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Lyapunov-function based control approach with cascaded PR controllers for single-phase grid-tied LCL-filtered quasi-Z-source inverters

机译:基于Lyapunov-Function的控制方法,具有单相网连接LCL滤波的准Z源逆变器的级联PR控制器

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This paper presents a Lyapunov-function based control approach with cascaded proportional-resonant (PR) controller for single-phase grid-tied LCL-filtered quasi-Z-source inverter (qZSI). The proposed control approach guarantees the global stability of the closed-loop system and zero steady-state error in the grid current. The reference values for the inverter current and capacitor voltage are generated by using cascaded connected PR controllers. As a consequence of using PR controllers, the need for performing derivative operations and estimating grid side inductance and capacitance is eliminated which, in turn, achieves zero steady-state error in the grid current. The shoot through control of the qZSI is achieved by the simple boost control technique. Computer simulations are conducted to show that the proposed control approach provides a good steady-state and dynamic performance in achieving the required control objectives.
机译:本文介绍了一种基于Lyapunov函数的控制方法,具有用于单相网连接的单相网电流的Quasi-Z源逆变器(QZSI)的级联比例谐振(PR)控制器。所提出的控制方法保证了闭环系统的全局稳定性和网格电流中的零稳态误差。通过使用级联连接的PR控制器产生逆变器电流和电容电压的参考值。由于使用PR控制器,消除了对执行衍生操作和估计电网侧电感和电容的需求,这又依次在网格电流中实现零稳态误差。通过简单的升压控制技术实现QZSI的控制。进行计算机仿真以表明该控制方法在实现所需的控制目标方面提供了良好的稳态和动态性能。

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