带双向开关的改进型无桥反激整流器峰值与平均电流模式控制比较

V. Ramya Chandranadhan, G. Renjini
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引用次数: 2

摘要

本文比较了采用双向开关的反激整流器的峰值电流模式和平均电流模式控制。该控制方案采用外部电压反馈环和内环,前者保持输出电压恒定,后者检测输入电流。反激整流器的平均和峰值电流模式控制适用于在变化输入条件下获得稳压输出电压。采用高增益电流误差放大器对输入电流的电压当量进行平均,再与平均电流模式控制下的参考电压进行比较。但在峰值电流模式控制的情况下,感应到峰值电感电流,这会产生许多严重的问题,包括抗噪性差,需要斜率补偿,以及固有的低电流环路增益无法纠正的峰值-平均电流误差。参考电压由整流输入电压乘以误差输出电压产生。这些控制方法与电压模式控制相比,增加了电流内环,获得了更好的线路和负载调节。整流输入电压反馈也能获得更好的输入功率因数。传统的反激整流器是由输入端的二极管桥式整流器和反激变换器互连而成。为了获得效率高、损耗少的反激整流器,提出了一种改进型反激整流器。改进的无桥反激整流器只引入了一个带有共同栅极驱动的开关,一个二极管和在二次侧的附加绕组。因此,转换器的重量不受这些附加组件的影响。建议的峰值和平均电流模式控制可以用作适配器。讨论了平均电流模式控制的设计细节,给出了仿真和硬件结果。
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Comparison between peak and average current mode control of improved bridgeless flyback rectifier with bidirectional switch
This paper compares peak and average current mode control of flyback rectifier with bidirectional switch. The control schemes employs an outer voltage feedback loop, which maintains the output voltage as constant and an inner loop, which sense the input current. Average and peak current mode control of flyback rectifier is suitable for obtaining a regulated output voltage with a varying input. Voltage equivalent of input current is averaged by using high gain current error amplifier, which again compared with the reference voltage in the case of average current mode control. But in the case of peak current mode control, peak inductor current has been sensed and this gives rise to many serious problems, including poor noise immunity, a need for slope compensation, and peak-to-average current errors which the inherently low current loop gain cannot correct. Reference voltage is produced by multiplying the rectified input voltage with the error output voltage. These control methods obtain better line and load regulation with the addition of inner current loop compared with voltage mode control. Also the rectified input voltage feedback achieves better input power factor. Conventional flyback rectifier is the inter connection of a diode bridge rectifier in the input side and a flyback converter. In order to obtain a highly efficient flyback rectifier with fewer losses an improved flyback rectifier is introduced. Improved bridgeless flyback rectifier only introduces a switch with common gate drive, a diode and an additional winding in the secondary side. Thus the weight of the converter is not affected with these additional components. Proposed peak and average current mode control can be used as an adapter. Design details of average current mode control also discussed and simulation and hardware results are presented.
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