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A Single-Reset-Integrator-Based Implementation of Line-Current-Shaping Controller for High-Power-Factor Operation of Flyback Rectifier

机译:基于单复位积分器的线性电流整形控制器实现反激整流器的高功率因数操作

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摘要

The objective of this paper is to present a simple yet accurate implementation of a resistor-emulator-type line-current-shaping controller for high-power-factor operation of a flyback rectifier. The important feature is that input voltage sensing is not required. In the circuit realization of the controller, no multiplier is used. Current shaping is performed directly on the input filter inductor current. The modulator uses only one reset integrator for the generation of duty ratio. The analysis presented in this paper shows the effect of input filter capacitance on discontinuous conduction mode of operation of the flyback inductor. Design equations for selection of the input filter components are derived. A low-frequency small-signal model of the rectifier is developed and verified by measurement up to 1 kHz. The performance of the controller is first tested by the SABER circuit simulator package. Then, a 100-W 110-V AC input 50-V DC output single-phase flyback rectifier prototype is built for experimental verification
机译:本文的目的是为反激式整流器的高功率因数操作提供一种简单但准确的电阻仿真器型线电流整形控制器。重要的功能是不需要输入电压检测。在控制器的电路实现中,不使用乘法器。电流整形直接在输入滤波器电感器电流上执行。调制器仅使用一个复位积分器来产生占空比。本文介绍的分析显示了输入滤波器电容对反激电感器不连续传导工作模式的影响。推导了用于选择输入滤波器组件的设计方程式。开发了整流器的低频小信号模型,并通过测量高达1 kHz的频率进行了验证。控制器的性能首先通过SABRE电路仿真器套件进行测试。然后,构建了一个100W 110V AC输入50V DC输出单相反激式整流器原型,用于实验验证

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