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Decoupled Modeling of Three-phase TCM Inverters Utilizing Three Different Conduction-Modes for ZVS Operation

机译:利用ZVS操作的三种不同传导模式的三相TCM逆变器解耦建模

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To improve the power-density of ac-dc converters with wide-bandgap devices, zero-voltage switching (ZVS) schemes have widely been widely investigated. Triangular conduction-mode (TCM) generate a reverse current which discharges a junction capacitance before a MOSFET turns on. Such a method has been extended to three-phase applications by operating the other two phase into two different conduction-modes; discontinuous conduction mode (DCM) and clamp-mode similar to a discontinuous PWM (DPWM) scheme [1]–[4]. However, the presence of a three-phase coupling and transitions of the conduction-modes along the line-cycle arise complexity in the modeling and control. In this paper, a modeling approach is presented for three-phase inverters utilizing three different conduction-modes for ZVS operation. It is revealed that the modeling and analysis for an equivalent single-phase TCM and DCM inverter can be directly extended to the three-phase case. The impact of the DCM phase can simply be calculated and compensated. Control schemes for single-phase inverters can be extended to the three-phase counterparts. The proposed modeling approach is verified by SIMPLIS simulation and an experiment with the prototype three-level three-phase TCM inverter.
机译:为了提高具有宽带隙器件的AC-DC转换器的功率密度,已广泛研究了零电压开关(ZVS)方案。三角形导通模式(TCM)产生反向电流,该反向电流在MOSFET导通之前使结电容放电。通过将另外两相操作为两种不同的传导模式,这种方法已扩展到三相应用。不连续导通模式(DCM)和钳位模式类似于不连续PWM(DPWM)方案[1] – [4]。然而,三相耦合的存在和沿线循环的传导模式的转变在建模和控制中引起了复杂性。在本文中,提出了一种针对三相逆变器的建模方法,该逆变器利用三种不同的传导模式进行ZVS操作。结果表明,等效单相TCM和DCM逆变器的建模和分析可以直接扩展到三相情况。 DCM阶段的影响可以简单地计算和补偿。单相逆变器的控制方案可以扩展到三相对应的方案。通过SIMPLIS仿真和原型三电平三相TCM逆变器进行了实验,验证了所提出的建模方法。

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