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Design Trade-Offs for Medium- and High-Frequency Transformers for Isolated Power Converters in Distribution System Applications

机译:配电系统应用中的隔离式功率转换器的中高频变压器的设计折衷

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Medium- and High-Frequency Transformers (MFTs/HFTs) are a fundamental component in many isolated power-converter topologies proposed for electric distribution applications (e.g., solid-state power substations). Previous work presented detailed transformer design methodologies and addressed core loss limitations of different core materials and operating frequencies. However, MFT/HFT designs become significantly challenging for high power levels that are typical of distribution systems (e.g., greater than 100 kVA). Furthermore, few references include specific requirements in the design methodology like desired leakage and/or magnetizing inductances (which are normally specified for high-power applications). A design methodology for MFTs/HFTs is presented in this paper that accounts for tradeoffs like having a given leakage inductance for maximum power transfer (e.g., in the case of dual-active bridges (DABs)) or a given magnetizing inductance (to either attain a certain power transfer or to limit the power semiconductor currents). The design methodology is verified via Finite-Element Analysis (FEA) using ANSYS™ and an experimental prototype.
机译:中高频变压器(MFT / HFT)是为配电应用(例如固态变电站)提出的许多隔离式电源转换器拓扑中的基本组件。先前的工作介绍了详细的变压器设计方法,并解决了不同铁心材料和工作频率的铁心损耗限制。然而,对于配电系统中典型的高功率水平(例如,大于100kVA),MFT / HFT设计变得非常具有挑战性。此外,很少有参考文献包含设计方法中的特定要求,例如所需的泄漏和/或磁化电感(通常为大功率应用指定)。本文介绍了MFTs / HFTs的设计方法,该方法考虑了一些折衷,例如具有给定的泄漏电感以实现最大功率传输(例如,在双有源桥(DAB)的情况下)或给定的励磁电感(以达到以下目的)一定的功率传输或限制功率半导体电流)。使用ANSYS™和实验原型通过有限元分析(FEA)对设计方法进行了验证。

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