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Multiple Lyapunov Function Based Reaching Condition for Orbital Existence of Switching Power Converters

机译:基于多个Lyapunov函数的开关功率转换器轨道存在性的到达条件

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摘要

A methodology to analyze the reaching condition of a switching power converter (SPC) using Lyapunov''s direct method and a piecewise linear model is outlined. By using a multiple Lyapunov function, the reaching criteria for orbital existence of a SPC is formulated as a linear matrix inequality that is solved using a convex optimization solver. Further, the criterion is modified to distinguish the different modes (i.e., sliding and asymptotic modes and combination of the two fundamental modes) of convergences of the reaching dynamics. The applicability of the reaching criteria for solving practical problems using case illustrations of dc驴dc converters and three-phase dc驴ac converters operating with different control and modulation techniques is demonstrated. The methodology developed in this paper can be potentially extended to other SPCs and may lead to the development of optimal-sequence control techniques that can dynamically change the mode and the rate of convergence of a SPC.
机译:概述了使用李雅普诺夫直接法和分段线性模型来分析开关电源转换器(SPC)达到条件的方法。通过使用多个Lyapunov函数,将SPC的轨道存在的达到标准表述为使用凸优化求解器求解的线性矩阵不等式。此外,修改标准以区分到达动力学收敛的不同模式(即,滑动和渐进模式以及两个基本模式的组合)。通过使用以不同控制和调制技术运行的dc驴dc转换器和三相dcdcac转换器的案例说明,说明了解决实际问题的达到标准的适用性。本文开发的方法可以潜在地扩展到其他SPC,并可能导致最优序列控制技术的发展,该技术可以动态改变SPC的模式和收敛速度。

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