基于物理的对脉冲控制的操作稳定性的评论

Y. Kolokolov, A. Monovskaya
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引用次数: 0

摘要

本文考虑了与脉冲模式的工作稳定性解释有关的有趣的细微差别。从工程中典型的小信号位置开始考虑,以估计允许参数体积的工作极限。接下来,将使用经典和改进的分岔图来显示基于模型的操作过程分岔边界和基于物理的稳定性退化阈值。其次,将在参数空间中揭示的动力学演化的规律性和不确定性转化为相空间,建立双边相参关系。因此,所考虑的脉冲控制的自然电位和不可避免的限制的一般情况变得明显。这样的图片展示了如何可能避免一些关于稳定性的矛盾结论的变体。所得结果似乎适用于变结构系统动力学中物理过程的控制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Physically-based comments to the operating stability for pulse control
The paper considers interesting nuances connected with interpretations of the operating stability for pulse modes. The consideration begins from the small-signal position typical for engineering to estimate the operating limits of a permissible parametric volume. Next, classical and modified bifurcation diagrams are involved to show model-based bifurcation boundaries of the operating process and physically-based thresholds of stability degradation. Next, regularities and uncertainties of the dynamics evolution revealed in the parametrical space are translated into the phase space to establish bilateral phase-parametric relations. Thus a general picture of natural potentialities and unavoidable restrictions of the considered pulse control becomes apparent. Such picture demonstrates variants how it could be possible to avoid some paradoxical conclusions concerning the stability. The presented results seem to be applicable to the control of physical processes in dynamics of systems with variable structures.
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