Title :
Design of a device for the high-fidelity haptic rendering of rotatory car doors
Author :
Strolz, Michael ; Ehinger, Claudia ; Buss, Martin
Author_Institution :
Dept. of Electr. Eng. & Inf. Technol., Tech. Univ. Munchen, Munich
Abstract :
To enable a realistic virtual prototyping of both actuated and unactuated rotatory car doors, a dedicated haptic device is developed. A fundamental issue is the derivation of the specific requirements for this interface, which is done based on knowledge of the typical user interaction with a car door and a comprehensive model of the dynamics of an actuated as well as an unactuated car door. The findings are that the device should only exhibit one rotatory degree-of-freedom, which should be actuated by a direct drive with a high torque output (ges 100 Nm) and very high position resolution (ges 16 Bit). A suitable direct-drive is selected and combined with other elements to form a backlash-free, very stiff haptic device. Due to both force and acceleration sensing, it can serve for the haptic rendering of actuated as well as unactuated car doors. Furthermore, a thorough safety scheme ensures a safe operation of the human-system-interaction.
Keywords :
automobile industry; haptic interfaces; man-machine systems; rendering (computer graphics); virtual prototyping; actuated rotatory car doors; automotive industry; haptic device; high-fidelity haptic rendering; human-system-interaction; realistic virtual prototyping; unactuated rotatory car doors; user interaction; Acceleration; Actuators; Displays; Haptic interfaces; Prototypes; Rendering (computer graphics); Torque; Vehicle dynamics; Virtual prototyping; Virtual reality; actuated mechanisms; car door; direct drive; haptic device; haptic rendering; robotics; virtual prototyping;
Conference_Titel :
Human System Interactions, 2009. HSI '09. 2nd Conference on
Conference_Location :
Catania
Print_ISBN :
978-1-4244-3959-1
Electronic_ISBN :
978-1-4244-3960-7
DOI :
10.1109/HSI.2009.5090979