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Offline Impairment Aware RWA Algorithms for Cross-Layer Planning of Optical Networks

机译:离线损伤意识RWA算法,用于光网络的跨层规划

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摘要

Transparent optical networks are the enabling infrastructure for converged multi-granular networks in the future Internet. The cross-layer planning of these networks considers physical impairments in the network layer design. This is complicated by the diversity of modulation formats, transmission rates, amplification and compensation equipments, or deployed fiber links. Thereby, the concept of quality of transmission (QoT) attempts to embrace the effects of the physical layer impairments, to introduce them in a multi-criterium optimization and planning process. This paper contributes in this field by the proposal and comparative evaluation of two novel offline impairment aware planning algorithms for transparent optical networks, which share a common QoT evaluation function. The first algorithm is based on an iterative global search driven by a set of binary integer linear programming formulations. Heuristic techniques are included to limit the binary programming complexity. The second algorithm performs different pre-orderings of the lightpath demand, followed by a sequential processing of the lightpath demands. The performance and the scalability of both approaches are investigated. Results reveal great scalability properties of the global search algorithm, and a performance similar to or better than the sequential schemes.
机译:透明光网络是未来Internet中融合多粒网络的启用基础设施。这些网络的跨层规划考虑了网络层设计中的物理损伤。这与调制格式,传输速率,放大和补偿设备或部署光纤链路的多样性复杂化。因此,传输质量(QOT)的概念试图拥抱物理层损伤的影响,将它们介绍在多标准优化和规划过程中。本文通过对透明光网络的两个小说离线损伤意识规划算法的提案和比较评估,贡献了这一领域,该透明光网络具有共同QoT评估功能。第一算法基于由一组二进制整数线性编程配方驱动的迭代全局搜索。包括启发式技术以限制二进制编程复杂性。第二种算法对LightPath需求的不同预购,然后是闪光路径要求的顺序处理。调查了两种方法的性能和可扩展性。结果显示全球搜索算法的巨大可扩展性,以及与顺序方案类似或更好的性能。

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