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Experimental Demonstration of High-Performance Robotic Balancing

Josephus J. M. Driessen, Antonios E. Gkikakis, Roy Featherstone, Bajwa Roodra Pratap Singh

Year
2019
Citations
17

Abstract

This paper presents the first practical demonstration of a recently developed theory of balance control that aims to achieve high performance in the sense of allowing a robot to make large, fast movements while maintaining its balance on a narrow support. This theory includes a simple method of leaning in anticipation of future motion commands, which is largely responsible for the high performance. The experiments reported here use a robot acting as a reaction wheel pendulum, and they test only the 2-D version of the theory. The results show that the balance controller's performance in practice closely resembles its theoretical performance. This paper also presents a simple yet accurate balance offset observer that measures the difference between true and estimated balanced configurations.

Keywords

Computer scienceAnticipation (artificial intelligence)Balance (ability)Offset (computer science)RobotControl theory (sociology)Controller (irrigation)Simple (philosophy)Inverted pendulumPendulum

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