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Towards a Reactive Power Oscillation Damping Controller for Wind Power Plant Based on Full Converter Wind Turbines

机译:基于全转换器风力发电机的风力发电厂无功功率振荡阻尼控制器

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摘要

In this paper a power oscillation damping controller (POD) based on modulation of reactive power (Q POD) is analyzed where the modular and distributed characteristics of the wind power plant (WPP) are considered. For a Q POD it is essential that the phase of the modulated output is tightlycontrolled to achieve a positive damping contribution. It is investigated how a park level voltage, reactive power, and power factor control at different grid strengths interact with the Q POD in terms of a resulting phase shift. A WPP is modular and distributed and a WPP Q POD necessitate that each WTcontributes to a collective response. This ability is shown with a 150 wind turbine (WT) WPP with all WTs represented, and it is demonstrated that the WPP contributes to the inter-area damping. The work is based on a nonlinear, dynamic model of the 3.6 MW Siemens Wind Power WT.
机译:本文分析了基于无功功率调制(Q POD)的功率振荡阻尼控制器(POD),其中考虑了风力发电厂(WPP)的模块化和分布式特性。对于Q POD,必须严格控制调制输出的相位以实现正阻尼作用。研究了在不同电网强度下的驻车位电压,无功功率和功率因数控制如何与产生的相移有关的Q POD相互作用。 WPP是模块化和分布式的,并且WPP Q POD要求每个WT做出集体响应。具有150个风力涡轮机(WT)WPP并具有所有WT的情况下显示了此功能,并且证明了WPP有助于区域间阻尼。该工作基于3.6兆瓦西门子风力发电WT的非线性动态模型。

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