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An Online Monitoring Method of Circuit Parameters for Variable On-Time Control in CRM Boost PFC Converters

机译:CRM Boost PFC变换器中可变导通时间的电路参数在线监测方法

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This paper proposes an improved zero current detection for critical conduction mode (CRM) control, which can compensate the input current distortion caused by the signal propagation delay and the existence of the negative resonance current. A unified variable on-time calculation method is also proposed to unify the formulas under the zero-voltage-switching condition and the valley-switching condition. Since these two methods are dependent on the boost inductance and device junction capacitance, which may be different from the nominal values, effort is needed to compensate the deviation on these two parameters. In this paper, an online monitoring method is proposed to compensate the numerical deviation. The proposed method only needs to sense the input voltage, output voltage, and the reverse flow time of the inductor current, leading to a high power quality in the entire input and load conditions. The experimental results of the proposed methods are demonstrated on a 200-W GaN-based CRM boost power factor correction prototype. With the proposed methods, the input current total harmonic distortion is only 0.78% at 110 VAC input with full load and 2.1% at 220 VAC input with full load.
机译:本文提出了一种用于临界传导模式(CRM)控制的改进的零电流检测方法,该方法可以补偿由于信号传播延迟和负谐振电流的存在而引起的输入电流失真。提出了统一的变量导通时间计算方法,以统一零电压切换条件和谷值切换条件下的公式。由于这两种方法取决于升压电感和器件结电容,可能与标称值不同,因此需要努力补偿这两个参数的偏差。本文提出了一种在线监测方法来补偿数值偏差。所提出的方法仅需要感测输入电压,输出电压和电感器电流的反向流动时间,从而在整个输入和负载条件下都具有较高的电能质量。在基于200W GaN的CRM CRM功率因数校正原型上证明了所提出方法的实验结果。使用所提出的方法,满载时110 VAC输入时的输入电流总谐波失真仅为0.78%,而满载时220 VAC输入时的输入电流总谐波失真仅为2.1%。

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