Adaptive frequency control technique for enhancing transient performance of DC-DC converters

Hong-Wei Huang, C. Hsieh, Ke-Horng Chen, S. Kuo
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引用次数: 16

Abstract

An adaptive frequency control (AFC) technique is proposed for minimizing transient dropout voltage and response time of switching DC-DC converters. As we know, nonlinear fast- transient techniques with fixed switching frequency can effectively regulate the unstable output voltage back to steady-state within a short time. However, they suffer from oscillation problem because of large sourcing or sinking recovery current at output of error amplifier by fast transient circuit. Therefore, linear operation provided by AFC technique can dynamically and smoothly adjust the switching frequency, which is proportional to the output voltage variation, to regulate output voltage back to its steady-state value. In other words, AFC technique eliminates system and sub-harmonic oscillation scenarios. Experimental results demonstrate the transient dropout voltage is improved 37.8% when load current changes from 100 mA to 500 mA.
提高DC-DC变换器暂态性能的自适应频率控制技术
针对开关DC-DC变换器的瞬态电压和响应时间最小化问题,提出了一种自适应频率控制技术。我们知道,采用固定开关频率的非线性快暂态技术可以有效地将不稳定的输出电压在短时间内调节回稳态。但由于快速瞬态电路导致误差放大器输出源电流过大或恢复电流下降,导致误差放大器存在振荡问题。因此,AFC技术提供的线性运算可以动态平滑地调整开关频率,使其与输出电压变化成正比,从而将输出电压调节回稳态值。换句话说,AFC技术消除了系统和次谐波振荡的情况。实验结果表明,负载电流从100 mA变化到500 mA时,暂态压降电压提高了37.8%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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