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Torque ripple analysis and reduction for wind energy conversion systems using uncontrolled rectifier and boost converter

机译:使用不受控整流器和升压转换器的风能转换系统的转矩脉动分析和降低

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摘要

A conventional topology for a small-scale wind energy conversion system consists of a permanent magnet synchronous generator, a diode bridge rectifier, a boost converter and a grid-side inverter. Since generator phase currents contain low-order harmonics and cannot be controlled independently using a diode bridge rectifier, electromagnetic torque ripple is relatively large and may have a detrimental effect on the life of the turbine through fatigue induced by shaft torque ripple. This study investigates methods to reduce this electromagnetic torque ripple, from both the viewpoints of the circuit topology and the control strategy. The effect of the DC-side capacitor on torque ripple is investigated and different control strategies and their effect on torque ripple are compared and analysed. This shows that the torque ripple can be reduced by removing the DC-side capacitor and can be further reduced by controlling DC-side current to a constant value. These methods have been investigated theoretically and the validity of the results confirmed by both simulation and experiment.
机译:小型风能转换系统的常规拓扑结构包括永磁同步发电机,二极管桥式整流器,升压转换器和电网侧逆变器。由于发电机相电流包含低阶谐波,并且无法使用二极管桥式整流器独立控制,因此电磁转矩脉动相对较大,并且可能会因轴转矩脉动引起的疲劳而对涡轮机的寿命产生不利影响。这项研究从电路拓扑和控制策略的角度研究了减少电磁转矩波动的方法。研究了直流侧电容器对转矩脉动的影响,比较和分析了不同的控制策略及其对转矩脉动的影响。这表明,可以通过去除直流侧电容器来减小转矩脉动,并且可以通过将直流侧电流控制为恒定值来进一步减小转矩脉动。从理论上研究了这些方法,并通过仿真和实验验证了方法的有效性。

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