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Evolving Feasible Gaits for a Hexapod Robot by Reducing the Space of Possible Solutions

Dominik Belter, Andrzej Kasiński, Piotr Skrzypczyński

Year
2008
Citations
13

Abstract

The objective of this paper is to develop feasible gait patterns that could be used to control a real hexapod walking robot. These gaits should enable the fastest movement that is possible with the given robot mechanics and drives on a flat terrain. We show in a series of evolutionary simulations how a gradual reduction of the permissible state space of the movements of the robot legs leads to the proper leg trajectories for a hexapod robot. This strategy enables the learning system to discover feasible gaits, using only simple dependencies between the control signals of the legs and a simple fitness function. Finally, a stable and fast tripod gait evolved in simulation is shown in an experiment on the real walking robot Ragno.

Keywords

HexapodRobotTerrainGaitComputer scienceControl theory (sociology)Reduction (mathematics)Robot controlSimulationArtificial intelligence

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