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A Three-Terminal Switch Model of Constant On-Time Current Mode With External Ramp Compensation

机译:具有外部斜坡补偿的恒定导通电流模式的三端开关模型

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Multiphase constant on-time current-mode control based on pulse distribution structure is widely used in voltage regulator application for microprocessor. To minimize ripple cancellation effect, external ramp compensation is used in commercial products. However, external ramp will introduce dynamic to the system and stability margin will be suffered without considering its effect. This paper first studies the effect of external ramp by deriving small-signal transfer function based on describing function method. It is found that external ramp brings additional dynamic, with time constant related with switching period. Then, a simple equivalent circuit model based on three-terminal switch concept is proposed, which considers the effect of external ramp by adding an additional R-L branch. The equivalent circuit model can be reduced to previous unified three-terminal switch model when external ramp is zero and can be reduced to model of constant on-time voltage mode control when external ramp is much larger than inductor current ramp. The proposed three-terminal switch model is a complete model, which can be used to examine all transfer functions and is accurate up to half of switching frequency. The analytical transfer functions are provided for easy reference. The model is verified by SIMPLIS simulation and experimental measurement.
机译:基于脉冲分布结构的多相恒定导通时间电流模式控制被广泛用于微处理器的稳压器应用中。为了最小化纹波消除效果,商业产品中使用了外部斜坡补偿。但是,外部斜坡会给系统带来动力,并且在不考虑其影响的情况下会遭受稳定性裕度的影响。本文首先通过描述函数方法推导小信号传递函数,研究外部斜坡的影响。发现外部斜坡带来了额外的动态,其时间常数与开关周期有关。然后,提出了一种基于三端开关概念的简单等效电路模型,该模型通过增加一个R-L分支考虑了外部斜坡的影响。当外部斜坡为零时,等效电路模型可以简化为先前的统一三端开关模型;当外部斜坡远大于电感器电流斜坡时,可以将等效电路模型简化为恒定导通时间电压模式控制模型。提出的三端开关模型是一个完整的模型,可用于检查所有传递函数,并且精确度高达开关频率的一半。提供分析传递函数以便于参考。通过SIMPLIS仿真和实验测量验证了该模型。

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