Razi Reza, Karbasforooshan Mohammad-Sadegh, Monfared Mohammad
Department of Electrical Engineering, Faculty of Engineering, Ferdowsi University of Mashhad, Mashhad, Iran.
ISA Trans. 2017 Mar;67:496-506. doi: 10.1016/j.isatra.2017.01.019. Epub 2017 Jan 26.
This paper proposes an improved multi-loop control scheme for the single-phase uninterruptible power supply (UPS) inverter by using a plug-in odd-harmonic repetitive controller to regulate the output voltage. In the suggested control method, the output voltage and the filter capacitor current are used as the outer and inner loop feedback signals, respectively and the instantaneous value of the reference voltage feedforwarded to the output of the controller. Instead of conventional linear (proportional-integral/-resonant) and conventional repetitive controllers, a plug-in odd-harmonic repetitive controller is employed in the outer loop to regulate the output voltage, which occupies less memory space and offers faster tracking performance compared to the conventional one. Also, a simple proportional controller is used in the inner loop for active damping of possible resonances and improving the transient performance. The feedforward of the converter reference voltage enhances the robust performance of the system and simplifies the system modelling and the controller design. A step-by-step design procedure is presented for the proposed controller, which guarantees stability of the system under worst-case scenarios. Simulation and experimental results validate the excellent steady-state and transient performance of the proposed control scheme and provide the exact comparison of the proposed method with the conventional multi-loop control method.
本文提出了一种改进的单相不间断电源(UPS)逆变器多环控制方案,通过使用插入式奇次谐波重复控制器来调节输出电压。在所建议的控制方法中,输出电压和滤波电容电流分别用作外环和内环反馈信号,并且参考电压的瞬时值前馈到控制器的输出端。在外环中采用插入式奇次谐波重复控制器来调节输出电压,而不是传统的线性(比例积分/谐振)和传统重复控制器,与传统控制器相比,该控制器占用更少的内存空间并提供更快的跟踪性能。此外,内环中使用简单的比例控制器来对可能的谐振进行有源阻尼并改善瞬态性能。变换器参考电压的前馈增强了系统的鲁棒性能,并简化了系统建模和控制器设计。针对所提出的控制器给出了逐步设计过程,该过程保证了系统在最坏情况下的稳定性。仿真和实验结果验证了所提出控制方案的优异稳态和瞬态性能,并提供了所提方法与传统多环控制方法的精确比较。