一种改进基于dfig的WPP暂态电压恢复的分级控制方案

Jinho Kim, E. Muljadi, Y. Kang
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引用次数: 3

摘要

现代电网规范要求风力发电厂(WPPs)根据在互联点(POI)的电压下降注入无功功率。此要求有助于在故障期间支持POI电压。然而,如果故障被清除,除非WPP迅速减少注入的无功功率,否则POI和风力涡轮发电机(WTG)电压可能会超过可接受的水平。这可能会破坏电网的稳定性,因为它允许断开wtg以避免任何损坏。提出了一种基于双馈感应发电机(DFIG)的WPP分级控制方案。该方案旨在提高故障期间的无功注入能力,并抑制故障清除后的过电压。为了实现前者,在每个DFIG控制器中实现无功功率电压自适应方案,使无功能力较大的DFIG注入更多的无功功率。为了实现后者,使用冲洗滤波器捕获WPP电压中包含的高频分量,该分量用于去除比例积分控制器中的累积值。测试结果表明,该方案成功地支持了故障期间的电网电压,并在故障清除后恢复了WPP电压不超过限值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hierarchical control scheme for improving transient voltage recovery of a DFIG-based WPP
Modern grid codes require that wind power plants (WPPs) inject reactive power according to the voltage dip at a point of interconnection (POI). This requirement helps to support a POI voltage during a fault. However, if a fault is cleared, the POI and wind turbine generator (WTG) voltages are likely to exceed acceptable levels unless the WPP reduces the injected reactive power quickly. This might deteriorate the stability of a grid by allowing the disconnection of WTGs to avoid any damage. This paper proposes a hierarchical control scheme of a doubly-fed induction generator (DFIG)-based WPP. The proposed scheme aims to improve the reactive power injecting capability during the fault and suppress the overvoltage after the fault clearance. To achieve the former, an adaptive reactive power-to-voltage scheme is implemented in each DFIG controller so that a DFIG with a larger reactive power capability will inject more reactive power. To achieve the latter, a washout filter is used to capture a high frequency component contained in the WPP voltage, which is used to remove the accumulated values in the proportional-integral controllers. Test results indicate that the scheme successfully supports the grid voltage during the fault, and recovers WPP voltages without exceeding the limit after the fault clearance.
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