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Simulation of a 3-phase common- and differential mode inductor on a four-limb core

机译:四臂铁芯上的三相共模和差模电感器的仿真

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An optimized method to simulate the common- mode and differential mode inductance and the core loss of a four limb inductor is presented here. Ordinary sinusoidal filters, which have a common- and differential mode filter effects, consist of two inductors (Figure 1). In the case of a four-limb core, the two inductors can be accommodated on a common core. The fourth limb is required to lead the common mode magnetic flux. With only three limbs and a phase balance of the common-mode currents, the magnetic flux would be zero at the magnetic neutral point [1]. Due the non-linearity of the Hysteresis it is not possible to calculate the core losses by using the superposition method. A transient model, which is based on the principal of loss separation, is used, to calculate the core losses of the four-limb inductor. The core losses of electrical steel are measured with a special measurement system, which can simulate typical waveforms for inductors in power electronic applications. Finally, measurement and simulation results are compared.
机译:这里提出了一种模拟共模和差分模式电感的优化方法和四个肢体电感的磁芯损耗。具有共同和微分模式滤波器效果的普通正弦滤波器由两个电感器(图1)组成。在四肢芯的情况下,两个电感器可以容纳在共同的核心上。需要第四肢来引入共模磁通量。只有三肢和共模电流的相位平衡,磁通量在磁中性点处为零[1]。由于滞后的非线性,因此不可能通过使用叠加方法来计算核心损耗。使用基于损耗分离主体的瞬态模型来计算四肢电感的核心损耗。用特殊测量系统测量电钢的磁芯损耗,可以模拟电力电子应用中的电感器的典型波形。最后,比较测量和仿真结果。

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