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Link-protection and FIPP p-cycle designs in translucent elastic optical networks

机译:半透明弹性光网络中的链路保护和FIPP P循环设计

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Elastic optical networks (EONs) are able to provide high spectrum utilization efficiency due to flexibility in resource assignment. In translucent EONs, by employing regenerators and using advanced modulation formats for transmission, spectrum efficiency can be further improved. Survivability is regarded as an important aspect of EONs, and p-cycle protection is considered to be an attractive scheme due to its fast restoration and high protection efficiency. In this paper, we propose methods for evaluating and selecting p-cycles for both link protection (LP) and failure-independent path protection (FIPP) to survive single-link failures. After considering the various factors that affect the performance of a p-cycle, we propose two evaluation metrics for LP and FIPP, namely, individual p-cycle cost and set of cycles cost. Based on these metrics, we propose two algorithms for selecting a set of p-cycles in translucent EONs: Traffic Independent P-cycle Selection (TIPS), which selects a set of cycles without knowledge of the traffic, and Traffic-Oriented P-cycle Selection (TOPS), which takes given traffic information into account. A routing and spectrum assignment algorithm is designed for translucent EONs, and our p-cycle design algorithms are evaluated using both static and dynamic traffic models. Simulation results show that the proposed algorithms have better performance than commonly used baseline algorithms. We also compare the performance of LP p-cycles and FIPP p-cycles. (C) 2020 Optical Society of America
机译:由于资源分配的灵活性,弹性光网络(EONS)能够提供高频谱利用效率。在半透明的EON中,通过采用再生器并使用用于传输的高级调制格式,可以进一步提高频谱效率。生存能力被认为是eons的一个重要方面,并且由于其快速恢复和高保护效率,P循环保护被认为是一个有吸引力的方案。在本文中,我们提出了用于评估和选择用于链路保护(LP)和失败的路径保护(FIPP)的P-Cycles以存活单链路故障的方法。在考虑影响P-循环性能的各种因素之后,我们为LP和FIPP提出了两个评估度量,即个体P循环成本和一组周期成本。基于这些指标,我们提出了两种用于在半透明EONS中选择一组P循环的算法:流量独立的P周期选择(提示),其在没有通信的情况下选择一组循环,以及以业务为导向的P循环选择(上面),它考虑了考虑到的交通信息。路由和频谱分配算法专为半透明EON设计,并且使用静态和动态流量模型来评估我们的P循环设计算法。仿真结果表明,该算法具有比常用基线算法更好的性能。我们还比较LP P-Cycles和FIPP P-Cycles的性能。 (c)2020美国光学学会

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