Adaptive backstepping sliding mode control for single-inductor double-output boost converter.

Minggui Mo, Jiarong Wu, Weilin Wu
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Abstract

To reduce the cross-regulation and improve the dynamic response performance of a single-inductor double-output Boost converter, an adaptive backstepping sliding mode control (ABSMC) strategy is proposed in this paper. The nonlinear mathematical model of the converter is established, an output function satisfying the exact feedback linearization (EFL) is constructed based on the inverse system theory, and the linearization and decoupling of the model are implemented. Meanwhile, the problem of EFL heavily relying on an exact model is solved by combining backstepping control with sliding mode control. Furthermore, an adaptive reaching law is proposed to adjust the gain of the switching function, and the chattering phenomenon of sliding mode control is reduced. The stability of the system is proven according to the Lyapunov stability theorem. Finally, compared with the existing control methods, both the simulation results and experimental results verify the effectiveness and superiority of the proposed ABSMC strategy.

单电感双输出升压转换器的自适应反步进滑模控制。
为减少交叉调节并改善单电感双输出 Boost 转换器的动态响应性能,本文提出了一种自适应反步进滑模控制(ABSMC)策略。建立了变流器的非线性数学模型,基于逆系统理论构建了满足精确反馈线性化(EFL)的输出函数,并实现了模型的线性化和解耦。同时,通过将反步控制与滑模控制相结合,解决了 EFL 严重依赖精确模型的问题。此外,还提出了调整开关函数增益的自适应达到律,减少了滑模控制的颤振现象。根据 Lyapunov 稳定性定理证明了系统的稳定性。最后,与现有的控制方法相比,仿真结果和实验结果都验证了所提出的 ABSMC 策略的有效性和优越性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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