Walking biped humanoids that perform manual labour

Author:

Hirukawa Hirohisa1

Affiliation:

1. National Institute of Advanced Industrial Science and TechnologyTsukuba, Ibaraki 305-8568, Japan

Abstract

The Humanoid Robotics Project of the Ministry of Economy, Trade and Industry of Japan realized that biped humanoid robots can perform manual labour. The project developed humanoid robot platforms, consisting of humanoid robot hardware and a package of fundamental software, and explored applications of humanoid robots on them. The applications include maintenance tasks of industrial plants, teleoperation of industrial vehicles, cooperative tasks with a human, guarding the home and office and the care of patients in beds.

Publisher

The Royal Society

Subject

General Physics and Astronomy,General Engineering,General Mathematics

Reference15 articles.

1. Fujiwara K. Kanehiro F. Kajita S. Kaneko K. Yokoi K. & Hirukawa H. 2002 UKEMI: falling motion control to minimize damage to biped humanoid robot. In Proc. of IROS .

2. Inoue H. & Hirukawa H. 2001 Explorations of humanoid robot applications In Proc. 2nd IEEE-RAS Int. Conf. on Humanoid Robots .

3. Inoue H. et al . 2000 HRP: humanoid robotics project of MITI. In Proc. of the 1st IEEE-RAS Int. Conf. on Humanoid Robots .

4. Inoue H. Tachi S. Nakamura Y. Ohyu N. Hirai S. Tanie K. Yokoi K. & Hirukawa H. 2001 Overview of humanoid robotics project of METI. In Proc. of the 32nd ISR .

5. Ishiwata Y. & Matsui T. 1998 Development of Linux which has advanced real-time processing function. In Proc. 16th Annu. Conf. of Robotics Society of Japan pp. 355–356.

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