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Optimal and Direct-Current Vector Control of Direct-Driven PMSG Wind Turbines

机译:直驱式PMSG风力发电机的最优矢量控制

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With the advances of power electronic technology, direct-driven permanent magnet synchronous generators (PMSGs) have increasingly drawn the interest of wind turbine manufacturers. At the present time, a commercial PMSG wind turbine primarily makes use of a passive rectifier followed by an insulated gate bipolar transistor (IGBT) inverter. Although a PMSG wind turbine with two back-to-back voltage source IGBT converters is considered more efficient, it has not been widely adopted by the wind power industry. This paper investigates both the conventional and a novel vector control mechanism for a PMSG wind turbine that has two side-by-side voltage source pulsewidth modulation converters. The proposed approach is based on a direct-current vector control mechanism for control of both machine- and grid-side converters of a PMSG wind turbine. Then, an optimal control strategy is developed for integrated control of PMSG maximum power extraction, reactive power, and grid voltage support controls. A transient system simulation using SimPowerSystem is built to investigate the performance of the conventional and proposed control techniques for the PMSG wind turbine under steady and gusty wind conditions. This paper shows that when using the direct-current vector control structure, a PMSG system has excellent performance in various aspects.
机译:随着电力电子技术的发展,直接驱动式永磁同步发电机(PMSG)越来越引起风力涡轮机制造商的兴趣。目前,商用PMSG风力发电机主要使用无源整流器,然后使用绝缘栅双极晶体管(IGBT)逆变器。尽管具有两个背对背电压源IGBT转换器的PMSG风力发电机被认为效率更高,但尚未被风电行业广泛采用。本文研究了具有两个并排电压源脉宽调制转换器的PMSG风力发电机的传统和新型矢量控制机制。所提出的方法基于直流矢量控制机制,用于控制PMSG风力发电机的机器侧和电网侧变流器。然后,开发了一种最优控制策略,用于PMSG最大功率提取,无功功率和电网电压支持控制的集成控制。建立了使用SimPowerSystem进行瞬态系统仿真的方法,以研究常规和建议的PMSG风力发电机在稳定和狂风条件下的控制技术的性能。本文表明,当使用直流矢量控制结构时,PMSG系统在各个方面均具有出色的性能。

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