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Common-mode Voltage Elimination of Three-level T-type Inverters With A Finite Control Set Model Predictive Control Method

机译:具有有限控制模型预测控制方法的三级T型逆变器的共模电压消除

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The main contribution of this paper is the proposal of a new finite control set model predictive control (FCS-MPC) based method for three-level T-type inverters (3LT~2Is) to eliminate the common-mode voltage (CMV) with considering the dead time effects. Firstly, the CMV of the 3LT~2Is is analyzed and only six medium and one zero voltage vectors (6MV1Z) which generate zero CMV are defined as the candidate voltage vectors (VVs) for the FCS-MPC. Furthermore, the dead time effects when utilizing the defined candidate VVs with 6MV1Z are investigated and a new FCS-MPC based CMV elimination (CMV-EL) method is proposed. In the proposed CMV-EL method, the candidate voltage VVs are redefined by pre-excluding the VVs which will cause CMV fluctuations during the dead time from 6MV1Z. Besides, the proposed CMV-EL method can effectively eliminate the CMV as well as control the grid current and balance the neutral point potentials (NPPs). Finally, experimental results confirm the effectiveness of the proposed CMV-EL method.
机译:本文的主要贡献是三级T型逆变器(3LT〜2)的基于新的有限控制装置模型预测控制(FCS-MPC)的方法,以消除Charm-Mode电压(CMV),考虑死亡时间效应。首先,分析3LT〜2的CMV,并且仅产生零CMV的六个介质和一个零电压矢量(6MV1Z)被定义为FCS-MPC的候选电压矢量(VVS)。此外,研究了利用具有6mV1z的定义候选VV的死区时间效应,提出了一种新的FCS-MPC基CMV消除(CMV-EL)方法。在所提出的CMV-EL方法中,通过预先排除VV的VV来重新定义候选电压VVS,该VV在6mV1z期间将导致CMV波动导致CMV波动。此外,所提出的CMV-EL方法可以有效地消除CMV以及控制网格电流并平衡中性点电位(NPPS)。最后,实验结果证实了所提出的CMV-EL方法的有效性。

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