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Speed regulation of a wind turbine with current source or matrix converter: Tuning procedure

机译:带有电流源或矩阵转换器的风轮机的速度调节:调整程序

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In DC series-connection of wind turbines the common variable for the turbines is the DC current and thus the simplest control approach is to use current source type converter to perform the speed control of the generators for maximum power extraction. When using current source type converters like the Current Source or the matrix converter, LC filters are needed at the input of the generator to remove switching harmonics. Thus resonance can be an issue and special care needs to be taken when designing controllers. In this article a wind farm topology with series connected turbines is presented along with the wind energy conversion system inside in which a matrix converter performs speed control of the generator. To counteract resonance, three nested loops controlling respectively the turbine rotational speed, the stator current and the filter capacitor voltage are implemented. The tuning should be performed carefully so that the control is fast, stable and tracking the maximum power point. The system model is analyzed in the dq reference frame to find appropriate controllers for each loop and a method is presented to tune each controller in a systematic manner for a satisfactory system response. Simulation results are presented.
机译:在风力涡轮机的直流串联中,涡轮机的共同变量是直流电流,因此最简单的控制方法是使用电流源型转换器对发电机进行速度控制,以获取最大功率。当使用电流源型转换器(例如电流源或矩阵转换器)时,在发电机的输入端需要LC滤波器以消除开关谐波。因此,共振可能成为一个问题,在设计控制器时需要特别注意。在本文中,提出了具有串联涡轮机的风电场拓扑以及内部的风能转换系统,其中矩阵转换器对发电机进行速度控制。为了抵消共振,实现了三个嵌套回路,分别控制涡轮转速,定子电流和滤波电容器电压。调整应谨慎进行,以使控制快速,稳定并跟踪最大功率点。在dq参考框架中分析了系统模型,以找到适合每个回路的控制器,并提出了一种以系统的方式调整每个控制器的方法,以获得令人满意的系统响应。给出了仿真结果。

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