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Look ahead Volt/VAR Control: A comparison of integrated and coordinated methods

机译:展望未来电压/无功控制:集成方法和协调方法的比较

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In this paper, multiple approaches for solving Volt/VAR Control (VVC) optimization problem are compared. Two different VVC schemes are evaluated in detail for managing Distribution control assets such as Load Tap Changers, capacitor banks and voltage regulators on day ahead basis to achieve multiple objective functions by minimizing switching operations of the assets. The first approach is an integrated optimization based on a dynamic programming algorithm converging to a global optimal solution with the drawback of time of convergence. The second approach is a coordinated optimization algorithm that is computationally efficient at the expense of optimality (an approximate solution to the minimum cost of the objective function). The algorithms are applied on a real world distribution network. Robust Matlab/OpenDSS simulation platform is used to compare the effectiveness of the algorithms.
机译:本文比较了解决电压/无功控制(VVC)优化问题的多种方法。每天对两种不同的VVC方案进行详细评估,以管理配电控制资产,例如有载分接开关,电容器组和电压调节器,从而通过最小化资产的开关操作来实现多种目标功能。第一种方法是基于动态编程算法的集成优化,该算法收敛到全局最优解,但存在收敛时间的缺点。第二种方法是一种协调优化算法,该算法在计算效率上却以最优性为代价(对目标函数的最小成本的近似解)。该算法被应用于现实世界的分销网络。健壮的Matlab / OpenDSS仿真平台用于比较算法的有效性。

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