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Numerical Analysis on Iron Loss of Reactor Core under Hysteresis B-H Curve Using Play Model for DC-DC Converter

机译:用DC-DC转换器播放模型对滞后循环反应器核心铁损失的数值分析 B-H 曲线

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The decrease in iron loss in a DC-DC converter is one of the most important issues for energy apparatuses. To reduce the iron loss under the magnetic hysteresis B-H curve caused by the current ripples in the reactor core built in the DC-DC converter, where B and H are the magnetic flux density and magnetic field intensity, respectively, we apply a numerical calculation method based on a suitable magnetic hysteresis model using the play model. When the operating current (corresponding to the magnetic field), on the reactor core is constant, there are two points of magnetic flux density in the B-H curve because of the nonlinear magnetic characteristics, the higher magnetic flux density and lower magnetic flux density. At the higher B and lower B operating points, minor loops appear in the B-H curve when the operating current on the reactor core is varied and has ripples. The calculation results for all three cases show that the performance of the higher B operating point is significantly better than that of the lower B operating point. In particular, a higher B operating point has lower iron loss, smaller magnetic flux density ripples, and larger energy density of the magnetic field caused by the smaller minor loop.
机译:DC-DC转换器中的铁损减少是能量设备最重要的问题之一。为了减少由在DC-DC转换器中内置的反应器芯中的电流摩擦引起的磁滞后的磁性磁滞曲线下的铁损,其中 B和 H是磁通密度和磁场强度分别使用播放模型基于合适的磁滞后模型应用数值计算方法。当操作电流(对应于磁场),在反应器芯上是恒定的时,由于非线性磁性特性,较高的磁通密度和较低的磁通量,在 BH曲线中存在两个磁通密度点。密度。在较高的 B和下部 B操作点处,当反应器芯上的工作电流变化并具有涟漪时,在 B-H曲线中出现次要回路。所有三种情况的计算结果表明,较高的 B操作点的性能明显优于下部 B操作点的性能。特别地,较高的 B操作点具有较低的铁损,磁通密度涟漪和由较小的小环引起的磁场的较大能量密度。

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