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Overview: A Simulation Based Metaheuristic Optimization Approach to Optimal Power Dispatch Related to a Smart Electric Grid

机译:概述:基于仿真的智能电网最佳电力调度的仿真的仿真优化方法

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摘要

The implementation of intelligent power grids, in form of smart grids, introduces new challenges to the optimal dispatch of power. Thus, optimization problems need to be solved that become more and more complex in terms of multiple objectives and an increasing number of control parameters. In this paper, a simulation based optimization approach is introduced that uses metaheuristic algorithms for minimizing several objective functions according to operational constraints of the electric power system. The main idea is the application of simulation for computing the fitness-values subject to the solution generated by a metaheuristic optimization algorithm. Concerning the satisfaction of constraints, the central concept is the use of a penalty function as a measure of violation of constraints, which is added to the cost function and thus minimized simultaneously. The corresponding optimization problem is specified with respect to the emerging requirements of future smart electric grids.
机译:以智能电网的形式实施智能电网的实施引入了对功率最佳调度的新挑战。因此,在多个目标和越来越多的控制参数方面,需要解决优化问题,其变得越来越复杂。在本文中,引入了一种基于仿真的优化方法,其利用成型算法来根据电力系统的操作约束最小化几个客观函数。主要思想是应用模拟,以计算通过成逐优化算法产生的解决方案的适应性值。关于约束的满足,中央概念是使用惩罚功能作为违反约束的衡量标准,这被添加到成本函数并因此同时最小化。关于未来智能电网的新出现要求指定了相应的优化问题。

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