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System Efficiency of a Tap Transformer Based Grid Connection Topology Applied on a Direct Driven Generator for Wind Power

机译:基于抽头变压器的并网拓扑在风电直接驱动发电机上的系统效率

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摘要

Results from experiments on a tap transformer based grid connection system for a variable speed vertical axis wind turbine are presented. The tap transformer based system topology consists of a passive diode rectifier, DC-link, IGBT inverter, LCL-filter, and tap transformer. Full range variable speed operation is enabled by using the different step-up ratios of a tap transformer. Simulations using MATLAB/Simulink have been performed in order to study the behavior of the system. A full experimental set up of the system has been used in the laboratory study, where a clone of the on-site generator was driven by an induction motor and the system was connected to a resistive load to better evaluate the performance. Furthermore, the system is run and evaluated for realistic wind speeds and variable speed operation. For a more complete picture of the system performance, a case study using real site Weibull parameters is done, comparing different tap selection options. The results show high system efficiency at nominal power and an increase in overall power output for full tap operation in comparison with the base case, a standard transformer. In addition, the loss distribution at different wind speeds is shown, which highlights the dominant losses at low and high wind speeds. Finally, means for further increasing the overall system efficiency are proposed.
机译:给出了基于变速变压器垂直轴风力发电机的基于抽头变压器的电网连接系统的实验结果。基于抽头变压器的系统拓扑由无源二极管整流器,直流母线,IGBT逆变器,LCL滤波器和抽头变压器组成。通过使用抽头变压器的不同升压比,可以实现全范围变速操作。为了研究系统的性能,已经使用MATLAB / Simulink进行了仿真。该系统的完整实验设置已用于实验室研究中,其中现场发电机的克隆由感应电动机驱动,并且该系统连接至电阻负载以更好地评估性能。此外,系统会运行并评估实际风速和变速操作。为了更全面地了解系统性能,我们使用实际站点Weibull参数进行了案例研究,比较了不同的分接头选择选项。结果表明,与基本情况(标准变压器)相比,标称功率下的系统效率高,全抽头运行时的总功率输出增加。此外,还显示了不同风速下的损耗分布,突出了低风速和高风速下的主要损耗。最后,提出了进一步提高整体系统效率的手段。

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  • 期刊名称 other
  • 作者单位
  • 年(卷),期 -1(2014),-1
  • 年度 -1
  • 页码 784295
  • 总页数 7
  • 原文格式 PDF
  • 正文语种
  • 中图分类
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  • 入库时间 2022-08-21 11:17:50

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