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对称与非对称感应波形下软磁材料的能量损耗

Energy Losses in Soft Magnetic Materials Under Symmetric and Asymmetric Induction Waveforms

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中文摘要

本文研究了在宽频率范围(最高1 MHz)及不同占空比(0.5至0.1)下,三角对称与非对称感应波形对软磁材料(Fe-Si、Fe-Co、纳米晶及Mn-Zn铁氧体)磁损耗的影响,并基于正弦波激励下的标准测量结果提出了损耗预测模型。

English Abstract

Magnetic losses under triangular symmetric and asymmetric induction waveforms have been measured over a broad range of frequencies and predicted starting from standard results obtained with sinusoidal induction. Nonoriented Fe-Si and Fe-Co sheets, nanocrystalline Finemet-type ribbons, and Mn-Zn ferrites have been investigated up to f = 1 MHz and duty cycles ranging between 0.5 and 0.1. The intrins...
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SunView 深度解读

磁性元件(电感、变压器)是阳光电源组串式逆变器、PowerTitan/PowerStack储能变流器及风电变流器中的核心损耗源。随着高频化趋势(如SiC/GaN应用),磁芯损耗评估变得复杂。本文提出的非对称波形损耗预测模型,可直接优化阳光电源高频磁性元件的设计,提升逆变器与PCS的整机效率与功率密度。建议研发团队将该模型集成至磁性元件仿真工具中,以应对复杂PWM调制下的热设计挑战,降低损耗并提升系统可靠性。