欠驱动非完整飞艇鲁棒全局镇定与抗扰

M. Yamada, Yasuhiro Taki, Akira Katayama, Y. Funahashi
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引用次数: 14

摘要

研究了在持续风扰动下,减少致动器数量的欠驱动飞艇的平面位置和方向控制问题。飞艇是由一组非线性方程描述的非完整系统,其动力学具有有界不确定性。提出了一种光滑时变坐标变换,将飞艇的抗扰问题简化为简单的线性定常系统的抗扰问题。一种新的鲁棒反馈控制器在系统不确定性条件下具有全局稳定和渐近抑制风扰动的能力。所提出的设计方法简单明了。实验验证了所提控制器的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Robust Global Stabilization and Disturbance Rejection of an Underactuated Nonholonomic Airship
This paper considers the problem of controlling both the planar position and the orientation of an underactuated airship with a reduced number of actuators in the presence of a persistent wind disturbance. The airship is a nonholonomic system described by a set of nonlinear equations and the dynamics are subjected to bounded uncertainties. A smooth and time-varying coordinate transformation is proposed to reduce the disturbance rejection problem of the airship to that of a simple linear time-invariant system. A new robust feedback controller provides global stabilization and asymptotical rejection against the wind disturbance under the plant uncertainties. The proposed design method is simple and straightforward. Experiments are performed to validate the effectiveness of the proposed controller.
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