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Observer-based higher order sliding mode control of power factor in three-phase AC/DC converter for hybrid electric vehicle applications

机译:混合动力电动汽车三相AC / DC转换器中基于观测器的功率因数高阶滑模控制

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摘要

In this paper, a full-bridge boost power converter topology is studied for power factor control, using output higher order sliding mode control. The AC/DC converters are used for charging the battery and super-capacitor in hybrid electric vehicles from the utility. The proposed control forces the input currents to track the desired values,which can control the output voltage while keeping the power factor close to one. Super-twisting sliding mode observer is employed to estimate the input currents and load resistance only from the measurement of output voltage. Lyapunov analysis shows the asymptotic convergence of the closed-loop system to zero. Multi-rate simulation illustrates the effectiveness and robustness of the proposed controller in the presence of measurement noise.
机译:本文研究了一种全桥升压功率转换器拓扑,它使用输出高阶滑模控制来进行功率因数控制。 AC / DC转换器用于为公用事业公司的混合动力汽车中的电池和超级电容器充电。所提出的控制迫使输入电流跟踪所需的值,该值可以控制输出电压,同时保持功率因数接近一。超扭曲滑模观察器仅用于测量输出电压,即可估算输入电流和负载电阻。李雅普诺夫分析显示闭环系统为零的渐近收敛。多速率仿真说明了在存在测量噪声的情况下所提出的控制器的有效性和鲁棒性。

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