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Formation control for multiple nonholonomic wheeled mobile robots based on integrated sliding mode controller and force function

Junyi Wang, Shiguang Wen, Huaizhen Wang, Yingcai Wan

Year
2024
Citations
1
Access
Open access

Abstract

In this paper, we present a novel method to achieve collision-free formation control for multiple nonholonomic wheeled mobile robots. By utilizing the leader–follower strategy, an integrated controller that combines a sliding mode controller for formation control and a force function for obstacle avoidance is proposed. To address the common chattering issue associated with sliding mode control, a novel depletion model is developed, which constrains the controller input to vary smoothly within a small range and effectively eliminates chattering. Additionally, a dynamic-gain structure is introduced to reconcile the conflicting demands of formation control and obstacle avoidance, providing enhanced coordination between the two tasks. Simulation and experiments’ results are provided to illustrate the effectiveness of the proposed method.

Keywords

Control theory (sociology)Nonholonomic systemMobile robotController (irrigation)Sliding mode controlControl engineeringMode (computer interface)Function (biology)RobotComputer science

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