A New Dynamic Wavelength Assignment Scheme in Wavelength-Convertible WBS Networks

Chingfang Hsu, Fang-Sheng Lin, Ke-Kuan Hsu
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Abstract

In the paper, we study the wavelength assignment problem in waveband switching (WBS) networks, which is composed of multi-granular optical cross-connect (MG-OXCs) interconnected by fiber links. WBS networks with MG-OXCs can route traffic at multiple granularities at the same time; therefore, the complexity of switching fabrics can be efficiently reduced. Moreover, in order to relax the wavelength continuity constraint on lightpath establishments, each MG-OXC node is equipped with certain number of wavelength converters. Focusing on minimizing the extra port consumption and utilizing wavelength converters in an efficient manner, we propose a heuristic algorithm, named Least-Configuration with Bounded Conversion (LCBC), under the dynamic traffic environment. Simulation results show that our algorithm can achieve a considerable port saving and significant performance gain by a well-design cost function.
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波长可转换WBS网络中一种新的动态波长分配方案
本文研究了由光纤链路相互连接的多颗粒光交叉连接(mg - oxc)组成的波段交换(WBS)网络中的波长分配问题。具有mg - oxc的WBS网络可以同时在多个粒度上路由流量;因此,可以有效地降低交换结构的复杂性。此外,为了放宽光路设置的波长连续性约束,每个MG-OXC节点都配备了一定数量的波长转换器。为了最大限度地减少额外的端口消耗和有效地利用波长转换器,我们提出了一种动态流量环境下的启发式算法,称为最小配置有限转换(LCBC)。仿真结果表明,该算法通过设计良好的代价函数,可以实现可观的端口节省和显著的性能提升。
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