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DC-side Circuit Implementation of a Three-phase Inverter for Balancing Phase-leg Capacitor Currents

机译:三相逆变器的直流侧电路实现,用于平衡相脚电容器电流

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This paper proposes methods of balancing capacitor currents between phase legs in three-phase inverter circuits by changing the DC-side connection material or structure. The single-phase-leg unit consists of a half-bridge power module and DC-link capacitor that is connected directly to the module. Owing to this structure, it can be realized when there is a low stray inductance between the half-bridge module and DC-link capacitor. In the case of connecting a three-phase inverter, the stray inductance between the phase legs and the DC-link capacitor may lead to an imbalance in each capacitor current owing to DC-side resonance phenomena. The capacitor current imbalance may be due to the relationship between the switching and resonance frequencies. In order to balance the capacitor currents, this paper proposes two current balancing methods; applying (1) a graphite bus bar to increase the dumping resistance, and (2) a DC-side delta connection to geometrically balance the three phase legs. The experimental results obtained using a SiC MOSFET rated at 300 V, 4.6 A verify the suppression effectiveness of the DC-link capacitor current imbalance.
机译:本文提出了通过改变直流侧连接材料或结构来平衡三相逆变器电路相脚之间电容器电流的方法。单相支路单元包括一个半桥电源模块和直接连接到该模块的直流母线电容器。由于这种结构,可以在半桥模块和直流母线电容器之间的杂散电感较低时实现。在连接三相逆变器的情况下,由于直流侧谐振现象,相脚和直流母线电容器之间的杂散电感可能会导致每个电容器电流的不平衡。电容器电流不平衡可能是由于开关频率和谐振频率之间的关系引起的。为了平衡电容器电流,本文提出了两种电流平衡方法。应用(1)石墨母线以增加耐倾覆性,以及(2)直流侧三角形连接以在几何上平衡三相支路。使用额定值为300 V,4.6 A的SiC MOSFET获得的实验结果证明了直流母线电容器电流不平衡的抑制效果。

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