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Distributed Resilient Formation Control of Multiple Nonholonomic Mobile Robots with Finite-Time Convergence

Yani Wang, Minyin Lu, Yanling Tang, Zhipei Hu, An‐Min Zou

Year
2023
Citations
2

Abstract

A distributed resilient finite-time control approach is proposed for formation control of multiple nonholonomic mobile robots with unknown actuator attacks and under directed communication topology. First, the leader's information is estimated in a finite time by introducing a distributed finite-time observer. Then, a resilient finite-time formation tracking control protocol is designed with the help of the observers, the adaptive control approach, and the input-output feedback linearization technique. Rigorous analysis is provided to demonstrate that all followers can maintain a desired geometric formation and track a leader robot within a finite time. Finally, the efficiency of the derived resilient formation control law is illustrated through a numerical example.

Keywords

Mobile robotControl theory (sociology)Nonholonomic systemComputer scienceActuatorConvergence (economics)Observer (physics)RobotRobot kinematicsLinearization

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