DocumentCode :
2041721
Title :
Estimation of applied force by using human body dynamics model
Author :
Takamori, Kazuhiro ; Miyoshi, Takanori ; Terashima, Kazuhiko
Author_Institution :
Toyohashi Univ. of Technol., Toyohashi, Japan
fYear :
2011
fDate :
13-18 Sept. 2011
Firstpage :
1430
Lastpage :
1435
Abstract :
Recently, many developed countries have begun to experience the problems associated with an aging society. One problem in particular is the growing number of older adults in the labor force who suffer from various physical restrictions. Aiming to develop technology to assist these individuals, our laboratory has proposed a wire suspension-type power assist system that amplifies the force applied by the user. This system can be used even by older adults with insufficient strength for controlling the position and the configuration of heavy objects. The power assist system currently being developed in our laboratory uses a load cell to detect simultaneously both the force applied to the object by the user and the weight of the object. Therefore, the weight of the object is limited due to the signal-to-noise ratio (i.e., the ratio of the applied force to the weight of the object). Thus, we propose a new system that estimates the force applied to the object on the basis of the ground reaction force. This paper presents a model of the force applied by a human hand which is based on the ground reaction force. Then, the validity of the model is verified through simulation and experiment. As a result, it is confirmed that the force applied by a user can be estimated from the ground reaction force.
Keywords :
ergonomics; force control; gait analysis; geriatrics; handicapped aids; suspensions (mechanical components); wires; aging society; applied force estimation; ground reaction force; human body dynamics model; labor force; load cell; older adults; physical restrictions; signal-to-noise ratio; wire suspension-type power assist system; Equations; Estimation; Force measurement; Gravity; Humans; Mathematical model; Grand Reaction Force; Human Body Dynamics Model; Power Assist;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
SICE Annual Conference (SICE), 2011 Proceedings of
Conference_Location :
Tokyo
ISSN :
pending
Print_ISBN :
978-1-4577-0714-8
Type :
conf
Filename :
6060559
Link To Document :
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