Guaranteed-connectivity-based distributed robust event-triggered tracking of multiple underactuated surface vessels with uncertain nonlinear dynamics

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초록

In this paper, we propose a distributed and robust event-triggered tracking methodology with guaranteed network connectivity and tracking performance for synchronization of multiple uncertain underactuated surface vessels (USVs) under limited communication range. To achieve the guaranteed connectivity and performance, the individual position errors among USVs are nonlinearly transformed by time-varying functions and local heading angle errors using approach angles are newly presented. Based on these error functions, the local tracking controllers with asynchronous event-triggering laws are designed for uncertain USV followers without employing adaptive and approximation techniques. Using Lyapunov stability theorem, it is shown that the stability, connectivity maintenance, and tracking performance of the proposed control system are ensured. © 2020, Springer Nature B.V.

키워드

Distributed robust event-triggered tracking, connectivity maintenanceGuaranteed performanceUnderactuated surface vessels (USVs)Unknown nonlinearitiesErrorsApproximation techniquesConnectivity maintenanceGuaranteed performanceLimited communication rangeLyapunov stability theoremNetwork connectivityTime-varying functionsUnderactuated surface vesselsUncertainty analysis
제목
Guaranteed-connectivity-based distributed robust event-triggered tracking of multiple underactuated surface vessels with uncertain nonlinear dynamics
저자
Yoo, Sung JinPark, Bong Seok
DOI
10.1007/s11071-019-05432-5
발행일
2020-02
유형
Article
저널명
Nonlinear Dynamics
99
3
페이지
2233 ~ 2249