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A Novel Active Power Control Framework for Wind Turbine Generators to Improve Frequency Response

机译:新型用于风力发电机的主动功率控制框架,可改善频率响应

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摘要

Wind generation is expected to reach substantially higher levels of penetration in the near future. With converter interface, the wind unit's rotor inertia is effectively decoupled from the system, causing a reduction in inertial response. Moreover, the replacement of conventional synchronous generators with governors also reduces primary control capability. This paper proposes a novel active power control framework to enable doubly fed induction generator (DFIG) to participate in frequency regulation. The DFIG is controlled in different operating modes with switching among the different modes achieved by modifying reserve input. The DFIG is designed to provide both inertial and primary frequency support considering both underfrequency and overfrequency events. The effectiveness of the proposed control framework is demonstrated through case studies on a 181-bus WECC system with 50% wind penetration.
机译:预计在不久的将来,风力发电将达到更高的渗透水平。通过变流器接口,风机单元的转子惯性可以有效地与系统分离,从而降低了惯性响应。而且,用调速器代替传统的同步发电机也降低了初级控制能力。本文提出了一种新颖的有功功率控制框架,以使双馈感应发电机(DFIG)能够参与频率调节。通过修改备用输入可在不同的模式之间切换,从而在不同的工作模式下控制DFIG。 DFIG旨在提供惯性和主频率支持,同时考虑低频和超频事件。通过对具有50%风速的181总线WECC系统进行案例研究,证明了所提出的控制框架的有效性。

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