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Green Packet Optical Transport Networks (P-OTNs) Based on Photonic PBB-TE Switches and Minimized EEE Overhead

机译:基于光子PBB-TE交换机和最小EEE开销的绿色分组光传输网络(P-OTN)

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摘要

Carrier Ethernet exhibits an enormous potential to be a cost-effective and less complex replacement of SONET/SDH especially after the ratification of IEEE standard 802.1Qay Provider Backbone Bridge-Traffic Engineering (PBB-TE). The recent IEEE standard 802.3az Energy Efficient Ethernet (EEE) presents another opportunity for service providers to select Ethernet as a technology of choice in the backbone while leveraging on its promise for achieving green transport network. In this paper, we propose two novel architectures of photonic PBB-TE core and edge switches, which enhance the usability of PBB-TE networks by reducing power consumption in individual switches in conjunction with passive optical bypassing and EEE. We also formulate the problem of energy-aware scheduling as an optimization problem whose objective is to minimize the overall energy consumption for transmitting Ethernet frames while satisfying their delay requirements. This model will be used as a benchmark while evaluating the performance of packet coalescing, a promising and recently proposed approach, as well as the performance of EEE.
机译:运营商级以太网具有巨大的潜力,可成为经济高效且不太复杂的SONET / SDH替代产品,尤其是在批准IEEE标准802.1Qay Provider骨干网桥流量工程(PBB-TE)之后。最新的IEEE标准802.3az节能以太网(EEE)为服务提供商提供了另一个选择以太网作为骨干网选择技术的机会,同时利用了其实现绿色传输网络的承诺。在本文中,我们提出了两种新颖的光子PBB-TE核心和边缘交换机架构,通过结合无源光旁路和EEE降低单个交换机的功耗来增强PBB-TE网络的可用性。我们还将能量感知调度问题表述为一个优化问题,其目标是在满足以太网延迟要求的同时,将传输以太网帧的总体能耗降至最低。该模型将用作评估数据包合并性能(一种有前途且最近提出的方法)以及EEE性能的基准。

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