Finite-time path following control of unmanned surface vessels with an obstacle avoidance strategy

Simeng Song, Zhilin Liu, Shouzheng Yuan, Y.Q. Ma, Lin Yang, Zhongxin Wang · 2024

This paper addresses the finite-time multilinear path following problem for unmanned surface vessels, where external disturbances, input constraints, and statically known obstacles are considered. Specifically, a finite-time observer designed based on finite-time theory is first used to repair the unknown lumped disturbance and then compensated into the controller. Then, the finite-time line of sight is applied to the linear path-following problem. Next, a finite-time sliding mode control is designed at the dynamics level to achieve finite-time convergence of the dynamics errors. Finally, a simple and intuitive obstacle avoidance strategy based on geometric relations is designed, considering the possible presence of static obstacles in the following. Theoretical proofs and a simulation case are given to illustrate the validity of the proposed scheme.

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