高效双馈全控感应风力发电机的最优控制

W. Hofmann, F. Okafor
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引用次数: 20

摘要

用于风能转换的传统双馈感应发电机通常有两个转换器连接到转子,而定子直接连接到电网。在这种情况下,定子电压和磁通不能被控制以达到最佳的系统运行。如果有直流母线,逆变器可能出现双馈。本文介绍了一种双馈全控异步风力发电机,该发电机提供了高度灵活的定子侧控制,以确保最小的损耗和最佳的功率利用率。推导出了最优损耗区方程,仿真结果表明该方法在功率提取效率方面有所提高。针对已安装的海上兆瓦级发电机,对特殊的风力变流器系统进行了研究,其中直流输电由于避免了无功功率而具有优势。预先计算的改进在风力驱动范围内最多表现为6%。对其工作特性和一些控制特性进行了初步的介绍和讨论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimal control of doubly-fed full-controlled induction wind generator with high efficiency
Conventional doubly-fed induction generators for wind energy conversion usually have two converters connected to the rotor while the stator is linked directly to the grid. In this case the stator voltage and flux cannot be manipulated for optimal system operation. If a DC bus bar is available, double feeding can occur about the inverter. This paper describes a doubly-fed full-controlled induction wind generator which offers high flexibility of stator side control to ensure minimal losses as well as optimal power utilisation. The equation of the optimal loss regime is derived while simulation results show improvements in the efficiency power extraction. The special wind converter system has been investigated at a glance of installed off-shore MW-generators, where a DC-transmission is advantageous because of the avoided reactive power. The precalculated improvements behave 6% at most in the wind-driven range. First experiences with the operating characteristic and some control features are presented and discussed.
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