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Stability analysis on parallel of LCL-filter-based grid-connected converters in MW-level direct-drive wind generation using complex vector

机译:兆瓦级直接驱动风力发电中基于LCL滤波器的并网变流器并联的稳定性分析

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With the individual capacity of wind power generation system increasing, the demand for high power grid-connected converters is growing, which is usually limited by the available semiconductor technology. One solution is multiple lower power units connected in parallel. LCL filters can provide much better ripple and harmonic attenuation. Therefore, they are more suitable for high power conversion systems. However, LCL filters may result in resonance, and thus cause the closed-loop control system unstable, especially in the parallel of LCL-filter-based converters which are connected to the grid by one transformer. In this paper, complex vector model of parallel of two LCL-filter-based converters is first introduced in details. Then using the superposition theorem, the performance of LCL filter imposed by separate excited sources is analyzed. Furthermore, current reference step response and voltage feedforward control are discussed. Finally, the related results are verified by simulation and experiment.
机译:随着风力发电系统的单个容量的增加,对高功率并网转换器的需求也在增长,这通常受到可用半导体技术的限制。一种解决方案是将多个较低功率的单元并联。 LCL滤波器可提供更好的纹波和谐波衰减。因此,它们更适合于高功率转换系统。但是,LCL滤波器可能会导致谐振,从而导致闭环控制系统不稳定,尤其是在通过一个变压器连接到电网的基于LCL滤波器的转换器的并联中。本文首先详细介绍了两个基于LCL滤波器的转换器的并行矢量模型。然后使用叠加定理,分析了由单独的激发源施加的LCL滤波器的性能。此外,讨论了电流参考阶跃响应和电压前馈控制。最后,通过仿真和实验验证了相关结果。

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