Lyapunov-Function Based Control Strategy for Four-Switch Buck-Boost DC-DC Converters

H. Komurcugil, N. Guler, S. Bayhan
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引用次数: 1

Abstract

This paper presents a Lyapunov-function-based control strategy for four-switch buck-boost (FSBB) DC-DC converters. The inductor current control of FSBB is achieved by the Lyapunov-function-based control approach. The reference of the inductor current is obtained by a PI controller whose input is the error between the reference and measured values of FSBB output voltage. Since FSBB converter contains separate switches for buck and boost stages, separate control input equations are defined for each stage. As a consequence of controlling each stage by dedicated control input, the proposed control method does not need mode detection algorithm. Furthermore, the system stability is guaranteed by satisfying Lyapunov's stability condition. The effectiveness of the proposed method has been tested by Matlab simulations under load step, reference step and mode transitions for buck and boost modes. The results show that the proposed control method is capable of regulating the output voltage under all dynamic transition conditions.
基于lyapunov函数的四开关Buck-Boost DC-DC变换器控制策略
提出了一种基于李雅普诺夫函数的四开关降压升压(FSBB) DC-DC变换器控制策略。FSBB的电感电流控制采用基于李雅普诺夫函数的控制方法。电感电流的参考值由PI控制器获得,PI控制器的输入是FSBB输出电压的参考值与实测值之间的误差。由于FSBB变换器包含单独的降压和升压开关,因此为每个级定义了单独的控制输入方程。由于采用专用控制输入控制各阶段,因此该控制方法不需要模式检测算法。通过满足Lyapunov稳定性条件来保证系统的稳定性。通过Matlab仿真验证了该方法在负载阶跃、参考阶跃以及降压和升压模式转换下的有效性。结果表明,所提出的控制方法能够在各种动态过渡条件下对输出电压进行调节。
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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