Connectivity-maintaining and collision-avoiding performance function approach for robust leader–follower formation control of multiple uncertain underactuated surface vessels

Citations

WEB OF SCIENCE

118
Citations

SCOPUS

135

초록

A robust leader–follower formation tracking design using connectivity-maintaining and collision-avoiding performance functions is developed for multiple uncertain underactuated surface vessels (USVs). It is assumed that the USVs communicate within limited ranges and all nonlinearities of the USV dynamics are completely unknown. Compared with the related literature, two primary contributions of this paper are to derive connectivity-maintaining and collision-avoiding performance functions for designing a robust formation tracking scheme using only relative state information and to establish an obstacle avoidance strategy guaranteeing the connectivity between the leader and the followers while avoiding an obstacle. Based on the Lyapunov stability theorem, the predesignated formation tracking performance and stability of the proposed control system have been analyzed without using potential-like functions and function approximation techniques. Simulation results are provided to show the effectiveness of the proposed theoretical result. © 2021 Elsevier Ltd

키워드

Collision and obstacle avoidances; Connectivity maintenance; Leader–follower formation control; Underactuated surface vessels (USVs); Unknown nonlinearities; Robustness (control systems); Formation control; Formation tracking; Function approximation techniques; Lyapunov stability theorem; Performance functions; Primary contribution; State information; Underactuated surface vessels; Collision avoidance
제목
Connectivity-maintaining and collision-avoiding performance function approach for robust leader–follower formation control of multiple uncertain underactuated surface vessels
저자
Park, B.S.; Yoo, S.J.
DOI
10.1016/j.automatica.2021.109501
발행일
2021-05
유형
Article
저널명
Automatica
권
127