A port-Hamiltonian Modelling and Controller Design Approach for Cascode Buck-Boost Converter

Wachiravit Buaket, Witthawas Pongyart
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Abstract

By using cascode technique, a buck boost converter can provide higher step-up voltage than the conventional does at the same duty ratio. Because of having non-linear variable structure and a zero on the right half plane, the cascode buck-boost becomes a challenging topic for control engineering. In this paper, an energy-based model of the converter is created and a controller design method using port-Hamiltonian is proposed. The developed controller is suitable for the non-linear system with variable structure, since the simulation results show the remarkable achievement of the proposed controller in command tracking and disturbance rejection. In addition, it can effectively treat the non-minimum phases issue of the converter.
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Cascode Buck-Boost变换器的端口-哈密顿建模与控制器设计方法
利用级联编码技术,buck升压变换器可以在相同占空比下提供比传统变换器更高的升压电压。层叠式升压系统由于具有非线性变结构和右半平面上的零,成为控制工程中的一个具有挑战性的课题。本文建立了基于能量的变换器模型,并提出了一种基于端口-哈密顿量的控制器设计方法。仿真结果表明,所设计的控制器在命令跟踪和抗干扰方面取得了显著的效果,适用于非线性变结构系统。此外,它还能有效地处理变换器的非最小相位问题。
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