The role of network topology on the energy efficiency of IP-over-WDM architectures

F. Musumeci, M. Tornatore, Riccardo Fiandra, A. Pattavina
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引用次数: 2

Abstract

Recently, researchers have focused their attention in investigating how much energy is consumed within optical Wavelength Division Multiplexed (WDM) networks, as energy requirement is becoming one of the main constraints in their design. Several solutions, typically exploiting optical switching technologies, have been proposed to reduce the excess of optical/ electronic/optical (OEO) signal conversions and electronic processing operations, which are known to be particularly power-hungry. However, most of the studies developed so far provide results that closely related to the specific case-study topologies under consideration, and the resulting conclusions may tend to be topology-dependent. In this paper, we consider a large set of randomly-generated topologies, characterized by different values of the network connectivity index (i.e., a measure of the average number of links per node within the network) and study the influence of this parameter on the energy consumption of different IP-over-WDM network architectures, namely Basic, Transparent and Opaque IP-over-WDM. We aim at quantifying how the the energy consumption of these different IP-over-WDM network architectures depends on network connectivity, geographical dimension and offered traffic.
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网络拓扑对IP-over-WDM架构能效的影响
近年来,光波分复用(WDM)网络的能量消耗已成为研究人员关注的焦点,因为能量需求已成为WDM网络设计的主要制约因素之一。已经提出了几种解决方案,通常利用光交换技术来减少光/电子/光(OEO)信号转换和电子处理操作的过剩,这些操作被认为特别耗电。然而,迄今为止开展的大多数研究提供的结果与所考虑的具体案例研究拓扑密切相关,所得结论可能倾向于依赖于拓扑。在本文中,我们考虑了大量随机生成的拓扑,其特征是网络连通性指数(即网络中每个节点的平均链路数的度量)的不同值,并研究了该参数对不同IP-over-WDM网络体系结构(即基本、透明和不透明IP-over-WDM)能耗的影响。我们的目标是量化这些不同的IP-over-WDM网络架构的能耗如何取决于网络连接、地理维度和提供的流量。
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