Sliding Mode Control of an Isolated Inverter Based on Active Clamped Flyback-Forward Converter

Farzaneh Bagheri, S. Bayhan, H. Komurcugil
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Abstract

This paper presents a super twisting sliding mode control method for a high-efficiency high-boost interleaved soft-switching flyback-forward converter supplying a standalone inverter. In the proposed control method, the dc side input current and the ac side load voltage are injected to the sliding mode control as the state variables and the chattering is eliminated by applying the super twisting sliding mode control input. Two main switches and two active clamp switches are leveraged in the dc side which is operated by the signals obtained from the dc side sliding function. The full bridge inverter is controlled by the pulses obtained from the ac side sliding control input. To generate the dc side input current reference, a PI regulator is employed to process the dc side output voltage and determine the input current reference. The simulation results validate the proficiency of the method in terms of zero steady state error, fast time response and robustness against disturbances while achieving a sinusoidal output voltage with low total harmonic distortion.
基于有源箝位反激正变换器的隔离型逆变器滑模控制
针对为独立逆变器供电的高效率高升压交错软开关反激变换器,提出了一种超扭滑模控制方法。该控制方法将直流侧输入电流和交流侧负载电压作为状态变量注入到滑模控制中,并采用超扭滑模控制输入消除抖振。直流侧利用两个主开关和两个有源钳位开关,由从直流侧滑动函数获得的信号操作。全桥逆变器由从交流侧滑动控制输入获得的脉冲控制。为了产生直流侧输入基准电流,采用PI稳压器处理直流侧输出电压并确定输入基准电流。仿真结果验证了该方法在实现低总谐波失真的正弦输出电压的同时,具有零稳态误差、快速的时间响应和对干扰的鲁棒性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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