基于Lyapunov控制和分段线性Lyapunov函数的升压DC-DC变换器鲁棒约束镇定

C. Yfoulis, D. Giaouris, F. Stergiopoulos, C. Ziogou, S. Voutetakis, S. Papadopoulou
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引用次数: 9

摘要

在本文中,我们描述了一种新的方法来设计一个开关模式升压DC-DC功率变换器的鲁棒和有效的状态反馈控制律。所提出的设计采用所谓的李雅普诺夫控制律,并试图解决大参数变化下的鲁棒约束镇定问题。根据所提出的方法,生成了静态或开关状态反馈控制律,从而解决了许多进一步的关键问题,即实现的低复杂性,精确的非线性动力学结合,硬状态和控制约束的非保守处理,对电源电压变化,设定点和负载变化的鲁棒性。控制设计过程是基于使用分段线性李雅普诺夫函数生成控制不变多面体(安全域)。利用变换器的精确开关模型对所提出的技术进行了数值评估。
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Robust constrained stabilization of a boost DC-DC converter with Lyapunov-based control and piecewise-linear Lyapunov functions
In this paper we describe a new methodology for designing robust and efficient state-feedback control laws for a switched-mode boost DC-DC power converter. The proposed design is adopting the so-called Lyapunov-based control law and attempts to solve the robust constrained stabilization problem under large parameter variations. With the methodology proposed static or switching state-feedback control laws are generated so that a number of further key issues are addressed, i.e. low complexity of the implementation, accurate nonlinear dynamics incorporation, nonconservative handling of hard state and control constraints, robustness to supply voltage variations, set-point and load changes. The control design procedure is based on the generation of controlled invariant polytopes (safety domains) using piecewise-linear Lyapunov functions. The proposed technique is numerically evaluated using the exact switched model of the converter.
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