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Fast Unloading Transient Recovery of Buck Converters Using Series-Inductor Auxiliary Circuit based Sequence Switching Control

机译:基于串联电感辅助电路的顺序开关控制的Buck转换器快速卸载瞬态恢复

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This paper presents a sequence switching control (SSC) scheme for buck converters with a series-inductor auxiliary circuit, aiming at improving the load transient response. During an unloading transient, the series inductor is controlled as a small equivalent inductance so as to achieve a fast transient regulation. While in the steady state, the series inductor behaves as a large inductance to reduce the output current ripple. Furthermore, on the basis of the proposed variable inductance circuit, a SSC control scheme is proposed and implemented in a digital form. With the proposed control scheme the unloading transient event is divided into n+1 sub-periods, and in each sub-period, the capacitor-charge balance principle is used to determine the switching time sequence. Furthermore, its feasibility is validated in experiment with a 12V-3.3V low-voltage high-current synchronous buck converter. Experimental results demonstrate that the voltage overshoot of the proposed SSC scheme has improved more than 74% compared to that of the time-optimal control (TOC) scheme.
机译:本文提出了一种用于具有串联电感辅助电路的降压转换器的顺序开关控制(SSC)方案,旨在改善负载瞬态响应。在卸载瞬变期间,将串联电感器控制为较小的等效电感,以实现快速的瞬态调节。在稳态时,串联电感器表现为较大的电感,以减少输出电流纹波。此外,在提出的可变电感电路的基础上,提出并以数字形式实现了SSC控制方案。利用所提出的控制方案,将卸载瞬变事件分成n + 1个子周期,并且在每个子周期中,使用电容器-电荷平衡原理来确定切换时间序列。此外,在12V-3.3V低压大电流同步降压转换器的实验中验证了其可行性。实验结果表明,与时间最优控制(TOC)方案相比,所提出的SSC方案的电压过冲提高了74%以上。

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