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Rotor Speed Stability of Grid Connected Wind Energy Conversion Systems

机译:并网风能转换系统的转子速度稳定性

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This paper examines the dynamics of grid connected wind energy conversion systems under the concept of 'rotor speed stability'. The majority of wind turbines installed in India have induction generators, which are directly connected to the grid. Consequently, wind turbines interact with the power system in a way that differs from synchronous generators. Therefore, it is more appropriate to study the impacts in terms of rotor speed stability that focuses on torque-speed dependence of asynchronous generators, similar to the rotor-angle stability that focuses on the torque-angle dependence of synchronous generators. In this paper, the rotor-speed stability of the system considered is analysed for step change in wind velocity, gust speed and for three-phase faults at key locations in the system. Simulation studies are done on an 11-bus radial system, using C++ programming language and the results obtained are presented. The results help to understand the rotor-speed stability phenomena in fixed speed windfarms and could help in designing the rotor-speed stability requirements of such systems.
机译:本文研究了“转子速度稳定性”概念下并网风能转换系统的动力学特性。印度安装的大多数风力涡轮机都带有感应发电机,直接与电网连接。因此,风力涡轮机与电力系统的相互作用方式不同于同步发电机。因此,更合适的是研究侧重于异步发电机的转矩-速度依赖性的转子速度稳定性的影响,类似于研究侧重于同步发电机的转矩-角度依赖性的转子角稳定性。在本文中,针对风速,阵风速度的阶跃变化以及系统关键位置的三相故障,分析了所考虑系统的转子速度稳定性。使用C ++编程语言在11总线径向系统上进行了仿真研究,并给出了获得的结果。结果有助于了解定速风电场中的转子速度稳定性现象,并有助于设计此类系统的转子速度稳定性要求。

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