Stability Boundaries of Wide-Input-Range COT Buck Converters With Ripple Compensation

IF 2.4 Q2 ENGINEERING, ELECTRICAL & ELECTRONIC IEEE open journal of circuits and systems Pub Date : 2022-02-28 DOI:10.1109/OJCAS.2022.3152671
Federico Bizzarri;Paolo Nora;Angelo Brambilla
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Abstract

In this paper, we focus on instability issues of a wide-input-range Constant ON-Time buck converter. A transconductance stage in the control path that implements ripple compensation characterizes the architecture of this switching circuit. On the whole, decision rules, that heavily influence stability, govern the dynamical evolution of the converter. We show the onset of sub-harmonic oscillations and pulse-bursting caused by the presence of hysteresis in the regulation comparator. Operational boundaries are provided both in analytical and numerical form. They easily support the designer in choosing the converter parameter values. Theoretical results are verified against SIMetrix/SIMPLIS and MPLAB® Mindi™ simulations for a case study involving a commercial adjustable-frequency, synchronous buck regulator featuring an adaptive ON-time control architecture. A good agreement is obtained, as shown.
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带纹波补偿的宽输入范围COT降压变换器的稳定性边界
本文主要研究宽输入范围恒通时降压变换器的不稳定性问题。控制路径中实现纹波补偿的跨导级是该开关电路结构的特点。总体而言,决策规则控制着变换器的动态演化,而决策规则对变换器的稳定性影响很大。我们展示了由于在调节比较器中存在迟滞而引起的次谐波振荡和脉冲爆裂的发作。操作边界以解析和数值形式提供。它们方便地支持设计人员选择转换器的参数值。理论结果通过simmetrix /SIMPLIS和MPLAB®Mindi™模拟进行验证,该案例研究涉及具有自适应准时控制架构的商用可调频率同步降压调节器。得到了很好的一致性,如图所示。
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