To increase presence in virtual reality environments requires a meticulous imitation of human behavior in virtual agents. In the specific case of collision avoidance, agents’ interaction will feel more natural if they are able to both display and respond to non-verbal cues. This study informs their behavior by analyzing participants’ reaction to nonverbal cues. Its aim is to confirm previous work that shows head orientation to be a primary factor in collision avoidance negotiation, and to extend this to investigate the additional contribution of eye gaze direction as a cue. Fifteen participants were directed to walk towards an oncoming agent in a virtual hallway, who would exhibit various combinations of head orientation and eye gaze direction based cues. Closely prior to the potential collision the display turned black and the participant had to move in avoidance of the agent as if she were still present. Meanwhile, their own eye gaze was tracked to identify where their focus was directed and how it related to their response. Results show that the natural tendency was to avoid the agent by moving right. However, participants showed a greater compulsion to move leftward if the agent cued her own movement to the participant’s right, whether through head orientation cues (consistent with previous work) or through eye gaze direction cues (extending previous work). The implications of these findings are discussed.
[1]
Norman I. Badler,et al.
Virtual Crowds: Methods, Simulation, and Control
,
2008,
Virtual Crowds: Methods, Simulation, and Control.
[2]
J. Hietanen,et al.
I'll Walk This Way: Eyes Reveal the Direction of Locomotion and Make Passersby Look and Go the Other Way
,
2009,
Psychological science.
[3]
W. Warren,et al.
Do walkers follow their heads? Investigating the role of head rotation in locomotor control
,
2012,
Experimental Brain Research.
[4]
Michiteru Kitazaki,et al.
Collision Avoidance Affected by Walker's Head Direction in a Virtual Environment
,
2013,
HCI.
[5]
Chris Mills,et al.
Perceptual-motor behaviour during a simulated pedestrian crossing.
,
2016,
Gait & posture.
[6]
Andrea Bönsch,et al.
Collision avoidance in the presence of a virtual agent in small-scale virtual environments
,
2016,
2016 IEEE Symposium on 3D User Interfaces (3DUI).
[7]
Victoria Interrante,et al.
Evaluating collision avoidance effects on discomfort in virtual environments
,
2017,
2017 IEEE Virtual Humans and Crowds for Immersive Environments (VHCIE).