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Collision avoidance control for a human-operated four-wheeled mobile robot

Naoki Uchiyama, Tresna Dewi, Shigenori Sano

发表年份
2014
引用次数
20

摘要

Because the collision avoidance function is indispensable for providing safe and easy operation of human-operated robotic systems, this paper deals with the collision avoidance control for a human-operated mobile robot in unknown environments. A typical four-wheeled mobile robot with infrared distance sensors for detecting obstacles is considered. The robot cannot move in an arbitrary direction owing to a nonholonomic constraint. Therefore, we propose a simple control approach in which a human operator’s control input is modified in real time to satisfy the nonholonomic constraint and avoid collision with obstacles. The proposed controller has steering- and brake-like functions that are adjusted according to the distance sensor information. The stability of the proposed control system is analyzed with a linear model. The effectiveness of the proposed method is confirmed by experiments in which several operators control the robot in an environment with obstacles.

关键词

Collision avoidanceMobile robotNonholonomic systemControl theory (sociology)Constraint (computer-aided design)RobotController (irrigation)Computer scienceCollisionControl engineering

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