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Novel ripple reduced Direct Model Predictive Control of three-level NPC active front end with reduced computational effort

机译:新型纹波减少了三级NPC主动前端的直接模型预测控制,减少了计算工作量

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Three-level neutral-point clamped (NPC) power converter seems promising for high power grid-tied renewable applications. Direct Model Predictive Control (DMPC) is an attractive control method, in particular for multi-level converters. However, relatively big ripples of the control variables and heavy computational efforts are regarded as two of the shortcomings for DMPC schemes due to its cost enumeration and one-vector-per-control-interval characters. This work proposes a computational efficient ripple-reduced DMPC scheme for three level NPC Active-Front-End (AFE). By combining a deadbeat concept the targeted switching vectors are allocated efficiently and the respective actuating times of the vectors are on-line optimally calculated. Compared to the classical DMPC scheme, computational efforts are reduced efficiently and much smaller ripples of the control variables are achieved. Simulation results emphasize the effectiveness of the proposed scheme.
机译:三级中性点钳位(NPC)功率转换器似乎有助于高功率网格可再生应用。直接模型预测控制(DMPC)是一种吸引力的控制方法,特别是对于多级转换器。然而,由于其成本枚举和一个矢量/每次控制间隔字符,控制变量和重型计算工作的相对大的涟漪被视为DMPC方案的两个缺点。这项工作提出了用于三级NPC主动前端(AFE)的计算有效的纹波减少DMPC方案。通过组合死差概念,有效地分配目标切换矢量,并且矢量的各个致动时间在线上最佳地计算。与经典DMPC方案相比,有效降低计算工作,并实现了控制变量的更小的涟漪。仿真结果强调提出方案的有效性。

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