Connectivity preservation and collision avoidance in networked nonholonomic multi-robot formation systems: Unified error transformation strategy

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초록

This paper proposes a unified error transformation strategy for the distributed formation tracking of networked uncertain nonholonomic mobile robots with different communication ranges. To guarantee the connectivity preservation and collision avoidance of all robots without employing any potential functions, a novel nonlinear formation error function using the relative distance and angles between robots is introduced. Then, the approximation-based local adaptive tracking design methodology using the dynamic surface design technique is recursively established to achieve (i) the connectivity preservation and collision prevention of initially connected robots, (ii) the collision avoidance of initially non-connected robots, and (iii) the desired formation tracking of robots in a fully distributed manner. The stability of the total closed-loop control system is analyzed in the Lyapunov sense. © 2019 Elsevier Ltd

키워드

Collision avoidance; Connectivity preservation; Distributed formation tracking; Networked nonholonomic systems; Unified error transformation; Closed loop control systems; Collision avoidance; Errors; Robots; Communication range; Connectivity preservation; Dynamic surface designs; Error transformation; Formation tracking; Multi-robot formation; Non-holonomic mobile robots; Nonholonomic systems; Machine design
제목
Connectivity preservation and collision avoidance in networked nonholonomic multi-robot formation systems: Unified error transformation strategy
저자
Yoo, S.J.; Park, B.S.
DOI
10.1016/j.automatica.2019.02.019
발행일
2019-05
유형
Article
저널명
Automatica
권
103
페이지
274 ~ 281