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Simulation-based Parameter Optimization Framework for Large-Scale Hybrid Smart Grid Communications Systems Design

机译:大规模混合智能电网通信系统设计的基于仿真的参数优化框架

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The design of reliable, dynamic, fault-tolerant hybrid smart grid communication networks is a challenge to achieve for autonomous power grids. Hybrid networks use different communications technologies for different area networks. A simulation-based parameter optimization framework is proposed to tune parameters of hybrid communication technologies to achieve the optimal network performance. It consists of three main components: a parallel executor used to speedup a list of simulations; a sampler running simulations using the parallel executor at each generation; and a hybrid stochastic optimization algorithm for tuning configurable parameters of hybrid designs and applications. The proposed hybrid metaheuristic optimization algorithm combines an evolutionary algorithm with a gradient method to quickly achieve an approximately global optimum solution. Three optimization test functions are employed to train the adjustable parameters of the hybrid algorithm. Results show the proposed parameter optimization framework can help the designer choose the right hybrid architecture with an optimal parameter set for a large-scale broadband PLC-WiMAX hybrid smart grid communication network.
机译:对于自主电网,可靠,动态,容错的混合智能电网通信网络的设计是一项挑战。混合网络将不同的通信技术用于不同的局域网。提出了一种基于仿真的参数优化框架,以优化混合通信技术的参数,以实现最佳的网络性能。它由三个主要组件组成:一个用于加速模拟列表的并行执行器;在每一代使用并行执行器运行模拟的采样器;以及用于调整混合设计和应用程序的可配置参数的混合随机优化算法。所提出的混合元启发式优化算法将进化算法与梯度方法结合在一起,以快速实现近似全局最优解。使用三个优化测试函数来训练混合算法的可调参数。结果表明,所提出的参数优化框架可以帮助设计人员为大型宽带PLC-WiMAX混合智能电网通信网络选择具有最佳参数集的正确混合架构。

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