DocumentCode
2237129
Title
Task Instruction: the largest Influence on Human Operator Motion Control Dynamics
Author
Abbink, David A.
Author_Institution
Delft Univ. of Technol.
fYear
2007
fDate
22-24 March 2007
Firstpage
206
Lastpage
211
Abstract
The dynamics of the human operator while interacting with a haptic interface are often either neglected or at best modeled as a constant mass-spring-damper model. However, it is well known that humans are able to substantially modify their dynamic behaviour. The goal of this study is to show the extent to which humans can modify their endpoint dynamics while interacting with a haptic manipulator. In an experimental study, the endpoint dynamics of the ankle-foot complex were estimated as an admittance using closed-loop identification techniques. Subjects were perturbed with continuous torque perturbations and required to perform three tasks: to maintain a constant position (position task), to maintain a constant force (force task) and to relax. Results indicate that subjects substantially decrease their admittance during a position task compared to a force task (up to a factor of 40 at frequencies below 0.5 Hz.), indicating they could choose to resist the torque perturbations or not. It is concluded that modeling the human as a constant mass-spring-damper system can lead to substantial errors in the design of haptic systems
Keywords
closed loop systems; haptic interfaces; manipulator dynamics; motion control; torque; ankle-foot complex; closed-loop identification; haptic interface; haptic manipulator; human operator motion control dynamics; mass-spring-damper model; task instruction; torque perturbation; Admittance; Aerodynamics; Frequency; Haptic interfaces; Humans; Manipulator dynamics; Motion control; Muscles; Torque; Virtual environment;
fLanguage
English
Publisher
ieee
Conference_Titel
EuroHaptics Conference, 2007 and Symposium on Haptic Interfaces for Virtual Environment and Teleoperator Systems. World Haptics 2007. Second Joint
Conference_Location
Tsukaba
Print_ISBN
0-7695-2738-8
Type
conf
DOI
10.1109/WHC.2007.108
Filename
4145176
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