A Modulated Model Predictive Control for Three-Phase Three-Level T-Type Inverter

Quoc-Binh Nguyen, Pham Chi Dung, Huu-Cong Vu, Tuyen Nguyen Dinh, Quoc-Hoan Tran
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Abstract

In order to control a three-phase three-level T-type inverter, a straightforward modulated model predictive control (MPC) method with a double-objective cost function is presented in this study. The modulated MPC can provide balanced dc-link capacitor voltages and three-phase sinusoidal load current under linear loads. First, 27 potential switching vectors are used to predict the future behavior of state variables. Then, using a seven-segment switching sequence similar to that used in space-vector modulation, three active voltage vectors are chosen to correspond to the lowest value of the double-objective cost function and are applied to the inverter, resulting in a fixed switching frequency operation. To assess the performance of the modulated MPC method under various load situations, simulation results are presented.
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三相三电平t型逆变器的调制模型预测控制
为了控制三相三电平t型逆变器,提出了一种具有双目标成本函数的直接调制模型预测控制(MPC)方法。调制后的MPC可以在线性负载下提供平衡的直流链路电容电压和三相正弦负载电流。首先,使用27个潜在的开关向量来预测状态变量的未来行为。然后,使用类似于空间矢量调制的七段开关序列,选择三个与双目标代价函数的最低值相对应的有源电压矢量并施加到逆变器上,从而实现固定的开关频率操作。为了评估调制MPC方法在各种负载情况下的性能,给出了仿真结果。
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