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An optical packet metro architecture for Fixed Mobile Convergence in the cloud era

机译:云时代的固定移动融合的光分组城域架构

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摘要

The present paper addresses future network architectures considered for Fixed Mobile Convergence, where users can access resources transparently either through fixed access technologies or through the mobile RAN. Optical technologies rely on Wavelength Division Multiplexing (WDM) to meet continuously growing bandwidth demands. However, although in the core network optical circuit switching may efficiently support huge traffic aggregates, closer to the access, in future Metropolitan Area Networks (MAN), it is necessary to provide a finer granularity, and a dynamical bandwidth control, to very heterogeneous traffic demands. This is supported by Optical Packet Switching relying on WDM slotted Add/Drop Multiplexing (WSADM). A flow-based transfer mode, compatible with SDN control is first specified, and applied to bidirectional MAN rings. This mode is shown to provide several methods for supporting both local and global repair in case of failure. Mathematical models are derived to assess optical packet insertion performance and are used to illustrate how WSADM rings can support MAN performance requirements. Lastly, the impact of locating the IP edge, and Data Centres closer to the users than in legacy architectures, within the MAN is addressed.
机译:本文讨论了考虑用于固定移动融合的未来网络架构,其中用户可以通过固定访问技术或移动RAN透明地访问资源。光学技术依靠波分复用(WDM)来满足不断增长的带宽需求。但是,尽管在核心网络中,光电路交换可以有效地支持庞大的流量聚合,但更接近于接入,但在未来的城域网(MAN)中,有必要为非常异构的流量提供更精细的粒度和动态带宽控制需要。依靠WDM时隙加/减复用(WSADM)的光分组交换支持此功能。首先指定与SDN控制兼容的基于流的传输模式,并将其应用于双向MAN环。已显示此模式提供了几种在故障情况下支持本地和全局修复的方法。推导出数学模型以评估光分组插入性能,并用于说明WSADM环如何支持MAN性能要求。最后,解决了在城域网中将IP边缘和数据中心设置得比用户更接近用户的影响。

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