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Performance Analysis of Multi-Fiber WDM Network with Limited-Range Wavelength Conversion

机译:有限距离波长转换的多光纤WDM网络的性能分析

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摘要

Wavelength routed optical networks have emerged as a technology that can effectively utilize the enormous bandwidth of the optical fiber. Wavelength conversion technology and wavelength converters play an important role in enhancing fiber utilization and in reducing the overall call blocking probability of the network. In this paper, we develop a new analytical model to calculate the average blocking probability in multi-fiber link networks using limited range wavelength conversion. Based on the results obtained, we conclude that the proposed analytical model is simple and yet can effectively analyze the impact of wavelength conversion ranges and number of fibers on network performance. Also a new heuristic approach for placement of wavelength converters to reduce blocking probabilities is explored. Finally, we analyze network performance with the proposed scheme. It can be observed from numerical simulations that limited range converters placed at a few nodes can provide almost the same blocking probability as full range wavelength converters placed at all the nodes. We also show that being equipped with a multi-fiber per-link has the same effect as being equipped with the capability of limited range wavelength conversion. So a multi-fiber per-link network using limited range wavelength conversion has similar blocking performance as a full wavelength convertible network. Since a multi-fiber network using limited range wavelength conversion could use fewer converters than a single-fiber network using limited range wavelength conversion and because wavelength converters are today more expensive than fiber equipment, a multi-fiber network in condition with limited range wavelength conversion is less costly than a single fiber network using only limited range wavelength conversion. Thus, multi-fiber per-link network using limited range wavelength conversion is currently a more practical method for all optical WDM networks. Simulation studies carried out on a 14-node NSFNET, a 10-node CERNET (China Education and Research Network), and a 9-node regular mesh network validate the analysis.
机译:波长路由光网络已经成为一种可以有效利用光纤巨大带宽的技术。波长转换技术和波长转换器在提高光纤利用率和降低网络的总体呼叫阻塞可能性方面发挥着重要作用。在本文中,我们开发了一个新的分析模型,以使用有限范围的波长转换来计算多光纤链路网络中的平均阻塞概率。根据获得的结果,我们得出结论,所提出的分析模型简单,但可以有效地分析波长转换范围和光纤数量对网络性能的影响。还探索了一种新的启发式方法,用于放置波长转换器以减少阻塞概率。最后,我们用提出的方案分析网络性能。从数值模拟可以看出,放置在几个节点上的有限范围转换器可以提供与放置在所有节点上的全范围波长转换器几乎相同的阻塞概率。我们还表明,配备多光纤每链路与配备有限范围的波长转换功能具有相同的效果。因此,使用有限范围波长转换的多光纤每链路网络具有与全波长可转换网络相似的阻塞性能。由于使用有限范围波长转换的多光纤网络可以比使用有限范围波长转换的单光纤网络使用更少的转换器,并且由于当今波长转换器比光纤设备更昂贵,因此在有限范围波长转换的情况下的多光纤网络与仅使用有限范围的波长转换的单光纤网络相比,它的成本更低。因此,对于所有光学WDM网络,使用有限范围的波长转换的多光纤每链路网络当前是一种更为实用的方法。在14节点的NSFNET,10节点的CERNET(中国教育研究网络)和9节点的常规网状网络上进行的仿真研究验证了该分析。

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