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Methodology for alleviation of voltage excursions in large power systems

机译:减轻大型电力系统中电压波动的方法

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This paper presents a method for minimizing the sum of the square of voltage deviations by a least-square minimization technique, and thus improving the voltage profile in a given system by adjusting control variables, such as tap position of transformers, reactive power injection of VAR sources and generator excitations. The control variables and dependent variables are related by a matrix J whose elements are computed as the sensitivity matrix. Linear programming is used to calculate voltage increments that minimize transmission losses. The active and reactive power optimization sub-problems are solved separately taking advantage of the loose coupling between the two problems. The proposed algorithm is applied to IEEE 14-and 30-bus systems and numerical results are presented. The method is computationally fast and promises to be suitable for implementation in real-time dispatch centres.
机译:本文提出了一种通过最小二乘最小化技术将电压偏差平方和最小化的方法,从而通过调整控制变量(如变压器的抽头位置,无功功率注入)来改善给定系统中的电压曲线源和发电机激励。控制变量和因变量由矩阵J关联,矩阵J的元素被计算为灵敏度矩阵。线性编程用于计算使传输损耗最小的电压增量。利用有两个问题之间的松散耦合,分别解决有功和无功功率优化子问题。该算法被应用于IEEE 14总线和30总线系统,并给出了数值结果。该方法计算速度快,有望适用于实时调度中心。

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