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A General Method for Deciding the Input Filter Capacitance of Flyback Switching AC-DC Converter with Peak Current-Controlled Mode

机译:具有峰值电流控制模式的反激切换AC-DC转换器的输入滤波电容的一般方法

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This paper presents a general method for deciding the input filter capacitance of flyback switching ac-dc converters with peak current-controlled mode. Firstly, a simulation model for flyback ac-dc converter is obtained by adding the rectifier and filter circuit to a flyback dc-dc converter model developed by the authors. The simulation results show that the processes of capacitor charging and discharging are independent, their boundary is near the maximal value of input voltage, and the part of flyback dc-dc converter can be seen as an approximately constant power load. Secondly, an analytic model for deciding the input power of flyback dc-dc converter with rated load and different input dc voltages is presented. Furthermore, the effect caused by the parasitical parameters in the electronic parts is studied, and the corresponding analytical method for deciding the input filter capacitance is given. The effect on the capacitance caused by the control delay is analyzed qualitatively.
机译:本文介绍了一种具有峰值电流控制模式的反激切换AC-DC转换器的输入滤波器电容的一般方法。首先,通过将整流器和滤波器电路添加到作者开发的反激式DC-DC转换器模型来获得反激式AC-DC转换器的模拟模型。仿真结果表明,电容器充电和放电的过程是独立的,它们的边界接近输入电压的最大值,反激DC-DC转换器的一部分可以被视为近似恒定的功率负载。其次,提出了用于确定具有额定负载和不同输入直流电压的反激DC-DC转换器的输入功率的分析模型。此外,研究了由电子部件中的寄生参数引起的效果,并给出了用于决定输入滤波电容的相应分析方法。定性地分析了对控制延迟引起的电容的影响。

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