基于改进反步法的DC-DC降压变换器输出电压稳定性研究

Md. Zubaer Alam, T. K. Roy, Subarto Kumar Ghosh, N. Mohammad, L. C. Paul
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引用次数: 0

摘要

本研究提出一种改进的反步控制(IBSC)方法来设计DC-DC降压变换器的控制器,以改善在变化的工作条件下的输出电压调节。为了开发所提出的控制器,首先建立了连续导通模式下DC-DC降压变换器的状态空间动力学模型。其次,为了避免传统平衡计分卡方法中虚拟控制律导数的复杂性,在控制律设计过程中将这些项作为不确定项处理。进一步,利用李雅普诺夫控制理论来保证闭环系统的全局渐近稳定性。最后,在MATLAB Simulink平台上进行了仿真研究,验证了所提IBSC技术的性能。仿真结果表明,该方法与传统的平衡计分卡方法相比具有优越性。仿真研究和定量结果表明,所提出的平衡计分卡方法优于传统的平衡计分卡方法。
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Output Voltage Stability of a DC-DC Buck Converter via an Improved Backstepping Method
This research presents an improved backstepping control (IBSC) approach to designing a controller for a DC-DC buck converter to improve output voltage regulation under changing operating conditions. To develop the proposed the proposed controller, a state-space DC-DC buck converter dynamical model in continuous conduction mode is first developed. Secondly, to avoid the complexity of virtual control law derivatives in the traditional BSC method, these terms are treated as uncertain terms during the control law design process. Furthermore, the Lyapunov control theory is used to ensure the closed-loop system's global asymptotic stability. Finally, the performance of the proposed IBSC technique is validated using a simulation study on the MATLAB Simulink platform. A comparison of the simulation results is also presented to show the superiority of the proposed approach as compared to the traditional BSC method. The simulation study and quantitative results reveal that the proposed IBSC method outperforms the traditional BSC method.
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