利用超级电容器改善并网风能转换系统电能质量

E. Mohammadi, Ramtin Rasoulinezhad, G. Moschopoulos
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引用次数: 0

摘要

在并网风能转换系统(wecs)中,由湍流、风切变和塔影效应等现象产生的随机和周期性功率波动可以通过使用超级电容器来缓解。由于过度设计会造成额外的成本和尺寸,而设计不足会导致性能不佳,因此迫切需要一种合适的超级电容器尺寸设计方法。在本研究中,提出了一种基于离散傅立叶变换(DFT)对输出功率频率分量进行分解的wecs超级电容器设计方法,并提出了一种适当的设计方法,以减轻wecs中的功率波动。本文对所提出的设计方法进行了详细的讨论,并利用MATLAB/Simulink软件对一个定速并网WECS进行了验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Improving Power Quality in Grid-Connected Wind Energy Conversion Systems Using Supercapacitors
Stochastic and periodic power fluctuations generated by phenomena such as turbulence, wind shear, and tower shadow effects in grid-connected wind energy conversion systems (WECSs) can be mitigated by using supercapacitors. An appropriate design method for the sizing of supercapacitors is highly desirable as overdesign results in extra cost and size and underdesign results in inappropriate performance. In this study, a design method for supercapacitors in WECSs that is based on the decomposition of output power frequency components using discrete Fourier transformation (DFT) and that results in an appropriate design is proposed to mitigate power fluctuations in WECSs. The proposed design method is discussed in the paper in detail and is validated with a fixed-speed grid-connected WECS using MATLAB/Simulink software.
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