采用近似2DOF的交错PFC升压变换器鲁棒数字控制

Y. Satake, H. Furuya, Y. Mochizuki, Y. Fukaishi, K. Higuchi, K. Chamnongthai
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引用次数: 1

摘要

近年来,提高电力仪表的功率因数,降低谐波失真是电工仪表发展的迫切要求。一般来说,电流传导模式升压变换器用于有源PFC(功率因数校正)。在PFC升压变换器中,当占空比、负载电阻和输入电压发生变化时,其动态特性会发生很大的变化。这是交错PFC升压变换器控制困难的主要原因。本文提出了一种鲁棒数字控制器,用于抑制高功率因数、低谐波突变的DC-DC降压变换器负载阶跃响应特性的变化和输出电压的变化。用微处理器作为控制器的实验研究表明,这种数字控制器可以有效地提高功率因数,抑制输出电压的变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Robust digital control for interleaved PFC boost converter using approximate 2DOF
In recent years, improving of power factor and reducing harmonic distortion in electrical instruments are needed. In general, a current conduction mode boost converter is used for active PFC (Power Factor Correction). In a PFC boost converter, if a duty ratio, a load resistance and an input voltage are changed, the dynamic characteristics are varied greatly. This is the prime reason of difficulty of controlling the interleaved PFC boost converter. In this paper, a robust digital controller for suppressing the change of step response characteristics and variation of output voltage at a DC-DC buck converter load sudden change with high power factor and low harmonic is proposed. Experimental studies using a micro-processor for controller demonstrate that this type of digital controller is effective to improve power factor and to suppress output voltage variation.
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