Evaluation of Inductor Losses on Z-source Inverter Considering AC and DC Components

R. Iijima, N. Kamoshida, Rene Alexander Barrera Cardenas, T. Isobe, H. Tadano
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Abstract

This paper discusses ac and dc components of inductor losses on Z-source inverters based on theoretical calculation and experimental measurement. Winding loss with considering dc and ac components of flowing current, and core loss under dc bias application were calculated using Dowell’s equation and improved Generalized Steinmetz equation (iGSE) with modification factors for dc bias. The calculated losses were verified by experiments using a 2 kW-class quasi Z-source inverter (QZSI). It is confirmed that the inductor loss is mainly caused by dc winding resistance in the discussed design, and the frequency of the main ac component of the inductor current differs from control frequency. These calculation results have good agreement with the experimental results. Therefore, it is concluded that the discussed loss calculation method can be used to design an optimal inductor for given modulation strategy and control frequency.
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考虑交流和直流分量的z源逆变器电感损耗评估
本文在理论计算和实验测量的基础上,讨论了z源逆变器电感损耗的交直流分量。采用Dowell方程和带直流偏置修正因子的改进广义Steinmetz方程(iGSE)计算了考虑直流和交流电流分量的绕组损耗以及直流偏置作用下的铁芯损耗。利用2kw级准z源逆变器(QZSI)进行了实验验证。在讨论的设计中,确认了电感损耗主要是由直流绕组电阻引起的,并且电感电流的主要交流分量的频率与控制频率不同。计算结果与实验结果吻合较好。因此,所讨论的损耗计算方法可以用于设计给定调制策略和控制频率的最优电感。
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