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Low-power wind energy conversion system with variable structure control for DC grids

机译:低功耗风能转换系统,具有DC网格的可变结构控制

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This paper presents a discussion on the use of variable structure control, i.e., sliding mode control, for improving the dynamic control performance of a low-power wind energy conversion system (WECS) that is connected to a DC microgrid. The sliding mode control is applied to the wind turbine system to extract the maximum possible power from the wind, thus achieving the state of maximum power point tracking to reach the maximum power generation (MPG), and also applied to the power converter to reach the maximum power injection (MPI) to the load. The amount of energy extractable from a dynamically changing wind using the WECS with sliding mode control is compared with that of the classic PI controller. Simulation results show that for a dynamically changing wind, more energy can be harvested with the sliding mode control as compared to the PI control.
机译:本文提出了关于使用可变结构控制,即滑模控制的讨论,用于提高连接到DC微电网的低功耗风能转换系统(WEC)的动态控制性能。将滑动模式控制应用于风力涡轮机系统,以从风中提取最大可能的功率,从而实现最大功率点跟踪的状态,以达到最大发电(MPG),并且还应用于电源转换器到达最大功率注入(MPI)到负载。将使用具有滑模控制的WECS从动态变化的风中提取的能量的量与经典PI控制器的动态变化。仿真结果表明,对于动态变化的风,与PI控制相比,可以通过滑动模式控制收获更多能量。

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