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Design of energy efficient optical networks with software enabled integrated control plane

机译:具有软件功能的集成控制平面的节能光网络设计

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The growing energy consumption has posed new challenges for the future development of networks. Some earlier work has proposed solutions to improve energy consumption based on the existing control plane, for example, node/links sleeping. This study presents a new possibility to reduce network energy consumption by proposing a new integrated control plane structure utilising Software Defined Networking technologies. The integrated control plane increases the efficiencies of exchanging control information across different network domains, while introducing new possibilities to the routing methods and the control over quality of service (QoS). The structure is defined as an overlay generalised multi-protocol label switching (GMPLS) control model. With the defined structure, the integrated control plane is able to gather information from different domains (i.e. optical core network and the access networks), and enable energy efficiency networking over a wider area. In the case presented, the integrated control plane collects the network energy related information and the QoS requirements of different types of traffic. This information is used to define the specific group of traffic's (flow's) routing behaviours. With the flexibility of the routing structure, results show that the energy efficiency of the network can be improved without compromising the QoS for delay/blocking sensitive services.
机译:不断增长的能源消耗为网络的未来发展提出了新的挑战。一些较早的工作提出了基于现有控制平面(例如,节点/链路休眠)来改善能耗的解决方案。这项研究提出了一种新的可能性,即通过利用软件定义的网络技术提出一种新的集成控制平面结构来降低网络能耗。集成控制平面提高了跨不同网络域交换控制信息的效率,同时为路由方法和服务质量(QoS)控制引入了新的可能性。该结构定义为覆盖通用多协议标签交换(GMPLS)控制模型。通过定义的结构,集成控制平面能够收集来自不同域(即光核心网和接入网)的信息,并能够在更广的范围内实现能效联网。在呈现的情况下,集成控制平面收集网络能量相关信息以及不同类型流量的QoS要求。此信息用于定义特定的流量(流)路由行为组。利用路由结构的灵活性,结果表明,可以在不影响延迟/阻塞敏感服务的QoS的情况下提高网络的能效。

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