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Sliding mode control for LVRT of a PMSG wind turbine using stored energy in rotor inertia

机译:转子惯性中储存的PMSG风力涡轮机LVRT的滑模控制

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This paper proposes a sliding mode controller for a permanent-magnet synchronous generator wind turbine system to satisfy low voltage ride through requirement. The generator-side converter regulates the DC link voltage instead of grid-side converter. The generator-side controller is designed using the sliding mode control considering the nonlinear relationship between the generator power and the dc-link voltage. The grid-side converter controls the grid active power to extract maximum power. The proposed control method enables regulating the DC link voltage by storing the surplus energy in the rotor inertia when a grid fault occurs. Finally, the proposed control method is validated through the numerical simulations with a topological wind turbine model. The simulation results show that the proposed method has faster conversion and smaller amplitude of oscillation than the conventional PI control.
机译:本文提出了一种用于永磁同步发电机风力涡轮机系统的滑动模式控制器,以满足低电压骑行的要求。发电机侧转换器调节直流链路电压而不是电网侧转换器。考虑到发电机功率和DC连杆电压之间的非线性关系,使用滑动模式控制设计发电机侧控制器。电网侧转换器控制网格主动电力以提取最大功率。所提出的控制方法可以通过在电网故障发生时存储转子惯性中的剩余能量来调节直流链路电压。最后,通过具有拓扑风力涡轮机模型的数值模拟验证所提出的控制方法。仿真结果表明,该方法的转换更快,振荡幅度比传统的PI控制更快。

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