Haptic Wrists: An Alternative Design Strategy Based on User Perception

Author:

Martín Javier1,Savall Joan2,Díaz Iñaki2,Hernantes Josune2,Borro Diego2

Affiliation:

1. Department of Applied Mechanics, Centro de Estudios e Investigaciones Técnicas (CEIT), University of Navarra, Paseo Manuel Lardizábal 15, 20018, San Sebastian, Spain

2. Department of Applied Mechanics, Centro de Estudios e Investigaciones Técnicas (CEIT) and Tecnun, University of Navarra, Paseo Manuel Lardizábal 13, 20018, San Sebastian, Spain

Abstract

A new three degree-of-freedom (3DOF) torque feedback wrist is being developed to be added to an existing 3DOF force feedback haptic device. It is difficult to find a satisfactory solution to the mechanical design problem, mainly because of the required large rotational workspace and severe weight constraints. This work proposes an alternative design strategy based on user perception, which allows simplification of the mechanics. The proposed approach consists of substituting the last rotational DOF of the wrist with a pseudohaptic DOF. Thanks to specially designed visuotactile cues, the pseudohaptic DOF is integrated with the active DOF into the same device, being able to generate free motion and collision detection perception to the user. This approach provides for simpler kinematics, lightweight designs, lower inertias, and less friction, which are key advantages for the inclusion of torque feedback into force feedback devices.

Publisher

ASME International

Subject

Industrial and Manufacturing Engineering,Computer Graphics and Computer-Aided Design,Computer Science Applications,Software

Reference22 articles.

1. Description of a Haptic System for Virtual Maintainability in Aeronautics;Savall

2. A Large Haptic Device for Aircraft Engines Maintainability;Borro;IEEE Comput. Graphics Appl.

3. Mechanisms for Haptic Torque Feedback;Martin

4. Large Workspace Haptic Devices for Human Scale Interaction;Gosselin

5. A Haptic Prototype for the Simulations of Aeronautics Mounting/Unmounting Operations;Lécuyer

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