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Four‐Wheeled Mobile Robot With Flexible Posture Control

Tianxiang Lan, Guotian Yang

Year
2024
Citations
7
Access
Open access

Abstract

ABSTRACT This paper presents a novel wheeled robot with adaptive suspensions to maintain a stable body posture when driving uneven roads. Each robot suspension is driven by a brushless geared motor, eliminating the traditional mechanical shock absorber. We design a virtual spring‐damping system using force control to solve the problem of uneven support and high‐frequency oscillation on four wheels. Subsequently, we incorporated a flexible posture control that uses the chassis posture as feedback and linearized the control to improve the dynamic response. Finally, the prototype is experimented on a simulated road and verified that the prototype and the proposed control algorithm can realize the expected requirements.

Keywords

Mobile robotControl engineeringRobotRobot controlComputer scienceControl (management)Physical medicine and rehabilitationControl theory (sociology)Artificial intelligenceEngineering

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