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Control method in a wind turbine driven by 3-parallel back-to-back converters using PQR power transformation

机译:采用PQR功率变换的三并联背靠背变频器驱动的风轮机的控制方法

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A power conversion system in a wind turbine using a Permanent Magnet Synchronous Generator (PMSG) is directly connected between a generator and a grid. The capacity of power semiconductor switches and filters should be selected regarding the overall system rating and the output power quality. The use of an LCL-filter and n-parallel power conversion devices can be the best solution for these problems in a high power system. However, the resonant pole introduced in the LC part produces resonance in the system leading to the stability problem. The voltage difference between the parallel back-to-back converters generates a zero-sequence circulating current. In this paper, a novel control method using a PQR transformation for simultaneously compensating of both the LCL-filter resonance and the zero-sequence circulating current in a wind power system driven by 3-parallel back-to-back converters is proposed. The effectiveness of the proposed control method is verified by simulations.
机译:使用永磁同步发电机(PMSG)的风力涡轮机中的电力转换系统直接连接在发电机和网格之间。应选择电力半导体开关和滤波器的容量,了解整体系统额定值和输出功率质量。使用LCL滤波器和N平行电力转换装置可以是高功率系统中这些问题的最佳解决方案。然而,在LC部分中引入的谐振杆在导致稳定性问题的系统中产生共振。平行回到后转换器之间的电压差产生零序循环电流。在本文中,提出了一种新的控制方法,用于同时补偿由3平行回到后转换器驱动的风电系统中的LCL滤波器谐振和零序循环电流的PQR变换。通过模拟验证了所提出的控制方法的有效性。

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