Discrete Space Vector Modulation-based Scheme of Model Predictive Power Control for NPC Converter

Chaoliang Dang, Fei Wang, Xiangqian Tong, Ding-I Liu, Xiaoyu Mu, Weizhang Song
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Abstract

Three-phase NPC-type grid-connected inverter has been widely used in the renewable energy generation systems with the advantages of high efficiency, high power and low cost. Finite control set model predictive control (FCS-MPC) has strong robustness and fast dynamic response, so it is widely used in the control system of grid-connected inverter. However, the traditional FCS-MPC bears with irregular switching state, which will reduce the current tracking accuracy, accidentally produce high current ripple and electromagnetic noise. Aiming at the above shortcomings, an efficient and fixed operation frequency model predictive based on the discrete space vector modulation (MPC-DSVM) is presented in this paper. Firstly, the mathematical model and voltage vector of NPC-type converter are given according to the principle of deadbeat control. By applying the virtual vectors which are linear synthetized with the real vectors, the MPC-DSVM method can output more voltage vectors with fixed switching frequency. The results obtained show that the current tracking accuracy is improved, the current distortion and imbalance of neutral point potential are reduced.
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基于离散空间矢量调制的NPC变换器模型预测功率控制方案
三相npc型并网逆变器以其高效、大功率、低成本的优点在可再生能源发电系统中得到了广泛的应用。有限控制集模型预测控制(FCS-MPC)具有鲁棒性强、动态响应快的特点,在并网逆变器控制系统中得到了广泛的应用。然而,传统的FCS-MPC轴承的开关状态不规则,会降低电流跟踪精度,意外产生较大的电流纹波和电磁噪声。针对上述缺点,本文提出了一种基于离散空间矢量调制(MPC-DSVM)的高效固定工作频率预测模型。首先,根据无差拍控制原理,给出了npc型变换器的数学模型和电压矢量。MPC-DSVM方法利用虚矢量与实矢量线性合成的虚矢量,可以在固定开关频率下输出更多的电压矢量。结果表明,该方法提高了电流跟踪精度,减小了中性点电位的电流畸变和不平衡。
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