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Analysis of EMI Reduction Effect of a Magnetorheological Fluid-Gap Inductor in a DC/DC Converter

机译:DC / DC转换器中的磁流变液隙电感器的EMI降低效果分析

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In this paper, the electromagnetic interference reduction effect of a magnetorheological (MR) fluid-gap inductor in a dc/dc converter is investigated. For a realistic electromagnetic simulation, a prototype MR fluid-gap inductor is built and put in a typical buck converter setup, and the current waveform of the inductor is measured. Based on the measured current waveform, a 3-D time domain finite element electromagnetic analysis is performed considering non-linearity of an MR fluid and complex geometry of the winding. The rms and maximum values of the leakage flux and eddy current losses of the MR fluid-gap inductor are calculated and compared with those of the air-gap inductor. It is predicted that the eddy current heat source due to the leakage flux from the gap is reduced by as much as 75.6% for the MR fluid-gap inductor. To verify the simulation data, the leakage fluxes of both MR fluid-gap and air-gap types of inductors are measured in a dc/dc converter setup, and their experimental results are compared with calculated ones.
机译:本文研究了磁流变(MR)液隙电感器在dc / dc转换器中的电磁干扰降低效果。为了进行实际的电磁仿真,需要构建一个原型MR气隙电感器并将其放入典型的降压转换器设置中,然后测量电感器的电流波形。基于测得的电流波形,考虑MR流体的非线性和绕组的复杂几何形状,执行3-D时域有限元电磁分析。计算出MR气隙感应器的均方根值和漏磁通和涡流损耗的最大值,并将其与气隙感应器的均方根值和最大值进行比较。可以预料,对于MR液隙感应器,由于来自间隙的漏磁通量,涡流热源最多可减少75.6%。为了验证仿真数据,在dc / dc转换器设置中测量了MR气隙和气隙型电感器的漏磁通,并将它们的实验结果与计算结果进行了比较。

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