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Open-Loop Power-Stage Transfer Functions Relevant to Current-Mode Control of Boost PWM Converter Operating in CCM

机译:与在CCM中工作的Boost PWM转换器的电流模式控制相关的开环功率级传递函数

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This paper presents the analysis of open-loop power-stage dynamics relevant to current-mode control for a boost pulsewidth-modulated (PWM) dc-dc converter operating in continuous-conduction mode (CCM). The transfer functions from input voltage to inductor current, from duty cycle to inductor current, and from output current to inductor current are derived. The delay from the MOSFET gate drive to the duty cycle is modeled using a first-order Pade approximation. The derivations are performed using an averaged linear small-signal circuit model of the boost converter for CCM. The transfer functions can be used in modeling the complete boost PWM converter when current-mode control is used. The theory was in excellent agreement with the experimental results, enforcing the validity of the transfer functions derived.
机译:本文介绍了与以连续传导模式(CCM)工作的升压脉宽调制(PWM)DC-DC转换器的电流模式控制相关的开环功率级动态分析。得出从输入电压到电感器电流,从占空比到电感器电流以及从输出电流到电感器电流的传递函数。从MOSFET栅极驱动到占空比的延迟使用一阶Pade逼近建模。使用CCM升压转换器的平均线性小信号电路模型进行推导。使用电流模式控制时,可以将传递函数用于对整个升压PWM转换器进行建模。该理论与实验结果非常吻合,从而增强了导出的传递函数的有效性。

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