TY - GEN
T1 - AuxiScope
T2 - 24th IEEE International Symposium on Mixed and Augmented Reality, ISMAR 2025
AU - Castellana, Matthew S.
AU - Kalsi, Chahat
AU - Kim, Yoonsang
AU - Boorboor, Saeed
AU - Kaufman, Arie E.
N1 - Publisher Copyright:
© 2025 IEEE.
PY - 2025
Y1 - 2025
N2 - We present AuxiScope, a novel AR-based system designed to enhance personalized data exploration on large wall displays (LWDs) by integrating handheld tablets as auxiliary visualization interfaces. While LWDs offer expanded visual real estate and intuitive embodied interaction, they pose challenges related to effective interfaces for data exploration and analysis, specifically in multi-user settings. AuxiScope addresses these by overlaying supplementary visualizations onto corresponding LWD content, enabling individualized exploration without interference with the visual data displayed on the LWD. To achieve this, we have designed a geometric alignment pipeline that synchronizes the auxiliary visualizations atop the virtual scene. Specifically, by leveraging AR technology, AuxiScope resolves the tablet physical localization, viewpoint computation, and user interaction translation into the virtual space. Subsequently, based on a client-server architecture, it employs remote rendering and delegates computational tasks to the LWD compute nodes in order to minimize memory load on portable devices. We demonstrate the potential of AuxiScope through multiple AR-based interaction techniques across information and scientific visualization scenarios, for both 2D and 3D contexts.
AB - We present AuxiScope, a novel AR-based system designed to enhance personalized data exploration on large wall displays (LWDs) by integrating handheld tablets as auxiliary visualization interfaces. While LWDs offer expanded visual real estate and intuitive embodied interaction, they pose challenges related to effective interfaces for data exploration and analysis, specifically in multi-user settings. AuxiScope addresses these by overlaying supplementary visualizations onto corresponding LWD content, enabling individualized exploration without interference with the visual data displayed on the LWD. To achieve this, we have designed a geometric alignment pipeline that synchronizes the auxiliary visualizations atop the virtual scene. Specifically, by leveraging AR technology, AuxiScope resolves the tablet physical localization, viewpoint computation, and user interaction translation into the virtual space. Subsequently, based on a client-server architecture, it employs remote rendering and delegates computational tasks to the LWD compute nodes in order to minimize memory load on portable devices. We demonstrate the potential of AuxiScope through multiple AR-based interaction techniques across information and scientific visualization scenarios, for both 2D and 3D contexts.
KW - Augmented Reality
KW - Handheld
KW - Immersive Visualization
KW - Large Wall Display
KW - Multi-user
KW - Tablet
UR - https://www.scopus.com/pages/publications/105025010410
U2 - 10.1109/ISMAR67309.2025.00169
DO - 10.1109/ISMAR67309.2025.00169
M3 - Conference contribution
AN - SCOPUS:105025010410
T3 - Proceedings - 2025 IEEE International Symposium on Mixed and Augmented Reality, ISMAR 2025
SP - 1660
EP - 1670
BT - Proceedings - 2025 IEEE International Symposium on Mixed and Augmented Reality, ISMAR 2025
A2 - Eck, Ulrich
A2 - Lee, Gun
A2 - Plopski, Alexander
A2 - Smith, Missie
A2 - Sun, Qi
A2 - Tatzgern, Markus
PB - Institute of Electrical and Electronics Engineers Inc.
Y2 - 8 October 2025 through 12 October 2025
ER -