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Modeling of Step Voltage Regulators in Multiphase Load Flow Solution of Distribution Systems Using Newton's Method and Augmented Nodal Analysis

机译:牛顿法和扩展节点分析在配电系统多相潮流解决方案中的阶跃调压器建模

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摘要

The increasing complexity of distribution systems requires general, efficient, and large-scale capable methods. This paper proposes a new technique to find the tap positions of step voltage regulators in multiphase load flow solvers in a direct and efficient manner. This is achieved by applying Newton method to the system of equations obtained by using the concept of augmented matrix formulation and adding the constraint equations. This approach allows employing the regulator equations directly. The regulators are modeled by taking into account the line drop compensator circuit with its settings, i.e., the desired voltage level, bandwidth, and R' and X' settings, which represent the scaled impedance parameters of the distribution feeder between the regulator and the load center at which the voltage is controlled. The limits of the regulators such as minimum and maximum tap positions are also accounted for. The proposed technique represents a voltage regulator with transformer equations using an augmented matrix formulation. The mismatch equations are developed using the desired voltage setting in constraint equations with transformation ratio of the transformer being the unknown variable. The Jacobian matrix, which is constructed using the augmented matrix formulation, is expanded to hold the constraint equations of voltage regulators. The proposed new method is tested on a variety of test circuits including the large-scale IEEE 8500 Node Test Feeder, and the minimum number of iterations reported in the literature is achieved as presented in this paper.
机译:分配系统日益复杂的需求需要通用,有效和大规模的方法。本文提出了一种新技术,可以直接有效地找到多相潮流解算器中阶跃调压器的抽头位置。这是通过将牛顿法应用于通过使用增强矩阵公式化的概念而获得的方程组并添加约束方程来实现的。这种方法允许直接采用调节器方程。通过考虑线路压降补偿器电路及其设置(即所需的电压电平,带宽以及R'和X'设置)来对调节器进行建模,R'和X'设置代表调节器和负载之间分配馈线的缩放阻抗参数。控制电压的中心。还考虑了调节器的限制,例如最小和最大抽头位置。所提出的技术代表了使用增强矩阵公式的带有变压器方程式的稳压器。在变压器方程式的变比为未知变量的约束方程式中,使用期望的电压设置来开发失配方程式。使用扩展矩阵公式构造的雅可比矩阵被扩展以容纳电压调节器的约束方程式。本文提出的新方法已在包括大规模IEEE 8500节点测试馈送器在内的各种测试电路上进行了测试,文献中报告的最小迭代次数得以实现。

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