基于DFIG的风电场在严重电压骤降事件下利用功率控制改善瞬态电压分布

Q3 Energy
Z. Rafiee, Mansour Rafiee, M. Aghamohammadi
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引用次数: 3

摘要

提高暂态电压稳定性是基于双馈感应发电机(DFIG)的风电场根据电网规范要求必须提供的最重要问题之一。为了提高暂态电压的稳定性,本文提出了基于直流链路斩波调整的无源电压补偿器和基于改进暂态电压控制器(MTVC)的有源电压补偿器。MTVC是一种基于控制器的方法,其中通过遵循电压下降(VD)条件,可以改善WF的电压稳定性。在该方法中,提出了电压下降指数(VDI)来激活/去激活控制策略,其中使用了两个阈值。在有功模式下,通过改变有功功率和无功功率分别减小转子电流和提高PCC电压。基于该控制策略,在故障电网中,DFIG不仅可以平滑直流链路电压波动,减小转子过流,还可以提高共耦合点(PCC)电压。因此,提高了暂态电压的稳定性。仿真结果表明了所提策略对提高DFIG电压稳定性的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Improvement of Transient Voltage Profile Using Power Control of the DFIG-Based Wind Farm Under Severe Voltage Dip Event
Improving transient voltage stability is one of the most important issues that must be provided by doubly fed induction generator (DFIG)-based wind farms (WFs) according to the grid code requirement. This paper proposes adjusted DC-link chopper based passive voltage compensator and modified transient voltage controller (MTVC) based active voltage compensator for improving transient voltage stability. MTVC is a controller-based approach, in which by following a voltage dip (VD) condition, the voltage stability for the WF can be improved. In this approach, a voltage dip index (VDI) is proposed to activate/deactivate the control strategy, in which, two threshold values are used. In the active mode, the active and reactive power are changed to decrease the rotor current and boost the PCC voltage, respectively. Based on the control strategy, in a faulty grid, DFIG not only will be able to smooth DC-link voltage fluctuations and reduces rotor overcurrents but also it will increase the voltage of point of common coupling (PCC). Therefore, it improves transient voltage stability. The simulation results show the effectiveness of the proposed strategy for improving voltage stability in the DFIG.
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来源期刊
Iranian Journal of Electrical and Electronic Engineering
Iranian Journal of Electrical and Electronic Engineering Engineering-Electrical and Electronic Engineering
CiteScore
1.70
自引率
0.00%
发文量
13
审稿时长
12 weeks
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