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Humanoid batting with bipedal balancing

  • JST-ICORP Computational Brain Project
  • ATR Computational Neuroscience Laboratory
  • NICT

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

6 Scopus citations

Abstract

This paper reports our first attempt to achieve a baseball batting demonstration with a human-sized bipedal humanoid robot, aimed at presenting a performance integrating perception, control and learning. Real-time whole-body motion control and visual perception are integrated to allow the robot to predict the ball position and hit it. The ball was thrown by a human and recognized by the eye cameras. For the prediction, we propose a simple sequential estimator to predict the arrival time and position of the ball. For the control, fast and smooth batting trajectories are superposed on a whole-body force controller taking account of bipedal balancing. Although the prediction and learning model are not fully implemented, this paper demonstrates promising simulation and experimental results with the proposed framework. So far, we have succeeded at the timing prediction and fast swing motion within 300 ms without falling. Experimental and simulation videos are available as supplementary material.

Original languageEnglish
Title of host publication2008 8th IEEE-RAS International Conference on Humanoid Robots, Humanoids 2008
PublisherIEEE Computer Society
Pages493-499
Number of pages7
ISBN (Print)9781424428229
DOIs
StatePublished - 2008
Externally publishedYes
Event8th IEEE-RAS International Conference on Humanoid Robots, Humanoids 2008 - Daejeon, Korea, Republic of
Duration: 1 Dec 20083 Dec 2008

Publication series

Name2008 8th IEEE-RAS International Conference on Humanoid Robots, Humanoids 2008

Conference

Conference8th IEEE-RAS International Conference on Humanoid Robots, Humanoids 2008
Country/TerritoryKorea, Republic of
CityDaejeon
Period1/12/083/12/08

Keywords

  • Baseball
  • Humanoid robots
  • Motor learning
  • Prediction.
  • Visual perception
  • Whole-body motion control

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