全光网络中调度和随机光路需求的路由和备用容量分配

M. Koubàa, N. Puech, M. Gagnaire
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引用次数: 5

摘要

本文研究了在无波长转换的光传输网络中,工作路径和保护路径对计划光路和随机光路的要求。由于网络资源有限,目标是使拒绝率最小化。为了实现这一目标,我们使用备份多路复用技术来最小化确保保护所需的备用资源。与随机光路需求(rld)不同,计划光路需求(SLDs)是连接需求,其设置和拆卸时间是事先已知的,而随机光路需求(rld)的到达日期和保持时间是事先未知的,并且是在飞行中建立的。我们提出并实现了两种路由算法来处理调度和随机光路需求下的路由和备用容量分配问题。前者利用预定光路需求的先验知识,在考虑rld之前计算sld的路由和备用容量分配。后者使用顺序算法同时考虑所有需求,该算法动态计算路由和备用容量分配,即逐个需求。我们在拒绝率方面比较了所提出的算法。
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Routing and spare capacity assignment for scheduled and random lightpath demands in all-optical networks
In this paper we consider working and protection paths for scheduled and random lightpath demands in an optical transport network without wavelength conversion. As the network resources are limited, the objective is to minimize the rejection ratio. To achieve this goal, we use backup multiplexing techniques to minimize the spare resources required to ensure protection. Scheduled lightpath demands (SLDs) are connection demands for which the set-up and tear-down times are known in advance as opposed to random lightpath demands (RLDs) whose date arrival and holding times are not known in advance and that are established on the fly. We propose and implement two routing algorithms to deal with the routing and spare capacity assignment problem for scheduled and random lightpath demands. The former exploits the a priori knowledge of scheduled lightpath demands to compute the routing and spare capacity assignment for the SLDs before considering the RLDs. The latter considers all the demands simultaneously using a sequential algorithm that computes the routing and spare capacity assignment on the fly, that is, demand by demand. We compare the proposed algorithms in terms of the rejection ratio.
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