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Energy-efficient design for multi-granular optical transport networks with optical reach consideration

机译:考虑光覆盖范围的多粒度光传输网络的节能设计

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Energy consumption of the optical backbone is expected to contribute to a significant portion of the energy consumed by the telecommunication networks. As an enhanced bandwidth utilization and management extent of the optical Wavelength Division Multiplexing (WDM) technology, multi-granular switching concept has been shown to guarantee energy savings when compared to the traditional traffic grooming. However, Multi-Granular Optical Transport Network (MG-OTN) design and planning still calls for legitimate and self-contained design specifications. In this paper, we revisit the Routing and Multi-Granular Path Assignment (RMGPA) problem by having the objective of minimized power consumption and integrating the optical reach limitation of optical signals in the design and planning problem. The new problem is formulated as a Mixed Integer Linear Programming (MILP) model. For large scale design scenarios, we propose an efficient heuristic approach that is capable of solving the power minimization problem in feasible runtime. The heuristics is verified within 2% average approximation to the MILP solutions under small scale scenarios, and the numerical results of the design and planning problem heuristic show that significant power savings up to 55% in MG-OTNs can be achieved with the proper selection of the wavelength capacity, waveband size, number of wavebands per fiber, and the value of the optical reach. Furthermore, the proposed heuristic has been shown to guarantee high fairness among the nodes with respect to the power fairness index, which is at the order of 92-99% under various traffic scenarios.
机译:预计光骨干网的能量消耗将占电信网络消耗能量的很大一部分。作为光波分复用(WDM)技术提高的带宽利用率和管理范围,与传统的流量疏导相比,多粒度交换概念已显示出可以保证节能的目的。但是,多粒度光传输网络(MG-OTN)的设计和规划仍然需要合法且独立的设计规范。在本文中,我们以最小化功耗为目标,并在设计和规划问题中整合了光信号的光可达限制,从而重新审视了路由和多粒度路径分配(RMGPA)问题。新问题被公式化为混合整数线性规划(MILP)模型。对于大规模设计方案,我们提出了一种有效的启发式方法,该方法能够在可行的运行时间中解决功耗最小化的问题。在小规模情况下,对启发式算法的验证与MILP解决方案的平均近似值在2%以内,设计和计划问题启发式算法的数值结果表明,通过正确选择MG-OTN,可以节省多达55%的功率。波长容量,波段大小,每根光纤的波段数以及光学范围的值。此外,相对于功率公平性指数,提出的启发式方法已经证明可以保证节点之间的高公平性,在各种流量情况下,功率公平性指数约为92-99%。

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