Assistive portable robots design

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Description

Today, health care has become one of the very potential businesses. The world population is becoming old, and many people are highly concerned about their welfare. It is very important to give a thoughtful consideration to the handicapped and the elderly. Nevertheless, the research about helping those people are currently limited to the enhancement of residential or welfare equipment such as the wheelchair, intelligent bed, assistance robot system for the handicapped, etc. Therefore, it is necessary to help the handicapped and the elderly to be a more productive member of the society in addition to being independent of care-givers.
Further, it will help them to live not as burdens to the society but with self-confidence as those who can contribute to the society. 
The main goal of this research area is to design and develop really portable assistive robotic devices able to be transported easily by the user in his daily trip from house to office, providing the assistance in both environments. 
In this way it’s possible to dock the MATS to the wheelchair, and once in the office undock automatically the robot and start to use in the adapted office environment.

Entries:
The Rh-1 full-size humanoid robot: design, walking pattern generation and control
Journal of Applied Bionics and Biomechanics (Print ISSN: 1176-2322, Online: ISSN: 1754-2103). num. 3 , vol. 6 , pages: 301 – 344 , 2009
M. Arbulu D. Kaynov L.M. Cabas

Entries:
Joint Control of a Humanoid Robot
IEEE-RAS International Conference on Humanoid Robots (HUMANOIDS 2007), Pittsburgh, USA
D. Kaynov
Industrial automation based approach to design control system of the humanoid robot
IEEE International Symposium on Industrial Electronics ISIE 2007, Vigo, Spain
D. Kaynov
Advanced motion control system for the humanoid robot Rh-0
8th International Conference on Climbing and Walking Robots (Clawar 2005), London, United Kingdom
M. Arbulu D. Kaynov P. Staroverov
ZMP Human Measure System
8th International Conference on Climbing and Walking Robots (Clawar'2005), London, United Kingdom
M. Arbulu D. Kaynov P. Staroverov

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