Diaz-Bustos Manuel, Baier Carlos R, Torres Miguel A, Melin Pedro E, Acuna Pablo
Department of Electrical Engineering, Universidad de Talca, Camino a los Niches Km. 1, Curicó 3344158, Chile.
Instituto de Ciencias de la Ingeniería, Universidad de O'Higgins, Rancagua 2841959, Chile.
Sensors (Basel). 2022 Mar 23;22(7):2458. doi: 10.3390/s22072458.
Z and quasi-Z-source inverters (Z/qZSI) have a nonlinear impedance network on their dc side, which allows the system to behave as a buck-boost converter in their outputs. The challenges derived from the qZSI topology include (a) the control of the voltage and current on its nonlinear impedance network, (b) the dynamic coupling between the ac and dc variables, and (c) the fact that a unique set of switches are used to manage the power at dc and ac side of the system. In this work, a control scheme that combines a PWM linear control strategy and a strategy based on finite control state model predictive control (FCS-MPC) is proposed. The linear approach works during steady state, while the FCS-MPC works during transient states, either in the start-up of the converter or during sudden reference changes. This work aims to show that the performance of this control proposal retains the best characteristics of both schemes, which allows it to achieve high-quality waveforms and error-free steady state, as well as a quick dynamic response during transients. The feasibility of the proposal is validated through experimental results.
Z源逆变器和准Z源逆变器(Z/qZSI)在其直流侧具有非线性阻抗网络,这使得系统在输出端可表现为降压-升压转换器。准Z源逆变器拓扑带来的挑战包括:(a)对其非线性阻抗网络上的电压和电流进行控制;(b)交流变量和直流变量之间的动态耦合;(c)使用一组独特的开关来管理系统直流侧和交流侧的功率。在这项工作中,提出了一种将脉宽调制(PWM)线性控制策略和基于有限控制状态模型预测控制(FCS-MPC)的策略相结合的控制方案。线性方法在稳态期间起作用,而FCS-MPC在瞬态期间起作用,无论是在转换器启动时还是在参考值突然变化期间。这项工作旨在表明,该控制方案的性能保留了两种方案的最佳特性,使其能够实现高质量波形和无误差稳态,以及在瞬态期间实现快速动态响应。通过实验结果验证了该方案的可行性。