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Variable susceptance excitation control for dynamic performance improvement of a stand-alone wind turbine induction generator system

机译:可变电纳励磁控制可改善独立风力发电机感应发电机系统的动态性能

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摘要

Isolated wind farms employ simple squirrel cage induction generators driven by variable speed wind turbines. Lacking control capability, such generation can contribute very little to network support. Wind turbines mostly do not take part in voltage and frequency control and if a disturbance occurs, the turbines may be disconnected and reconnected when normal operation has been resumed. From operation viewpoint, this is definitely not acceptable. A primary reason for the rigidity of operation is the lack of excitation adaptation under variable wind conditions. This article proposes incorporation of a variable capacitance controller at the generator terminal which will automatically adjust the needed excitation. Further improvement of transient profile of the stand-alone wind turbine generator has been proposed through inclusion of additional stabilising control. Simulation studies show that the proposed excitation controller with additional PID circuit provides very good transient profile following reasonable input torque variations.
机译:隔离的风电场采用由变速风力涡轮机驱动的简单的鼠笼式感应发电机。缺乏控制能力,这种生成对网络支持的贡献很小。风力涡轮机大多不参与电压和频率控制,如果发生干扰,则在恢复正常运行后,涡轮机可能会断开连接并重新连接。从操作的角度来看,这绝对是不可接受的。操作僵化的主要原因是在可变风条件下缺乏励磁适应性。本文建议在发电机接线端安装一个可变电容控制器,该控制器将自动调节所需的励磁。通过包括附加的稳定控制,已经提出了对独立风力涡轮发电机的瞬态曲线的进一步改善。仿真研究表明,提出的带有附加PID电路的励磁控制器在合理的输入转矩变化后可提供非常好的瞬态曲线。

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