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Design and passivity-based stability analysis of a PI current-mode controller for dc/dc boost converters

机译:用于DC / DC升压转换器的PI电流模式控制器的设计和基于无源性的稳定性分析

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A nonlinear current-mode proportional-integral (PI) controller is proposed for the challenging problem of regulating the output voltage of a dc/dc boost power converter. For the analysis, the accurate average nonlinear model of the boost converter is used, while a new advanced passivity-based nonlinear stability analysis is applied. Particularly, it is firstly proven that the closed-loop system is passive and a unique equilibrium exists. A new sequential method is proposed for constructing a suitable Lyapunov storage function for the entire closed-loop system, which is capable to prove the input-to-state stability of the system. All these properties are eventually used to prove convergence to the desired equilibrium. Finally, the effectiveness of the proposed PI controller is evaluated through simulation and experimental results for cases where step changes on the voltage reference value occur.
机译:提出了一种非线性电流模式比例积分(PI)控制器,用于调节DC / DC升压功率转换器的输出电压这一具有挑战性的问题。为了进行分析,使用了升压转换器的准确的平均非线性模型,同时应用了新的基于无源性的高级非线性稳定性分析。特别是,首先证明了闭环系统是被动的,并且存在唯一的平衡。提出了一种新的顺序方法,用于为整个闭环系统构造合适的Lyapunov存储函数,该函数能够证明系统的输入到状态稳定性。所有这些特性最终被用来证明收敛到所需的平衡。最后,通过仿真和实验结果评估了所提出的PI控制器的有效性,以应对电压参考值发生阶跃变化的情况。

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