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A multipopulation parallel genetic simulated annealing-based QoS routing and wavelength assignment integration algorithm for multicast in optical networks.

机译:一种基于多种群并行遗传模拟退火的QoS路由和波长分配集成算法,用于光网络中的组播。

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摘要

In this paper, we propose an integrated Quality of Service (QoS) routing algorithm for optical networks. Given a QoS multicast request and the delay interval specified by users, the proposed algorithm can find a flexible-QoS-based cost suboptimal routing tree. The algorithm first constructs the multicast tree based on the multipopulation parallel genetic simulated annealing algorithm, and then assigns wavelengths to the tree based on the wavelength graph. In the algorithm, routing and wavelength assignment are integrated into a single process. For routing, the objective is to find a cost suboptimal multicast tree. For wavelength assignment, the objective is to minimize the delay of the multicast tree, which is achieved by minimizing the number of wavelength conversion. Thus both the cost of multicast tree and the user QoS satisfaction degree can approach the optimal. Our algorithm also considers load balance. Simulation results show that the proposed algorithm is feasible and effective. We also discuss the practical realization mechanisms of the algorithm.
机译:在本文中,我们提出了一种用于光网络的集成服务质量(QoS)路由算法。在给定QoS多播请求和用户指定的延迟间隔的情况下,该算法可以找到基于灵活QoS的成本次优路由树。该算法首先基于多种群并行遗传模拟退火算法构造多播树,然后根据波长图将波长分配给树。在该算法中,将路由和波长分配集成到单个过程中。对于路由,目标是找到代价次优的组播树。对于波长分配,目标是最小化多播树的延迟,这是通过最小化波长转换的数量来实现的。因此,组播树的成本和用户QoS满意度都可以达到最佳。我们的算法还考虑了负载平衡。仿真结果表明,该算法是可行和有效的。我们还将讨论该算法的实际实现机制。

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