具有外部干扰的DC-DC降压变换器鲁棒自适应反步控制器设计

T. K. Roy, M. A. Mahmud, W. Shen, M. E. Haque, A. Oo
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引用次数: 9

摘要

在现代电力电子系统中,DC-DC变换器是驱动直流系统的主要受控电源之一。但其固有的非线性和时变特性往往给控制问题带来一些困难。本文提出了一种基于脉冲宽度调制(PWM)递归方法的鲁棒非线性自适应控制器设计,用于驱动DC-DC降压变换器。该控制器是基于buck变换器的动力学模型设计的,模型中的所有参数都假定为未知。通过自适应律估计这些未知参数,并通过在不同阶段制定合适的控制Lyapunov函数(clf)来保证这些律的稳定性。所提出的控制方案还提供了对外部干扰的鲁棒性,因为这些干扰被考虑在模型内。该方案的一个主要特点是克服了传统自适应方法中存在的未知参数的过度参数化问题。最后,通过仿真结果验证了所提控制方案的有效性,并与已有的自适应反步控制器进行了比较。仿真结果清楚地表明,在更快的输出电压跟踪响应方面,性能得到了改善。
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Robust adaptive backstepping controller design for DC-DC buck converters with external disturbances
In modern power electronic systems, DC-DC converter is one of the main controlled power sources for driving DC systems. But the inherent nonlinear and time-varying characteristics often result in some difficulties mostly related to the control issue. This paper presents a robust nonlinear adaptive controller design with a recursive methodology based on the pulse width modulation (PWM) to drive a DC-DC buck converter. The proposed controller is designed based on the dynamical model of the buck converter where all parameters within the model are assumed as unknown. These unknown parameters are estimated through the adaptation laws and the stability of these laws are ensured by formulating suitable control Lyapunov functions (CLFs) at different stages. The proposed control scheme also provides robustness against external disturbances as these disturbances are considered within the model. One of the main features of the proposed scheme is that it overcomes the over-parameterization problems of unknown parameters which usually appear in some conventional adaptive methods. Finally, the effectiveness of the proposed control scheme is verified through the simulation results and compared to that of an existing adaptive backstepping controller. Simulation results clearly indicate the performance improvement in terms of a faster output voltage tracking response.
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