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A Reactive Walking Pattern Generator Based on Nonlinear Model Predictive Control

Maximilien Naveau, Manuel Kudruss, Olivier Stasse, Christian Kirches, Katja Mombaur, Philippe Souères

发表年份
2016
引用次数
97

摘要

The contribution of this work is to show that real-time nonlinear model predictive control (NMPC) can be implemented on position controlled humanoid robots. Following the idea of “walking without thinking,” we propose a walking pattern generator that takes into account simultaneously the position and orientation of the feet. A requirement for an application in real-world scenarios is the avoidance of obstacles. Therefore, this letter shows an extension of the pattern generator that directly considers the avoidance of convex obstacles. The algorithm uses the whole-body dynamics to correct the center of mass trajectory of the underlying simplified model. The pattern generator runs in real-time on the embedded hardware of the humanoid robot HRP2 and experiments demonstrate the increase in performance with the correction.

关键词

Humanoid robotDigital pattern generatorGenerator (circuit theory)Model predictive controlComputer sciencePosition (finance)TrajectoryControl theory (sociology)Nonlinear modelNonlinear system

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