Title :
Shadow walking: An unencumbered locomotion technique for systems with under-floor projection
Author :
Zielinski, David J. ; McMahan, Ryan P. ; Brady, Rachael B.
Abstract :
When viewed from below, a user´s feet cast shadows onto the floor screen of an under-floor projection system, such as a six-sided CAVE. Tracking those shadows with a camera provides enough information for calculating a user´s ground-plane location, foot orientation, and footstep events. We present Shadow Walking, an unencumbered locomotion technique that uses shadow tracking to sense a user´s walking direction and step speed. Shadow Walking affords virtual locomotion by detecting if a user is walking in place. In addition, Shadow Walking supports a sidestep gesture, similar to the iPhone´s pinch gesture. In this paper, we describe how we implemented Shadow Walking and present a preliminary assessment of our new locomotion technique. We have found Shadow Walking provides advantages of being unencumbered, inexpensive, and easy to implement compared to other walking-in-place approaches. It also has potential for extended gestures and multi-user locomotion.
Keywords :
gesture recognition; virtual reality; floor screen; foot orientation; footstep event; ground plane location; multi user locomotion; shadow tracking; shadow walking; step speed; under floor projection system; unencumbered locomotion technique; user walking direction detection; virtual locomotion; Cameras; Floors; Foot; Legged locomotion; Pixel; Tracking; Virtual environment; Navigation; Shadow Walking; Virtual Reality;
Conference_Titel :
Virtual Reality Conference (VR), 2011 IEEE
Conference_Location :
Singapore
Print_ISBN :
978-1-4577-0039-2
Electronic_ISBN :
1087-8270
DOI :
10.1109/VR.2011.5759456