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Design method of brachiation controller based on virtual holonomic constraint

Toshio Fukuda, Shigetaka Kojima, Kosuke Sekiyama, Yasuhisa Hasegawa

Year
2007
Citations
17

Abstract

This paper describes a control for the brachiation robot with holonomic constraint. In our previous work, the brachiation controller is composed of two actions: swing-back and locomotion. The purpose of swing-back is to excite a robot so as to achieve the locomotion successfully, while locomotion action is to move forward by releasing the ladder with the backward arm in the direction of locomotion and gripping the target ladder with another arm. However, the conventional control can not apply brachiation in irregular ladder. And the convetional control was not consider energy efficiency. Thus, a novel method to achieve brachiation in irregular ladder and an energy-efficient brachiation by exacting a swing-back during locomotion is proposed. Experimental results show that the proposed method can improve the locomotion action as much as over 30% in energy consumption.

Keywords

HolonomicSwingRobotConstraint (computer-aided design)Holonomic constraintsControl theory (sociology)Controller (irrigation)Computer scienceWork (physics)Robot locomotion

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