TY - GEN
T1 - Design and evaluation of a handheld-based 3D user interface for collaborative object manipulation
AU - Grandi, Jerônimo Gustavo
AU - Debarba, Henrique Galvan
AU - Nedel, Luciana
AU - Maciel, Anderson
N1 - Publisher Copyright:
© 2017 ACM.
PY - 2017/5/2
Y1 - 2017/5/2
N2 - Object manipulation in 3D virtual environments demands a combined coordination of rotations, translations and scales, as well as the camera control to change the user's viewpoint. Then, for many manipulation tasks, it would be advantageous to share the interaction complexity among team members. In this paper we propose a novel 3D manipulation interface based on a collaborative action coordination approach. Our technique explores a smartphone - the touchscreen and inertial sensors - as input interface, enabling several users to collab-oratively manipulate the same virtual object with their own devices. We first assessed our interface design on a docking and an obstacle crossing tasks with teams of two users. Then, we conducted a study with 60 users to understand the influence of group size in collaborative 3D manipulation. We evaluated teams in combinations of one, two, three and four participants. Experimental results show that teamwork increases accuracy when compared with a single user. The accuracy increase is correlated with the number of individuals in the team and their work division strategy.
AB - Object manipulation in 3D virtual environments demands a combined coordination of rotations, translations and scales, as well as the camera control to change the user's viewpoint. Then, for many manipulation tasks, it would be advantageous to share the interaction complexity among team members. In this paper we propose a novel 3D manipulation interface based on a collaborative action coordination approach. Our technique explores a smartphone - the touchscreen and inertial sensors - as input interface, enabling several users to collab-oratively manipulate the same virtual object with their own devices. We first assessed our interface design on a docking and an obstacle crossing tasks with teams of two users. Then, we conducted a study with 60 users to understand the influence of group size in collaborative 3D manipulation. We evaluated teams in combinations of one, two, three and four participants. Experimental results show that teamwork increases accuracy when compared with a single user. The accuracy increase is correlated with the number of individuals in the team and their work division strategy.
KW - 3D user interfaces
KW - Collaborative manipulation
KW - User studies
UR - https://www.scopus.com/pages/publications/85044870236
UR - https://www.scopus.com/pages/publications/85044870236#tab=citedBy
U2 - 10.1145/3025453.3025935
DO - 10.1145/3025453.3025935
M3 - Conference contribution
AN - SCOPUS:85044870236
T3 - Conference on Human Factors in Computing Systems - Proceedings
SP - 5881
EP - 5891
BT - CHI 2017 - Proceedings of the 2017 ACM SIGCHI Conference on Human Factors in Computing Systems
PB - Association for Computing Machinery
T2 - 2017 ACM SIGCHI Conference on Human Factors in Computing Systems, CHI 2017
Y2 - 6 May 2017 through 11 May 2017
ER -