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A Novel Model Predictive Control Strategy to Eliminate Zero-Sequence Circulating Current in Paralleled Three-Level Inverters

机译:并联三电平逆变器消除零序环流的新型模型预测控制策略

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The main contribution of this paper is the proposal of a novel finite control set model predictive control (MPC)-based zero-sequence circulating current (ZSCC) elimination strategy for parallel operating three-level inverters without any modification or extra hardware on the three-level inverters. An equivalent model of the ZSCC is first developed, and the voltage differences of common-mode voltages (CMVs) among paralleled inverters as well as those of the neutral point potentials (NPPs) are proved to be the exciting sources of the ZSCC. With the analysis, an MPC-based zero CMV method (ZCMV-MPC) is presented to reduce the difference of CMVs among the paralleled inverters, meanwhile, an active NPP perturbation-based ZSCC feedback control method is proposed to further eliminate the ZSCC, that may be caused by dead-time effects and the asymmetries of both hardware and control parameters. With the proposed method, the ZSCC between paralleled inverters can be eliminated effectively, and both grid current tracking and NPP balance control can also achieve satisfactory performances. Simulation and experimental results supported the theoretical study and verified the effectiveness of the proposed scheme.
机译:本文的主要贡献是提出了一种新颖的基于有限控制集模型预测控制(MPC)的零序循环电流(ZSCC)消除策略,用于并联运行的三电平逆变器,无需对三级逆变器进行任何修改或额外的硬件液位逆变器。首先开发了ZSCC的等效模型,并证明了并联逆变器之间的共模电压(CMV)的电压差以及中性点电位(NPPs)的电压差是ZSCC的激励源。通过分析,提出了一种基于MPC的零CMV方法(ZCMV-MPC),以减小并联逆变器之间的CMV差异,同时,提出了一种基于主动NPP扰动的ZSCC反馈控制方法,以进一步消除ZSCC。可能是由于停滞时间效应以及硬件和控制参数的不对称性引起的。利用该方法,可以有效地消除并联逆变器之间的ZSCC,并网电流跟踪和NPP平衡控制也可以达到令人满意的性能。仿真和实验结果支持了理论研究并验证了该方案的有效性。

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