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Circuit-Field Coupling and Magnetic-Thermal Coupling Analysis of RRF Converter Designed With Magnetic Integration

机译:RRF转换器的电路场耦合和磁集成设计的磁热耦合分析

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In this paper, the magnetic integration of resonant reset forward (RRF) converter and magnetic-thermal coupling analysis of integrated magnetic (IM) components are explored. The formulas of magnetic reluctance, winding turns, and magnetic flux density are obtained based on the equivalent magnetic circuit and minimum current pulsation scheme. Meanwhile, circuit-field coupling model of RRF converter and magnetic-thermal coupling model of IM components are built with the finite-element analysis (FEA) method. The simulation results illustrate that the core of the integrated RRF converter works in an unsaturated condition, the temperature rise of IM components is about 20 degrees C, and the integrated RRF converter has almost the same power efficiency as the conventional discrete RRF converter. Furthermore, hardware prototypes are fabricated and tested to verify the simulation accuracy and design validity. The conclusion of this paper will provide a reference for improving magnetic integration efficiency in the future design of RRF converter.
机译:本文探讨了谐振复位前进(RRF)转换器和集成磁性(IM)组件的磁热耦合分析的磁集成。基于等效磁路和最小电流脉动方案获得磁磁阻,绕组和磁通密度的公式。同时,采用有限元分析(FEA)方法构建了IM组件的RRF转换器和IM组件磁热耦合模型的电路场耦合模型。仿真结果表明,集成的RRF转换器的核心在不饱和条件下工作,IM组件的温度升高约为20摄氏度,并且集成的RRF转换器具有与传统离散RRF转换器相同的功率效率。此外,制造和测试硬件原型以验证模拟精度和设计有效性。本文的结论将在RRF转换器未来设计中提高磁集成效率的参考。

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