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Model Predictive Approach for a Simple and Effective Load Voltage Control of Four-Leg Inverter With an Output $LC$ Filter

机译:具有输出$ LC $滤波器的四脚逆变器简单有效的负载电压控制的模型预测方法

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摘要

This paper presents a finite control set model predictive strategy and its application to the load voltage control of two-level four-leg inverters. The proposed approach uses the novel discrete-time model of the inverter and output $LC$ filter in order to predict the variables to be controlled. These predictions are carried out for the 16 switching states of the inverter and are evaluated using a cost function. The switching state that forces the load voltages to be closest to their respective references is chosen and applied to the inverter. The behavior of the predictive controller has been investigated, and the changes to both inductive and capacitive filter parameters have been considered. In order to improve the reliability of the fourth leg as well as the overall inverter efficiency, a solution is proposed, which combines hardware and software reconfigurations. The feasibility of the proposed method is verified through simulation and experimental results considering single-/three-phase, balanced/unbalanced, and linearonlinear loads.
机译:本文提出了一种有限控制集模型的预测策略,并将其应用于两电平四桥臂逆变器的负载电压控制中。所提出的方法使用新颖的逆变器离散时间模型并输出$ LC $滤波器,以预测要控制的变量。这些预测是针对逆变器的16个开关状态执行的,并使用成本函数进行评估。选择迫使负载电压最接近其各自参考电压的开关状态,并将其施加到逆变器上。研究了预测控制器的行为,并考虑了电感和电容滤波器参数的变化。为了提高第四条腿的可靠性以及整个逆变器效率,提出了一种将硬件和软件重新配置结合在一起的解决方案。通过考虑单相/三相,平衡/不平衡以及线性/非线性负载的仿真和实验结果,验证了该方法的可行性。

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