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A predictive switching modulator for current mode control of high power factor boost rectifier

机译:用于高功率因数升压整流器电流模式控制的预测开关调制器

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In this paper, a new variation of current mode control for high power factor operation of boost rectifier is presented. The general features are no input voltage sensing, no use of multiplier, and no inner loop current regulator. It therefore follows the same control structure as that of the linear peak current mode control and the nonlinear carrier control. However, it implements a different switching law for the modulator that extends the range of continuous conduction mode of operation. The switching principle of the modulator is predictive, as the actual current equals the reference current at the end of each switching period. The no. of reset integrators required in this modulator for generation of the carrier waveform is two. The steady-state stability analysis of the boost rectifier with the proposed predictive switching modulator (PSM) is presented in this paper. A low-frequency small-signal model of the boost rectifier switched by the PSM is developed for evaluation of the control transfer function. Experimental results on a 400-W boost rectifier prototype are presented.
机译:本文提出了一种用于升压整流器高功率因数操作的电流模式控制的新变化形式。基本特征是不输入电压检测,不使用乘法器以及不使用内部环路电流调节器。因此,其遵循与线性峰值电流模式控制和非线性载波控制相同的控制结构。但是,它为调制器实现了不同的开关定律,从而扩展了连续传导工作模式的范围。调制器的开关原理是可预测的,因为实际电流等于每个开关周期结束时的参考电流。没有在该调制器中,用于产生载波波形的复位积分器的数量为2。本文提出了采用预测开关调制器(PSM)的升压整流器的稳态稳定性分析。建立了由PSM切换的升压整流器的低频小信号模型,用于评估控制传递函数。给出了400W升压整流器原型的实验结果。

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