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Multi-path provisioning in elastic optical network with dynamic on-request optimal defragmentation strategy

机译:弹性光网络中的多路径供应,具有动态的On-Request最佳碎片整理策略

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摘要

Elastic Optical Networks (EONs) are extensively accepted promising solution for future ultra-high-speed optical transmission, due to their capability of efficient and flexible assignment of immense optical bandwidth to the heterogeneous traffic demand. However, it undergoes through an aggravated form of the spectrum fragmentation problem due to the heterogeneous bandwidth requirements, spectrum continuity and contiguity constraints. Several techniques have been presented in the literature to get the optimal solution of this problem while multipath provisioning comes out to be very compelling among them. Although, it creates further challenges due to high hardware requirement and more spectrum consumption due to guard-bands. In this paper, we propose a novel scheme, called optimal spectrum defragmentation (DF) strategy with split spectrum approach (OSDSSA), to tackle this limitation of multi-path provisioning by utilizing minimum number of spectral paths, which improves the scalability, reduces the extra spectrum consumption by guard-bands and avoids the exhaustion of transponders at nodes. The proposed scheme initially serves a connection request using k-shortest routing paths and first-fit spectrum allocation policy in a best possible way. In case, if a connection request cannot be served then the proposed mechanism proceeds with the triggering of Process Defragmentation on the link disjoint shortest paths followed by splitting of traffic demand on corresponding link-disjoint paths. The Process Defragmentation is triggered on the active connections at the immediate right and left of the largest continuous available spectrum block on the link-disjoint shortest paths sequentially until the requested amount of frequency slots (FSs) are achieved. In this work, reconfiguration includes spectrum re-tuning without changing the routing paths, thereby reducing the unnecessary service disruption, DF complexity and cost, leading to improvement in quality of service (QoS) of the network. The performance of the proposed scheme has been assessed through simulation results where single path and multi-path provisioning algorithms have been considered as benchmarks. Through our proposed scheme bandwidth blocking performance, spectrum utilization ratio, and degree of fragmentation have also been improved significantly.
机译:由于它们的高效和灵活性分配对异构交通需求的能力和灵活性的能力,弹性光网络(EONS)广泛地接受了未来超高速光传输的有希望的解决方案。然而,由于异构带宽要求,频谱连续性和连续性约束,它通过频谱碎片问题的加重形式进行。在文献中介绍了几种技术,以获得这个问题的最佳解决方案,而多径供应出现在它们之间非常引人注目。虽然,由于守护带,由于高硬件需求和更多的频谱消耗,它会产生进一步的挑战。在本文中,我们提出了一种新颖的方案,称为具有分流频谱方法(OSDSSA)的最佳频谱碎片整理(DF)策略,以通过利用最小数量的频谱路径来解决多路径配置的限制,这提高了可伸缩性,减少了保护频带的额外频谱消耗,避免在节点处耗尽转发器。所提出的方案最初使用K-Shorest路径和首次频谱分配策略提供连接请求,以最佳方式。在情况下,如果不能提供连接请求,则所提出的机制与链路上的链路上的处理碎片整理的触发触发,然后在相应的链路不相交路径上拆分业务需求。在链路上的最大连续可用频谱块的直接右侧和左侧的活动连接上依次触发过程碎片整理顺序触发,直到实现了所请求的频率插槽(FSS)。在这项工作中,重新配置包括频谱重新调谐而不改变路由路径,从而降低了不必要的服务中断,DF复杂度和成本,从而提高了网络的服务质量(QoS)。通过仿真结果评估了所提出的方案的性能,其中单路径和多路径供应算法被视为基准。通过我们所提出的方案带宽阻断性能,谱利用率和碎裂程度也显着提高。

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