An optimization model of the input current for a variable input voltage in CMOS AC/DC converter

R. Radzuan, M. Salleh, Mohd Azril Ab Raop, M. N. Seroji, M. K. Hamzah
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引用次数: 1

Abstract

An optimization model of the input current for a variable input voltage in CMOS AC/DC converter is proposed in order to achieve regulation control of an AC/DC converter. An input current model of CMOS converter is obtained by applying an average method in converter circuit over one's switching period. This model is implemented in Pspice circuit simulation tool to verify an averaged model of the input current. The results show that the input current exhibits an increasing response to input voltage variation from 0.3 to 1.5 V. The validity of the proposed steady-state model is verified by the given simulation results for a specified design of CMOS converter. A good agreement is obtained between steady-state model and simulation results.
可变输入电压下CMOS AC/DC变换器输入电流的优化模型
为了实现对CMOS AC/DC变换器的调节控制,提出了一种可变输入电压下的输入电流优化模型。通过对变换器电路的开关周期进行平均计算,得到了CMOS变换器的输入电流模型。该模型在Pspice电路仿真工具中实现,以验证输入电流的平均模型。结果表明:在0.3 ~ 1.5 V范围内,输入电流随输入电压变化呈增大趋势;以特定设计的CMOS变换器为例,仿真结果验证了稳态模型的有效性。仿真结果与稳态模型吻合较好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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