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首页> 外文期刊>IEICE Transactions on Communications >Sparse Placement of Wavelength Convertible 3R Regenerators and Joint Resource Assignment in Large-Scale Optical Networks
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Sparse Placement of Wavelength Convertible 3R Regenerators and Joint Resource Assignment in Large-Scale Optical Networks

机译:大型光网络中波长可转换3R再生器的稀疏放置和联合资源分配

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摘要

It is believed that the wavelength switched optical network (WSON) technology is moving towards being adopted by large-scale networks. Wavelength conversion and signal regeneration through reamplify-ing, reshaping, and retiming (3R) are beneficial to support the expansion of WSON. In many cases, these two functions can be technically integrated into a single shared physical component, namely the wavelength convertible 3R regenerator (WC3R). However, fully deploying such devices is in-feasible due to their excessive cost. Thus, this topic serves as a motivation behind the investigation of the sparse placement issue of WC3Rs presented in this paper. A series of strategies are proposed based on knowledge of the network. Moreover, a novel adaptive routing and joint resource assignment algorithm is presented to provision the lightpaths in WSON with sparsely placed WC3Rs. Extensive simulation trials are conducted under even and uneven distribution of WC3R resource. Each strategic feature is examined for its efficiency in lowering the blocking probability. The results reveal that carefully designed sparse placement of WC3Rs can achieve performance comparable to that of full WC3R placement scenario. Furthermore, the expenditure of WC3R deployment also depends on the type of used WC3Rs characterized by the wavelength convertibility, i.e., fixed WC3R or tunable WC3R. This paper also investigates WSON from the perspective of cost and benefit by employing different types of WC3Rs in order to find the possibility of more efficient WC3R investment.
机译:可以相信,波长交换光网络(WSON)技术正朝着被大型网络采用的方向发展。通过重新放大,整形和重新定时(3R)进行波长转换和信号再生,有利于支持WSON的扩展。在许多情况下,这两种功能可以从技术上集成到单个共享的物理组件中,即波长可转换3R再生器(WC3R)。然而,由于它们的过度成本,完全部署这样的设备是不可行的。因此,该主题是研究本文提出的WC3R的稀疏放置问题的动机。基于网络知识提出了一系列策略。此外,提出了一种新颖的自适应路由和联合资源分配算法,为WSON中的光路提供稀疏放置的WC3R。在WC3R资源分布不均的情况下进行了广泛的模拟试验。检查每个战略特征在降低阻塞概率方面的效率。结果表明,精心设计的WC3R稀疏放置可以实现与完全WC3R放置方案可比的性能。此外,WC3R部署的支出还取决于以波长可转换为特征的已使用WC3R的类型,即固定WC3R或可调WC3R。本文还通过使用不同类型的WC3R从成本和收益的角度对WSON进行了研究,以发现更有效的WC3R投资的可能性。

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