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Fixed-frequency Boundary Control of Buck Converter Based on Discrete Regulator of Hysteresis Band

机译:基于滞段间距调节器的降压转换器的固定频率边界控制

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When the boundary control is adopted for power converters, the switching frequency is dependent on the input voltage, output voltage, and circuit parameters. The converter often operates at a variable switching frequency, which makes the determination of the filter parameters difficult. This paper presents a fixed-frequency boundary control method of Buck converter with high-order switching surface based on varied hysteresis band. Firstly, a discrete dynamic model from switching frequency to hysteresis band is established. Then, a discrete regulator of hysteresis band based on the feedback of switching period error is proposed. The stable region of the feedback gain is given. Simulation results show that the proposed method can rapidly regulate the switching frequency to a reference value under a large disturbance with an excellent steady-state and dynamical performance.
机译:当采用电力转换器采用边界控制时,开关频率取决于输入电压,输出电压和电路参数。转换器通常以可变开关频率运行,这使得滤波器参数的确定难以。本文介绍了基于各种滞段频带的高阶开关表面的降压转换器固定频率边界控制方法。首先,建立从开关频率到滞后带的离散动态模型。然后,提出了一种基于交换周期误差反馈的滞后带的离散调节器。给出了反馈增益的稳定区域。仿真结果表明,该方法可以在大扰动下快速调节开关频率,以具有出色的稳态和动态性能。

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