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Adaptive Impedance Control for Teleoperation with Event-Triggered Controller

Jiangbo Zhao ( )Bowen Duan Junzheng Wang 
School of Automation, Beijing Institute of Technology, Beijing, P. R. China

This paper was recommended for publication in its revised form by editorial board member, Shiyu Zhao.

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Abstract

Uncertainty in the master–slave model is one of the primary factors affecting the transparency of teleoperation systems, and congestion in the master–slave communication network also greatly influences the performance of the teleoperation system. This paper proposes a combined framework of adaptive and impedance control to address the uncertainty in the master–slave model and achieve smooth operation at the slave end. Building upon this linear model, an event-triggered mechanism is designed using Lyapunov functions, with dynamic online adjustment of the triggering threshold parameters. Following the completion of the aforementioned research, control objectives are established to validate the performance of the teleoperation control system proposed in this paper. Finally, simulation verification is conducted in the Matlab/Simulink environment.

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Unmanned Systems
Pages 635-649

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Cite this article:
Zhao J, Duan B, Wang J. Adaptive Impedance Control for Teleoperation with Event-Triggered Controller. Unmanned Systems, 2025, 13(3): 635-649. https://doi.org/10.1142/S2301385025500402

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Received: 15 October 2023
Revised: 03 April 2024
Accepted: 03 April 2024
Published: 12 June 2024
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