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Mathematical Modeling, Stability, Bifurcation Analysis, and Simulations of a Type-3 DFIG Wind Turbine's Dynamics with Pitch Control

机译:具有变桨控制的3型DFIG风力发电机组动力学的数学建模,稳定性,分叉分析和仿真

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In this paper, a type-3 Doubly Fed Asynchronous/InductionGenerator (DFAG/DFIG) wind turbine is considered for higher wind speeds with the pitch control activated. The purpose of the paper is to study the stability of wind turbine's when connected to the grid. The main blocks of the model that have been taken from the literature are described and translated into a system of differential equations with algebraic constraint. Time domain analysis for the system is provided by computing the steady states as functions of the wind speed and the grid parameters, testing eigenvalues sensitivity to the wind speed, and analyzing stability, including bifurcation in parameter space. The existence of a Hopfbifurcation for a practical value of the reactance is found and analyzed. Three groups of simulations are presented, time dependent wind speed, drop-clear terminal voltage, and a drop-clear case in reactance to show the bifurcation effect and thesystem's response to it.
机译:在本文中,考虑将3型双馈异步/感应发电机(DFAG / DFIG)风力涡轮机用于风速较高且启用了桨距控制的情况。本文的目的是研究风力涡轮机并网时的稳定性。描述了从文献中获取的模型的主要模块,并将其转换为具有代数约束的微分方程组。通过计算作为风速和电网参数的函数的稳态,测试特征值对风速的敏感性以及分析稳定性(包括参数空间中的分叉)来提供系统的时域分析。发现并分析了对于电抗的实际值存在的Hopfbifurcation。提出了三组仿真,分别是随时间变化的风速,清晰的端子电压和清晰的电抗情况,以显示分叉效应和系统对此的响应。

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