基于投影法的PWM型DC-DC降压变换器鲁棒自适应反步控制器设计

T. K. Roy, L. C. Paul, M. Pervej, M. Sarkar, F. K. Tumpa
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引用次数: 2

摘要

DC-DC电源变换器是现代电力电子系统中驱动直流系统的重要电源。然而,由于负载电阻的时变和非线性特性,保证这种变换器的稳定性往往是一个非常具有挑战性的问题。本文研究了一种非线性鲁棒自适应技术对DC-DC降压变换器输出电压的调节。该控制器基于李雅普诺夫理论递归设计,其中负载阻力作为未知参数。通过基于投影法的参数自适应律估计未知负载阻力。请注意,投影方法是一种鲁棒性增强技术,它通过不同阶段的控制李雅普诺夫函数(clf)的公式确定凸集中的未知参数变化。所提出的控制器的优点是能够提供抗外部湍流的鲁棒性能,并且克服了过参数化的困难。最后通过仿真结果验证了所设计控制器的有效性,并与现有控制器进行了比较。从仿真结果可以明显看出,所设计的控制器在稳定时间和快速跟踪期望输出电压方面比现有控制器提供了显着的性能改进。
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Robust adaptive backstepping controller design for PWM based DC-DC buck converter based on projection method
DC-DC power converter is a most important power source for driving a DC system in contemporary power electronic systems. However, owing to the time-varying and nonlinear characteristics of load resistance, it is often very challenging issue to ensure the stability of such converters. This paper is concerned about the regulation of the output voltage of a DC-DC buck converter using a nonlinear robust adaptive technique. The proposed controller is designed recursively based on the Lyapunov theory where the load resistance is considered as an unknown parameter. This unknown load resistance is estimated through the parameter adaptation law based on the projection method. Note that the projection method is a robustness augmentation technique that bounds the unknown parameter variations in a convex set which confirm through the formulation of control Lyapunov functions (CLFs) at different stages. The advantages of the proposed controller are that it can provide robust performance against external turbulence and also conquer the over-parameterization difficulty. At last the usefulness of the designed controller is verified through simulation results and compared with an existing controller. From the simulation results, it is obvious that the designed controller provides a significant performance improvement than the existing controller in terms of settling time and fast tracking desired output voltage.
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