IROS 2019poster11 citations

A Robust Biped Locomotion Based on Linear-Quadratic-Gaussian Controller and Divergent Component of Motion

Mohammadreza Kasaei, Nuno Lau, Artur Pereira

Abstract

Generating robust locomotion for a humanoid robot in the presence of disturbances is difficult because of its high number of degrees of freedom and its unstable nature. In this paper, we used the concept of Divergent Component of Motion (DCM) and propose an optimal closed-loop controller based on Linear-Quadratic-Gaussian to generate a robust and stable walking for humanoid robots. The biped robot dynamics has been approximated using the Linear Inverted Pendulum Model (LIPM). Moreover, we propose a controller to adjust the landing location of the swing leg to increase the withstanding level of the robot against a severe external push. The performance and also the robustness of the proposed controller is analyzed and verified by performing a set of simulations using MATLAB. The simulation results showed that the proposed controller is capable of providing a robust walking even in the presence of disturbances and in challenging situations.

BibTeX
@inproceedings{iros2019_arobustbipedloco,
  title = {A Robust Biped Locomotion Based on Linear-Quadratic-Gaussian Controller and Divergent Component of Motion},
  author = {Mohammadreza Kasaei and Nuno Lau and Artur Pereira},
  booktitle = {IROS 2019},
  year = {2019}
}
A Robust Biped Locomotion Based on Linear-Quadratic-Gaussian Controller and Divergent Component of Motion · IROS 2019