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A Unified Approach to Stabilization, Trajectory Tracking, and Formation Control of Planar Underactuated Vehicles

Bo Wang, Sergey G. Nersesov, Hashem Ashrafiuon

Year
2020
Citations
4

Abstract

This paper develops a procedure to design passivity-based controllers for stabilization, trajectory tracking, and formation control of a class of underactuated planar vehicles. The proposed approach uses generalized canonical transformations and energy shaping techniques and offers a framework to design stabilization and trajectory tracking controllers with the same structure. This approach is further applied to multi-agent formation stabilization and tracking problems. The proposed method can be used to solve motion control problems for a class of underactuated planar vehicles with a unified controller structure. As an example, the method is then applied to design controllers for planar mobile robots. Numerical simulations are presented for each case.

Keywords

UnderactuationTrajectoryControl theory (sociology)PlanarTracking (education)Controller (irrigation)Computer scienceControl engineeringMobile robotClass (philosophy)

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