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Continuous assessment of gait stability in limit cycle walkers

Juan Álvaro Gallego, Arturo Forner‐Cordero, Juan C. Moreno, A. Montellano, E. A. Turowska, José L. Pons

Year
2010
Citations
3

Abstract

Walking in the presence of perturbations poses a demanding challenge to bipedal robots. In this context, we propose an approach based on an algorithm that observes continuously the state of the robot, and if a perturbation is detected, triggers a recovery action. This paper focuses in the former, it presents a simple algorithm to detect online the occurrence of a perturbation with short delay. Simulations with a complex biped model yield no false positives when walking stably, and provide detection of trips with an average delay of 30.2 ms, comparable to short latency reflexes in humans.

Keywords

RobotComputer sciencePerturbation (astronomy)Latency (audio)Biped robotLimit cycleControl theory (sociology)False positive paradoxContext (archaeology)Simulation

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