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A STATCOM Controller for Small Signal Stability using Polynomial Algorithms in a Horizontal Axis Wind Farm Power System

机译:用于使用水平轴风电场电力系统中多项式算法的小信号稳定性的Statcom控制器

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This paper investigates three polynomial strategies in damping oscillations in a horizontal axis turbine plant power systems, to demonstrate the influence of the introduction of the STATCOM in the power system, a comparative study is implemented using various polynomial algorithm control approaches to a horizontal wind axis turbine power system in-cooperating a static synchronous compensator (STATCOM). The proposed controllers' designs are based on a linear time invariant model of the plant and state feedback scheme. First, the linearized mathematical model of STATCOM is derived. Then, using polynomial algorithms as a state feedback algorithm, a state feedback control law is derived. The proposed control strategy is tested on SMIB power system with wind turbine by digital computer simulations using matlab/simulink and a power analysis toolbox. Comparison of the polynomial matching results of the controllers establishes the superb nature of polynomial approximation approach.
机译:本文调查了横轴涡轮机电力系统中阻尼振荡的三种多项式策略,以证明在电力系统中引入的影响,使用各种多项式算法控制水平风轴涡轮机的方法实现了比较研究电源系统在合作静态同步补偿器(Statcom)。所提出的控制器的设计基于工厂和状态反馈方案的线性时间不变模型。首先,派生STATCOM的线性化数学模型。然后,使用多项式算法作为状态反馈算法,导出了一种状态反馈控制法。通过使用MATLAB / SIMULINK的数字计算机模拟和电源分析工具箱,通过数字计算机仿真对具有风力涡轮机的SMIB电力系统进行了测试的所提出的控制策略。控制器的多项式匹配结果的比较建立了多项式近似方法的优秀性质。

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