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Introducing flexible and synthetic optical networking: planning and operation based on network function programmable ROADMs

机译:引入灵活的合成光纤网络:基于网络功能可编程ROADM的规划和运营

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摘要

Elastic optical networks are envisaged as promising solutions to fulfill the diverse bandwidth requirements for the emerging heterogeneous network applications. To support flexible allocation of spectrum resources the optical network nodes need to be agile. Among the different proposed solutions for elastic nodes, the one based on architecture of demand (AoD) exhibits considerable flexibility against the other alternatives. The node modules in the case of AoD are not hard-wired, but can be connected/disconnected to any input/output port according to the requirements. Thus, each AoD node and the network (fabricated with AoD nodes) as a whole acts like an optical field-programmable gate array. This flexibility inherent in AoD can be exploited for different purposes, such as for cost-efficient and energy-efficient design of the networks. This study looks into the cost-efficient network planning issue for synthetic networks implemented through AoD nodes. The problem is formalized as an integer linear programming formulation for presenting the optimal solution. Furthermore, a scalable and effective heuristic algorithm is proposed for cost-efficient design, and its performance is compared with the optimal solution. The designed networks with AoD nodes are further investigated for a dynamic scenario, and their blocking probability due to limited switching resources in the nodes is examined. To alleviate the blocking performance for the dynamic case, an efficient synthesis strategy along with a scheme for optimal placement of switching resources within the network nodes is presented. Extensive results show that 1) even at high loads, the network with AoD nodes achieves saving of switching modules up to 40% compared to the one with static reconfigurable optical add??? drop multiplexers (ROADMs) through a proper network design, 2) by diminishing the spectrum selective switches the overall power consumption of the network decreases by more than 25% for high loads, and 3) for - he dynamic scenario the blocking owing to the node modules constraint is alleviated significantly by slightly augmenting the switching devices and optimally deploying them within the network nodes.
机译:弹性光网络被设想为满足新兴异构网络应用的各种带宽需求的有前途的解决方案。为了支持频谱资源的灵活分配,光网络节点必须敏捷。在针对弹性节点提出的不同解决方案中,一种基于需求体系结构(AoD)的解决方案相对于其他替代方案具有相当大的灵活性。对于AoD,节点模块不是硬接线的,但可以根据要求连接/断开到任何输入/输出端口。因此,每个AoD节点和网络(由AoD节点组成)整体上都像一个光现场可编程门阵列。可以将AoD固有的这种灵活性用于不同目的,例如网络的经济高效设计。这项研究调查了通过AoD节点实现的合成网络的经济高效的网络规划问题。该问题被形式化为用于提出最佳解的整数线性规划公式。此外,提出了一种可扩展且有效的启发式算法,以进行具有成本效益的设计,并将其性能与最佳解决方案进行比较。对于动态场景,将进一步研究具有AoD节点的设计网络,并检查由于节点中切换资源有限而导致的阻塞概率。为了减轻动态情况下的阻塞性能,提出了一种有效的综合策略以及一种用于在网络节点内最佳放置交换资源的方案。大量结果表明:1)即使在高负载下,具有AoD节点的网络与具有静态可重配置光模块的交换模块相比,也可以节省多达40%的交换模块?下降多路复用器(ROADM)通过适当的网络设计; 2)通过减少频谱选择开关,对于高负载,网络的总体功耗降低了25%以上; 3)-动态场景中由于节点造成的阻塞通过稍微增加交换设备并在网络节点内最佳地部署它们,可以大大减轻模块的约束。

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