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Optimal voltage regulation for unbalanced distribution networks considering distributed energy resources

机译:考虑分布式能源的不平衡配电网最优电压调节

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摘要

With increasing penetration of distributed generation in the distribution networks (DN), the secure and optimal operation of DN has become an important concern. In this paper, an iterative quadratic constrained quadratic programming model to minimize voltage deviations and maximize distributed energy resource (DER) active power output in a three phase unbalanced distribution system is developed. The optimization model is based on the linearized sensitivity coefficients between controlled variables (e.g., node voltages) and control variables (e.g., real and reactive power injections of DERs). To avoid the oscillation of solution when it is close to the optimum, a golden search method is introduced to control the step size. Numerical simulations on modified IEEE 13 nodes test feeders show the efficiency of the proposed model. Compared to the results solved by heuristic search (harmony algorithm), the proposed model converges quickly to the global optimum.
机译:随着分布式发电在配电网(DN)中的渗透率的提高,DN的安全和最佳运行已成为一个重要问题。本文提出了一种迭代二次约束二次规划模型,该模型可在三相不平衡配电系统中最小化电压偏差并最大化分布式能源(DER)有功功率输出。最优化模型基于控制变量(例如节点电压)和控制变量(例如DER的有功功率和无功功率注入)之间的线性灵敏度系数。为了避免接近最佳值时解的波动,引入了黄金搜索方法来控制步长。在改进的IEEE 13节点测试馈线上的数值仿真表明了该模型的有效性。与通过启发式搜索(谐波算法)解决的结果相比,该模型可快速收敛到全局最优。

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