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Self-balancing and position control using multi-loop approach for ball robots

Ching‐Chih Tsai, Ming-Han Juang, Cheng-Kai Chan, Ching‐Wen Liao, Siang-Jyun Chan

Year
2010
Citations
22

Abstract

This paper presents a multi-loop control approach for dynamic modeling, self-balancing and position control of a ball robot (Ballbot) with inverse mouse-ball driving mechanism actuated by two independent brushless motors simultaneously. A completely non-decoupling dynamic model of the robot incorporating with viscous and static frictions is derived using Newtonian mechanics. Two multi-loop controllers are then proposed to accomplish robust self-balancing and position control (regulation) of the robot with exogenous disturbances. Computer simulations and experimental results are conducted for illustration of the effectiveness of the proposed control method.

Keywords

Control theory (sociology)Decoupling (probability)RobotBall (mathematics)Computer scienceControl engineeringEngineeringControl (management)Artificial intelligenceMathematics

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