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Leader-following formation control of multi-robot systems with adaptive fuzzy terminal sliding-mode controller

Yeong‐Hwa Chang, Cheng-Yuan Yang, Wei-Shou Chan, Chia-Wen Chang, Chin‐Wang Tao

Year
2013
Citations
8

Abstract

This paper focuses on the design of a formation controller for multi-robot dynamic systems using adaptive fuzzy terminal sliding-mode techniques. The dynamic model of differential wheeled robots is considered. To achieve finite time leader-follower formation control, a fuzzy terminal sliding-mode controller is derived based on graph theory and consensus algorithm. Moreover, an adaptive law is provided to estimate the bounds of unknown uncertainties. Both simulation and experimental results are applied to validate the formation performance. It is indicated that the proposed adaptive control scheme can provide better leader-following formation responses of networked multiple robots.

Keywords

Terminal sliding modeControl theory (sociology)Controller (irrigation)Fuzzy logicTerminal (telecommunication)RobotComputer scienceAdaptive controlSliding mode controlFuzzy control system

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