplexed (DWDM) systems outperforms Equally Spaced (ES)DWDM Systems. Currently in the scenarios of diverse bandwidth requirements for next generation optical communication systems, a novel Dynamic Base Unit (DBU) unequal channel (US) allocation strategy is designed, and the performance benefits are investigated over the traditional existing Fixed Base channel allocations. The proposed algorithm decides the total number of base units covering the optical bandwidth. After the channel allocation in the first base unit $BU_{i=0}$ the current work discusses the case of reducing the number of channels in subsequent Base Unit $(BU_{i=1,2,..})$ by a factor of 2. Moreover, the adjacent base units are allotted even and odd frequency slots. Thus, this is an optimum strategy where maximum non-uniformity is taken care of in channel allocations. This drastically reduces the nonlinear effects of Four Wave Mixing (FWM) prominent in DWDM systems using Dispersion Shifted Fibers. The proposed algorithm is evaluated in terms of the bandwidth occupancy and number of Four Wave Mixing products. Performance up to greater than 34.6% reduction in FWM is observed. Bandwidth occupancy shows 13.7%, 6.25% and 7.45% reduction than the popular Unequally Repeated US(URUS), Paired URUS and Alternately Paired RUS (PURUS) schemes respectively. The high improvement factor is observed when using DBU-US. It is concluded that Dynamic Base Unit-Unequally Spaced channel allocation is superior and is considered a suitable candidate for high speed DWDM transmission systems.
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