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Nanocrystalline and Silicon Steel Medium-Frequency Transformers Applied to DC-DC Converters: Analysis and Experimental Comparison

机译:应用于DC-DC转换器的纳米晶和硅钢中频变压器:分析和实验比较

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摘要

High performance, highly efficient DC-DC converters play a key role in improving the penetration of renewable energy sources in the context of smart grids in applications such as solid-state transformers, built-in power drives in electric vehicles and interfacing photovoltaic and wind-power systems. Advanced medium-frequency transformers (MFTs) are fundamental to enhance DC-DC converters and determining its behavior, therefore MFT design procedures have become increasingly important in this context. This paper investigates which type of core material, between nanocrystalline and silicon steel, has the best properties for designing MFTs for distinct applications. Unlike to other proposals, in this work, two 1 kVA-120 V/240 V-1 kHz lab MFT prototypes, with a different type of core material, are developed for the purpose of comparing its physical characteristics, behavior, and performance under real-life conditions. A final section, the experimental results show that the nanocrystalline MFT has greater power density and efficiency. The results of this work introduce nanocrystalline MFTs as an option in a wider range of applications in niches in which other materials are currently used.
机译:高性能,高效的DC-DC转换器在改善固态变压器等应用中的智能电网的背景下改善可再生能源的穿透,在诸如固态变压器,电动车辆中的内置动力驱动和接口光伏和风 - 电力系统。高级中频变压器(MFT)是增强DC-DC转换器的基础,并确定其行为,因此MFT设计程序在这种情况下变得越来越重要。本文研究了纳米晶体和硅钢之间的哪种类型的芯材,具有设计MFT的最佳性能,用于不同的应用。与其他提案不同,在这项工作中,为诸如实际情况下的物理特征,行为和性能进行比较,开发了两种1 kVA-120 V / 240 V-1 KHz实验室MFT原型,用于比较真实的物理特征,行为和性能 - 生活条件。实验结果表明,纳米晶体MFT具有更大的功率密度和效率。该工作的结果将纳米晶体MFT引入纳米晶体中的一种选择,其中在目前使用其他材料的耐大性中的更广泛的应用中。

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