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Dynamic Wavelength Allocation in IP/WDM Metro Access Networks

机译:IP / WDM城域接入网中的动态波长分配

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摘要

Increasing demand for bandwidth and proliferation of packet based traffic represent a challenge for today''s metro networks, which have been traditionally designed to carry circuit- switched connections. The problem is further complicated by the constraints of cost efficiency and traffic adaptability, imposed by the limited customer base in the metro area. Recently, several architectures have been proposed for future metro access networks. Nearly all of these solutions support dynamic reconfigurability, however reconfiguration policies have not been fully explored yet. In this paper, reconfiguration policies for IP/WDM metro access networks with switching delays are considered, where dynamic reconfiguration corresponds to dynamic allocation of wavelengths to access nodes. Exact formulation of the dynamic wavelength allocation (DWA) problem is developed as a Markov Decision Process (MDP) and a new cost function is proposed to attain both throughput efficiency and fairness. For larger problems, a heuristic approach based on first passage probabilities is developed and shown to yield nearly optimum performance through simulations.
机译:对带宽的需求增加和基于分组的流量激增对当今的城域网构成了挑战,而城域网传统上被设计为承载电路交换连接。由于城市地区有限的客户群所带来的成本效率和交通适应性的限制,使问题进一步复杂化。最近,已经为未来的城域接入网提出了几种架构。几乎所有这些解决方案都支持动态可重新配置性,但是尚未充分探索重新配置策略。在本文中,考虑了具有切换延迟的IP / WDM城域接入网的重配置策略,其中动态重配置对应于向接入节点的波长动态分配。动态波长分配(DWA)问题的精确表述被开发为马尔可夫决策过程(MDP),并提出了一种新的成本函数以同时达到生产效率和公平性。对于较大的问题,开发了一种基于首次通过概率的启发式方法,并通过仿真显示出了几乎最佳的性能。

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