用多项式函数求解具有角度信息的时变滑动面

S. Tokat, Osman Eray
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引用次数: 0

摘要

使用角度信息作为时间的线性函数来定义滑动面平移,可以在预定义的误差状态约束下提供滑动面的等间隔旋转和更平滑的控制。本研究将考虑二阶单输入非自治动态开环系统,并使用高阶多项式来定义角信息的时变结构。仿真结果表明,该方法可以得到不同的相平面轨迹。在仿真中,将考虑轨迹跟踪问题。然后,从文献中选择一种连续时变线性滑动面设计方法,通过分配角滑动面的多项式系数,直接获得相同的相位平面特性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Using polynomial functions for a time varying sliding surface with angular information
Sliding surface translation that has been defined using angular information as a linear function of time provides an equally spaced rotation of the sliding surface and a smoother control under predefined error state constraints. In this study, second order single-input non-autonomous dynamic open-loop systems will be considered and a higher order polynomial will be used to define the time-varying structure of the angular information. Then, it will be shown via simulations that different phase plane trajectories could be obtained with the proposed method. For the simulations, the trajectory tracking problem will be considered. Then, the same phase plane characteristics obtained using a continuously time-varying linear sliding surface design method selected from the literature will be directly obtained by assigning the polynomial coefficients of the angular sliding surface.
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