A Single-Stage Converter for Integration of Induction Wind Energy Conversion Systems into Multilevel Stand-Alone DC Nanogrids

Javad Khodabakhsh, E. Mohammadi, A. Abosnina, G. Moschopoulos
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Abstract

Multilevel DC nanogrids (DC-NGs) are a viable solution for small-scale stand-alone energy systems, especially in remote areas. They can be powered by wind energy cheaply and safely and thus increase the availably of energy in areas with limited solar irradiance. Among different options for energy conversion, induction machines can be used as generators for wind energy conversion as they are low-cost, reliable, and almost maintenance-free, but the cost and complexity of power electronic converters have limited this approach to low-power applications. This paper proposes a compact single-stage converter that has only six switches, can provide all the control functions for a self-excited induction generator (SEIG), and can interface the SEIG to two isolated DC systems. Moreover, the converter can integrate a small backup battery for the black-start of the SEIG. In this paper, the converter's feasibility is confirmed with experimental results from a scaled-down prototype converter, and the overall performance of the wind energy conversion system is studied in MATLAB/Simulink.
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一种将感应风能转换系统集成为多电平独立直流纳米电网的单级变流器
多电平直流纳米电网(DC- ngs)是小型独立能源系统的可行解决方案,特别是在偏远地区。它们可以由风能廉价而安全地提供动力,从而增加了太阳辐照度有限地区的能源供应。在能量转换的不同选择中,感应电机可以用作风能转换的发电机,因为它们成本低,可靠,几乎无需维护,但是电力电子转换器的成本和复杂性限制了这种方法的低功率应用。本文提出了一种紧凑的单级变换器,它只有6个开关,可以提供自激感应发电机(SEIG)的所有控制功能,并可以将SEIG连接到两个隔离的直流系统。此外,转换器可以集成一个小型备用电池,用于SEIG的黑启动。本文通过缩小样机变流器的实验结果验证了变流器的可行性,并在MATLAB/Simulink中对风能转换系统的整体性能进行了研究。
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