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Flying-start and continuous operation of a permanent-magnet wind generator based on discontinuous currents, discrete second-order sliding-mode observer and phase-locked loop

机译:基于不连续电流,离散二阶滑模观测器和锁相环的永磁风力发电机的飞车启动和连续运行

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In wind energy conversion systems of type 4, the critical operating point in permanent-magnet generators (PMGs) is the moment of switching on the generator-side converter (GSC). The induced back-electromotive force (EMF) acting on PMG terminals can cause inrush currents if the synchronisation between PMG and GSC is not done well. The main condition for achieving a satisfying synchronisation is to know the rotor angle, rotating speed and induced back EMF before the GSC is switched on. This synchronisation together with the switching on of the GSC is called the flying start of a PMG. In this study, a novel sensorless PMG flying-start method is proposed to ensure good synchronisation. The flying-start method is based on an extended flux PMG model in a rotating reference frame with a discrete second-order sliding-mode observer and a phase-locked loop controller during the discontinuous operating mode. This is based on discontinuous currents, which are induced because of the PMG rotation caused by wind energy. The proposed method ensures the operation of PMGs in the continuous operating mode as well. The effectiveness of the proposed method is verified on saturable models of low- and high-power surface and interior PMGs through simulations in Simulink and Piecewise Linear Electrical Circuit Simulation (PLECS).
机译:在类型4的风能转换系统中,永磁发电机(PMG)的关键工作点是开启发电机侧转换器(GSC)的时刻。如果PMG和GSC之间的同步不正确,作用在PMG端子上的感应反电动势(EMF)可能会导致浪涌电流。实现令人满意的同步的主要条件是在接通GSC之前了解转子角度,转速和感应反电动势。这种同步以及GSC的接通被称为PMG的快速启动。在这项研究中,提出了一种新颖的无传感器PMG飞车启动方法,以确保良好的同步性。飞车启动方法基于在不连续操作模式下具有离散二阶滑模观察器和锁相环控制器的旋转参考系中的扩展通量PMG模型。这基于不连续电流,该不连续电流是由风能引起的PMG旋转引起的。所提出的方法还确保了PMG在连续运行模式下的运行。通过在Simulink和分段线性电路仿真(PLECS)中的仿真,在低功率和高功率表面和内部PMG的饱和模型中验证了该方法的有效性。

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