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A finite-element analysis approach to determine the parasitic capacitances of high-frequency multiwinding transformers for photovoltaic inverters

机译:用于确定光伏逆变器高频多壁变压器寄生电容的有限元分析方法

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Magnetic components such as transformers and inductors play a significant role in the efficiency and size/weight of inverter. They are also amongst the most difficult components to design, often requiring numerous design interactions and testing. Understanding and accurate prediction of parasitic winding capacitances of high-frequency multiwinding transformers in PV inverters is fundamental to improve performance, lower cost, and speed time to market. Parasitic capacitances are highly dependent on the winding geometry and the proximity of conducting surfaces. As the geometry of the components becomes more complicated, it is almost impossible to derive analytical equations that describe accurately the behavior of magnetic components. Currently, parasitic capacitances of the multiwinding transformers are only known with certainty once a prototype is built. Therefore a design-build-test cycle needs to be iterated, often at substantial cost and time. This paper presents a technique and method to quantitatively predict the parasitic capacitance of high-frequency multiwinding transformer by means of finite-element analysis (FEA). Comparison of the FEA results with a commercially constructed experimental prototype results shows good agreement.
机译:磁性元件如变压器和电感器在逆变器的效率和尺寸/重量中起着重要作用。它们也是设计最困难的组件中,通常需要众多设计的相互作用和测试。理解和准确预测光伏逆变器中高频多壁变压器的寄生绕组电容是提高性能,降低成本和速度的基础。寄生电容高度依赖于绕组几何形状和导电表面的接近度。随着组件的几何形状变得更加复杂,几乎不可能导出准确地描述磁性部件的行为的分析方程。目前,多次绕线变压器的寄生电容仅在构建原型时才确定。因此,需要迭代设计 - 构建测试周期,通常以实质的成本和时间迭代。本文介绍了通过有限元分析(FEA)定量地预测高频多卷尺变压器的寄生电容的技术和方法。使用商业构建的实验原型结果的FEA结果比较良好的一致性。

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