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Spectrum Continuity and Contiguity based Dedicated Protection for Flexible Optical Networks

机译:基于频谱连续性和连续性的专用光网络专用保护

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Elastic optical networks (EONs) have been pointed out as a promising candidate for transporting data with high transmission rates in adaptive optical networks. Consequently, the occurrence of a failure in a simple element may cause the interruption of various services. Survival mechanisms have been crucial to try to overcome the problems created by possible failures. In this paper, we propose a new dedicated path protection mechanism for link-failure survivability in EONs, referred to as Spectrum Continuity and Contiguity based Dedicated Protection (SCCDP). SCCDP tries to avoid the trap topology problem in search for a link-disjoint route pair. In addition, the calculation of the link-disjoint routes is based on modified version of the Dijkstra's algorithm, referred to as Spectrum Continuity and Contiguity based Shortest Path (SCCSP), which chooses the pair of routes according to the end-to-end spectrum continuity and contiguity. The performance of the proposed algorithm is compared to other well-known algorithms in the Literature. Two different network topologies are used in our simulations for comparison purposes. Our proposal achieved better results concerning blocking probability.
机译:弹性光网络(EON)已被指出是在自适应光网络​​中以高传输速率传输数据的有希望的候选者。因此,在简单元件中发生故障可能会导致各种服务中断。生存机制对于克服可能的故障造成的问题至关重要。在本文中,我们提出了一种新的专用路径保护机制,用于EON的链路故障可生存性,称为基于频谱连续性和连续性的专用保护(SCCDP)。 SCCDP尝试在搜索链路不相交路由对时避免陷阱拓扑问题。此外,链路不相交路由的计算基于Dijkstra算法的修改版本,该算法称为“频谱连续性和基于连续性的最短路径(SCCSP)”,该算法根据端到端频谱选择一对路由连续性和连续性。将所提出算法的性能与文献中其他众所周知的算法进行比较。为了进行比较,我们的仿真中使用了两种不同的网络拓扑。我们的建议在阻塞概率方面取得了更好的结果。

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