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  4. Fast multi-contact whole-body motion planning with limb dynamics
 
conference paper

Fast multi-contact whole-body motion planning with limb dynamics

Arreguit, Jonathan  
•
Faraji, Salman  
•
Ijspeert, Auke Jan  
January 1, 2018
2018 Ieee-Ras 18Th International Conference On Humanoid Robots (Humanoids)
18th IEEE-RAS International Conference on Humanoid Robots (Humanoids)

We present a new method for multi-contact motion planning which efficiently encodes internal dynamics of the robot without needing to use full models. Our approach is based on a five-mass model which is formulated by Cartesian points instead of joint angles. We solve direct optimization problems which include distance constraints between these points, Newtonian equations and integration constraints. We consider a given rhythm of contact switches but leave the phase-timings and contact positions free inside the optimization to provide more flexibility. Due to simpler equations and sparser problem structures, we can achieve very short optimization times in the order of few hundred milliseconds, which make the method suitable for application of online model predictive control. Aside from contact position and time adjustment properties, we can include precise foothold regions and synthesize dynamic motions by taking internal dynamics and momentums into account.

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Type
conference paper
DOI
10.1109/HUMANOIDS.2018.8624936
Web of Science ID

WOS:000458689700004

Author(s)
Arreguit, Jonathan  
Faraji, Salman  
Ijspeert, Auke Jan  
Date Issued

2018-01-01

Publisher

IEEE

Publisher place

New York

Published in
2018 Ieee-Ras 18Th International Conference On Humanoid Robots (Humanoids)
ISBN of the book

978-1-5386-7283-9

Series title/Series vol.

IEEE-RAS International Conference on Humanoid Robots

Start page

25

End page

32

Subjects

Robotics

•

Robotics

•

trajectory optimization

•

walking

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
BIOROB  
Event nameEvent placeEvent date
18th IEEE-RAS International Conference on Humanoid Robots (Humanoids)

Beijing, PEOPLES R CHINA

Nov 06-09, 2018

Available on Infoscience
June 18, 2019
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/156907
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