Constructing Transverse Coordinates For Orbital Stabilization Of Periodic Trajectories

2020 AMERICAN CONTROL CONFERENCE (ACC)(2020)

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摘要
An approach for introduction of transverse coordinates in a vicinity of a periodic trajectory is presented. The approach allows finding by numerical integration periodic normalized mutually-orthogonal vector-functions that form a continuously differentiable basis on moving Poincare sections for a given periodic solution of a nonlinear dynamical system.The found moving frame is used to define new local (transverse) coordinates for an associated affine nonlinear control system in a neighborhood of the trajectory, and to proceed with orbital stability analysis and/or synthesis of a stabilizing feedback control law.As a demonstrating example of the approach, the problem of orbital stabilization of a trajectory of a multibody car system is considered. The results of computer simulations of the system are presented.
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关键词
orbital stabilization,multibody car system,transverse coordinates,periodic trajectory,numerical integration periodic normalized mutually-orthogonal vector-functions,continuously differentiable basis,Poincaré sections,periodic solution,nonlinear dynamical system,associated affine nonlinear control system,orbital stability analysis,stabilizing feedback control law
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