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Dynamic Modeling and Controller Design for a Single-Stage Single-Switch Parallel Boost-Flyback–Flyback Converter

机译:单级单开关并联Boost-Flyback-Flyback转换器的动态建模和控制器设计

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In general, partial power of the parallel ac/dc converter is processed only once and transferred directly. In order to keep the output voltage constant, the switching duty ratio in the parallel converter must vary with the line phase. It means that the operating point of the parallel ac/dc converter changes with the variation of input voltage, which would be a challenge for controller design. In this paper, the dynamic modeling of a single-stage single-switch parallel boost-flyback-flyback converter is developed by the linearization of its large-signal equations. To overcome the modeling uncertainty due to the variation of operating point, the feedback controller is designed based on the boundary of the mode to obtain zero steady-state error, fast rise time, and heavily damping within input voltage range. Both the derived dynamic modeling and the designed voltage controller are demonstrated by the provided simulation and experiment results.
机译:通常,并行AC / DC转换器的部分功率仅处理一次并直接传输。为了保持输出电压恒定,并行转换器中的开关占空比必须随线路相位而变化。这意味着并行AC / DC转换器的工作点随输入电压的变化而变化,这对于控制器设计将是一个挑战。本文通过其大信号方程的线性化,建立了单级单开关并联升压-反激-反激转换器的动态建模。为了克服由于工作点变化而引起的建模不确定性,基于模式边界设计了反馈控制器,以在输入电压范围内获得零稳态误差,快速上升时间和高阻尼。所提供的仿真和实验结果证明了导出的动态建模和设计的电压控制器。

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