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Super-Twisting Differentiator-Based High Order Sliding Mode Voltage Control Design for DC-DC Buck Converters

机译:DC-DC Buck转换器基于超扭曲微分器的高阶滑模电压控制设计

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This paper aims to focus on the smooth output of DC-DC buck converters in wireless power transfer systems under input perturbations and load disturbances using the high-order sliding mode controller (HOSM) and HOSM with super-twisting differentiator (HOSM + STD). The proposed control approach needs only measurement of converter output voltage. Theoretical analysis and design procedures, as well as the super-twisting differentiator of the proposed controller are presented in detail with the prescribed convergence law of high-order sliding modes. Comparisons of both simulation and experimental results among conventional proportional-integral (PI) control, traditional sliding mode control (SMC), HOSM and HOSM + STD under various test conditions such as steady state, input voltage perturbations and output load disturbances, are presented and discussed. The results demonstrate and validate the effectiveness and robustness of the proposed control method.
机译:本文旨在重点研究使用高阶滑模控制器(HOSM)和带超扭曲微分器(HOSM + STD)的HOSM在无线扰动系统中在输入扰动和负载干扰下的DC-DC降压转换器的平滑输出。所提出的控制方法仅需要测量转换器的输出电压。详细介绍了所提出控制器的理论分析和设计程序,以及超扭微分器,并给出了规定的高阶滑模收敛规律。提出并比较了常规比例积分(PI)控制,传统滑模控制(SMC),HOSM和HOSM + STD在各种测试条件(例如稳态,输入电压扰动和输出负载扰动)下的仿真结果和实验结果,并且讨论过。结果证明并验证了所提出的控制方法的有效性和鲁棒性。

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