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Reactive Power Capability of Wind Turbines Based on Doubly Fed Induction Generators

机译:基于双馈感应发电机的风力发电机无功功率能力

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摘要

With the increasing penetration of wind turbines (WTs) grid utilities require extended reactive power supply capability not only during voltage dips but also in steady-state operation. WTs with doubly fed induction generators (DFIG) are able to control active and reactive power independently. The reactive power capability is subject to several limitations resulting from the voltage, current, and speed, which change with the operating point. This paper discusses the steady-state reactive power loading capability of DFIG-based WTs by taking into account the most important physical phenomena restricting the reactive power supply of DFIG-based WT systems. The active–reactive power diagram is systematically derived by considering the typical power–speed relationship and converter loading limits. The authors discuss also some special operating modes limiting the reactive power capability together with aspects of modeling and control that give rise to these limitations.
机译:随着风力涡轮机(WTs)的普及,电网公司不仅在电压骤降期间而且在稳态运行中都要求扩展无功功率供应能力。具有双馈感应发电机(DFIG)的WT能够独立控制有功功率和无功功率。无功功率能力受电压,电流和速度的一些限制,这些限制会随工作点而变化。本文通过考虑限制基于DFIG的WT系统无功功率供应的最重要的物理现象,讨论了基于DFIG的WT的稳态无功功率负载能力。有功-无功功率图是通过考虑典型的功率-速度关系和转换器负载极限来系统得出的。作者还讨论了限制无功功率能力的一些特殊操作模式,以及引起这些限制的建模和控制方面。

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