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Converter-side inductor design for a grid-connected converter equipped with an LCL filter

机译:配备LCL滤波器的并网转换器的转换器侧电感器设计

摘要

An LCL filter is used between the grid and the grid converter to attenuate the switching harmonics. The LCL filter is one of the bulkiest and heaviest components in the grid-connected converter. The size of the LCL filter can be decreased significantly using higher switching frequencies enabled by next generation semiconductors. Further size reduction can be achieved using air-forced cooling conditions. This thesis presents the compact design of a converter-side inductor of an LCL filter. The design is implemented using the area product approach. The core material of the inductor is selected based on the highest peak flux density within saturation and core-loss density limits. Both the fundamental and the high frequency effects are considered to calculate the peak flux density. The winding wire is selected based on the rms current density. The gapped core is considered for the design and the effect of fringing flux on the inductance is studied. The thermal modeling of the inductor is included in the design. The design method is implemented on three different designs. The natural and the air-forced cooling conditions are considered. The effects of the peak flux density of the material and the effects of the cooling conditions on the size of the inductors are studied. A prototype inductor of 350 uH is manufactured to verify the design algorithm. The 2605SA1 core material is used in the prototype inductor under air-forced cooling condition. Analytical and experimental results are presented.
机译:在电网和电网转换器之间使用一个LCL滤波器来衰减开关谐波。 LCL滤波器是并网转换器中最大,最重的组件之一。使用下一代半导体实现的更高开关频率,可以大大减小LCL滤波器的尺寸。使用气动冷却条件可以进一步减小尺寸。本文提出了LCL滤波器的转换器侧电感器的紧凑设计。使用区域产品方法实施设计。电感器的芯材料是根据饱和和铁芯损耗密度极限内的最高峰值磁通密度来选择的。基波效应和高频效应都被认为可以计算峰值通量密度。根据均方根电流密度选择绕组线。设计时考虑了带隙磁芯,并研究了边缘磁通对电感的影响。设计中包括电感器的热模型。该设计方法在三种不同的设计上实现。考虑自然和空气冷却条件。研究了材料的峰值磁通密度和冷却条件对电感尺寸的影响。制造了350 uH的原型电感器以验证设计算法。 2605SA1磁芯材料在强制冷却条件下用于原型电感器。给出了分析和实验结果。

著录项

  • 作者

    Rahman F;

  • 作者单位
  • 年度 2016
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类

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