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Comprehensive performance modeling and analysis of multicasting in optical networks

机译:综合性能建模与光网络多播分析

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Multicasting is becoming increasingly important in today's networks. In optical networks, optical splitters facilitate the multicasting of optical signals. By eliminating the transmission of redundant traffic over certain links, multicasting can improve network performance. However, in a wavelength-division multiplexed (WDM) optical network, the lack of wavelength conversion necessitates the establishment of a single multicast circuit (light-tree) on a single wavelength. On the other hand, establishing several unicast connections (lightpaths) to satisfy a multicast request, while requiring more capacity, is less constrained in terms of wavelength assignment. The objective of the paper is to evaluate the tradeoff between capacity and wavelength continuity in the context of optical multicasting. To this end, we develop accurate analytical models with moderate complexity for computing the blocking probability of multicast requests realized using light-trees, lightpaths, and combinations of light-trees and lightpaths. Numerical results indicate that a suitable combination of light-trees and lightpaths performs best when no wavelength conversion is present.
机译:多播在今天的网络中变得越来越重要。在光网络中,光学分离器促进光信号的多播。通过在某些链路上消除冗余流量的传输,多播可以提高网络性能。然而,在波分复用(WDM)光网络中,缺乏波长转换需要在单个波长上建立单个多播电路(光树)。另一方面,建立几个单播连接(LIGHTPATH)以满足多播请求,同时需要更多容量,在波长分配方面不太受约束。本文的目的是在光学多播背景下评估容量和波长连续性之间的权衡。为此,我们开发精确的分析模型,具有适度的复杂性,用于计算使用光 - 树,光路和光 - 光路的组合实现的多播请求的阻塞概率。数值结果表明,当没有波长转换时,光树和光路的合适组合最佳地执行。

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