Sparse-partial wavelength conversion in wavelength-routed all-optical networks

Xiaowen Chu, B. Li, Zhensheng Zhang
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引用次数: 8

Abstract

Wavelength conversion has been shown as one of the key techniques that can improve the blocking performance in a wavelength-routed all-optical network. Given that wavelength converters nowadays are still very expensive, how to make effective use of the limited number of wavelength converters becomes an important issue. In this paper, we propose a novel sparse-partial wavelength conversion (SPWC) architecture with the inherent flexibility that can facilitate network carriers to migrate the optical backbone to support wavelength conversion. We demonstrate that this architecture can significantly save the number of wavelength converters while still achieving excellent blocking performance. We further investigate the wavelength converter placement problem. Simulation results indicate that, with appropriate wavelength assignment and wavelength converter placement scheme, the performance of the wavelength-routed all-optical network with only 1-5% of wavelength conversion capability is very close to that of the networks with full-complete wavelength conversion capability.
波长路由全光网络中的稀疏部分波长转换
波长转换是提高波长路由全光网络阻塞性能的关键技术之一。鉴于目前波长转换器仍然非常昂贵,如何有效利用有限数量的波长转换器成为一个重要问题。本文提出了一种新颖的稀疏部分波长转换(SPWC)架构,该架构具有固有的灵活性,可以方便网络运营商迁移光骨干以支持波长转换。我们证明了这种架构可以显著节省波长转换器的数量,同时仍然具有优异的阻塞性能。我们进一步研究了波长转换器的放置问题。仿真结果表明,通过合理的波长分配和波长转换器的配置方案,波长路由全光网络的波长转换能力仅为波长转换能力的1-5%,其性能与具有完全波长转换能力的网络非常接近。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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