Self-tuning discrete sliding mode control of a closed-loop regulated PWM inverter with optimal sliding surface

Shih-Liang Jung, Hsiang-Sung Huang, Y. Tzou
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引用次数: 4

Abstract

This paper presents a self-tuning discrete sliding mode control scheme with feedforward compensation for the closed-loop regulation of PWM inverters used in uninterruptible power supplies (UPS). A self-tuning scheme is proposed to adjust the parameters of both the feedforward and sliding mode controllers. In designing the sliding mode controller, the authors have taken the effect of load disturbance into consideration to enhance the robustness of the controlled system. The sliding surface of the sliding mode controller is designed such that the behavior of the controlled PWM inverter system is optimal, subject to the defined cost function. Simulation and experimental results are given to show the superiority of the proposed control scheme.
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具有最优滑动面的闭环调节PWM逆变器的自调谐离散滑模控制
针对不间断电源(UPS)中PWM逆变器的闭环调节,提出了一种具有前馈补偿的自整定离散滑模控制方案。提出了一种自整定方案来调整前馈控制器和滑模控制器的参数。在设计滑模控制器时,考虑了负载扰动的影响,增强了被控系统的鲁棒性。设计了滑模控制器的滑动面,使被控PWM逆变器系统的行为符合所定义的成本函数。仿真和实验结果表明了所提控制方案的优越性。
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Program committee Cover page Double boost effect topology for AC/DC converter with unity power factor Optimizing the AC resistance of multilayer transformer windings with arbitrary current waveforms A novel quasi-resonant DC-DC converter using phase-shift modulation in secondary side of high-frequency transformer
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