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VRSPV Soft-Start Strategy and AICS Technique for Boost Converters to Improve the Start-Up Performance

机译:用于升压转换器的VRSPV软启动策略和AICS技术可提高启动性能

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摘要

Soft-start strategy is very important for boost converters to guarantee the stability of the output voltage. However, previous methods may cause large initial inrush current and long output voltage settling time. In this paper, a variable ramp-slope with predefined voltage (VRSPV) soft-start strategy is proposed. As a result, one branch of the initial inrush current is successfully eliminated and the output settling time of the boost converter is shortened by using the variable slope soft-start voltage. Also, an adaptive inrush current suppressing (AICS) technique is designed. The series resistance of the output capacitor is adaptively regulated by AICS technique to further suppress the initial inrush current. Finally, the VRSPV strategy and AICS technique are combined and implemented in a voltage-mode boost converter. The measurement results show that the peak initial inrush current and settling time are decreased by 60% and 40%, respectively. The output voltage of the boost converter increases smoothly during the soft-start period and finally achieves stability. The proposed method of combining VRSPV strategy and AICS technique is very suitable to be integrated on a chip to save the printed circuit board area and cost.
机译:软启动策略对于升压转换器确保输出电压的稳定性非常重要。但是,以前的方法可能会导致较大的初始浪涌电流和较长的输出电压稳定时间。本文提出了一种具有预定义电压(VRSPV)的可变斜坡软启动策略。结果,通过使用可变斜率软启动电压,成功消除了初始浪涌电流的一个分支,并缩短了升压转换器的输出建立时间。此外,设计了一种自适应浪涌电流抑制(AICS)技术。输出电容器的串联电阻通过AICS技术进行自适应调节,以进一步抑制初始浪涌电流。最后,VRSPV策略和AICS技术被组合并在电压模式升压转换器中实现。测量结果表明,峰值初始浪涌电流和建立时间分别减少了60%和40%。升压转换器的输出电压在软启动期间平稳增加,并最终实现稳定。提出的将VRSPV策略与AICS技术相结合的方法非常适合集成在芯片上,以节省印刷电路板的面积和成本。

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