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Smart-Grid Backbone Network Real-Time Delay Reduction via Integer Programming

机译:通过整数编程减少智能电网骨干网的实时延迟

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This research investigates an optimal delay-based virtual topology design using integer linear programming (ILP), which is applied to the current backbone networks such as smart-grid real-time communication systems. A network traffic matrix is applied and the corresponding virtual topology problem is solved using the ILP formulations that include a network delay-dependent objective function and lightpath routing, wavelength assignment, wavelength continuity, flow routing, and traffic loss constraints. The proposed optimization approach provides an efficient deterministic integration of intelligent sensing and decision making, and network learning features for superior smart grid operations by adaptively responding the time-varying network traffic data as well as operational constraints to maintain optimal virtual topologies. A representative optical backbone network has been utilized to demonstrate the proposed optimization framework whose simulation results indicate that superior smart-grid network performance can be achieved using commercial networks and integer programming.
机译:这项研究调查了使用整数线性规划(ILP)的基于延迟的最佳虚拟拓扑设计,该设计已应用于当前的骨干网络,例如智能电网实时通信系统。应用了网络流量矩阵,并使用ILP公式解决了相应的虚拟拓扑问题,这些公式包括与网络延迟相关的目标函数和光路路由,波长分配,波长连续性,流路由和流量损耗约束。所提出的优化方法通过自适应地响应随时间变化的网络流量数据和操作约束来维持最佳的虚拟拓扑,从而为智能电网的卓越操作提供了有效的确定性集成,以进行智能感测和决策,并提供网络学习功能。代表性的光骨干网络已被用来演示所提出的优化框架,其仿真结果表明,使用商业网络和整数编程可以实现卓越的智能电网性能。

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