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Scheduled virtual topology design under periodic traffic in transparent optical networks

机译:透明光网络中周期性流量下的调度虚拟拓扑设计

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摘要

This paper investigates offline planning and scheduling in transparent optical networks for a given periodic traffic demand. The main objective is to minimize the number of transceivers needed which make up for the main network cost. We call this problem ldquoScheduled Virtual Topology Designrdquo and consider two variants: non-reconfigurable and reconfigurable equipment. We formulate both problems as exact MILPs (Mixed Integer Linear Programs). Due to their high complexity, we propose a more scalable tabu search heuristic approach, in conjunction with smaller MILP formulations for the associated subproblems. The main motivation of our research efforts is to assess the benefits of using reconfigurable equipment, realized as a reduction in the number of required transceivers. Our results show that the achieved reductions are not very significant, except for cases with large network loads and high traffic variability.
机译:针对给定的周期性流量需求,本文研究了透明光网络中的脱机计划和调度。主要目的是减少所需的收发器数量,以弥补主网络成本。我们称此问题为“计划虚拟拓扑设计”,并考虑两个变体:不可重配置和可重配置设备。我们将两个问题都表述为精确的MILP(混合整数线性程序)。由于它们的高度复杂性,我们提出了一种更具可扩展性的禁忌搜索启发式方法,并结合了针对相关子问题的较小MILP公式。我们研究工作的主要动机是评估使用可重构设备的好处,这是通过减少所需收发器的数量来实现的。我们的结果表明,除了网络负载较大和流量可变性较高的情况外,所实现的减少幅度不是很大。

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