A Proposed Supercapacitor Integrated with an Active Power Filter for Improving the Performance of a Wind Generation System under Nonlinear Unbalanced Loading and Faults

Ibrahim Hamdan, Marwa M. M. Youssef, Omar Noureldeen
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引用次数: 2

Abstract

This study proposes the integration of a supercapacitor (SC) with the DC link of a three-phase four-wire active power filter (APF) by using an interfaced three-level bidirectional buck-boost converter controlled by the fuzzy control approach. APF is a flexible alternating current transmission system (FACTS) device that enhances power quality in the electrical network by reducing the load current harmonics and compensating the reactive power. Regulating the DC voltage of the APF’s DC link and absorbing fluctuations in compensated reactive power during disturbances are the major objectives of the integration of an SC circuit to APF. The studied model is a wind farm of Gabal El-Zeit with a total capacity of 580 MW, connected to unbalanced nonlinear loads. The Gabal El-Zeit wind farm is divided into three projects with a capacity of 240 MW, 220 MW, and 120 MW. The model is simulated by the MATLAB/SIMULINK program, and the effectiveness of the proposed methodology is proved by applying different types of faults such as single-line-to-ground, double-line-to-ground, and three-line-to-ground faults. In addition, an additional SC circuit with a two-level converter is connected to the generators coupled to the wind turbines to enhance the performance of the wind farm during disturbances. The results show that SC-integrated APF can reduce the harmonic distortion and compensate the reactive power for high or low inductive loads. Also, it can regulate the DC voltage and absorb the fluctuations in the reactive power during faults. Finally, the performance and the stability of the overall electric system are improved.
一种集成有源电力滤波器的超级电容器用于改善非线性不平衡负载和故障下风力发电系统的性能
本研究提出了一种采用模糊控制方法控制的接口三电平双向降压变换器,将超级电容器(SC)与三相四线有源电力滤波器(APF)的直流链路集成。有源滤波器是一种灵活的交流输电系统(FACTS)装置,通过降低负载电流谐波和补偿无功功率来提高电网的电能质量。调节有源滤波器直流链路的直流电压和吸收干扰时补偿无功功率的波动是将SC电路集成到有源滤波器中的主要目标。研究的模型是Gabal El-Zeit风电场,总容量为580 MW,连接不平衡非线性负载。Gabal El-Zeit风电场分为三个项目,容量分别为240兆瓦、220兆瓦和120兆瓦。利用MATLAB/SIMULINK程序对模型进行了仿真,并通过对单线对地、双线对地、三线对地等不同类型故障的分析,验证了所提方法的有效性。此外,一个附加的带有双电平变换器的SC电路连接到与风力涡轮机耦合的发电机上,以增强风电场在干扰期间的性能。结果表明,sc集成有源滤波器可以有效地降低谐波失真,补偿高、低电感负载的无功功率。它还可以调节直流电压,吸收故障时无功功率的波动。最后,提高了整个电力系统的性能和稳定性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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