DocumentCode
3603416
Title
SmartColor: Real-Time Color and Contrast Correction for Optical See-Through Head-Mounted Displays
Author
Hincapie-Ramos, Juan David ; Ivanchuk, Levko ; Sridharan, Srikanth K. ; Irani, Pourang P.
Author_Institution
Univ. of Manitoba, Winnipeg, MB, Canada
Volume
21
Issue
12
fYear
2015
Firstpage
1336
Lastpage
1348
Abstract
Users of optical see-through head-mounted displays (OHMD) perceive color as a blend of the display color and the background. Color-blending is a major usability challenge as it leads to loss of color encodings and poor text legibility. Color correction aims at mitigating color blending by producing an alternative color which, when blended with the background, more closely approximates the color originally intended. In this paper we present an end-to-end approach to the color blending problem addressing the distortions introduced by the transparent material of the display efficiently and in realtime. We also present a user evaluation of correction efficiency. Finally, we present a graphics library called SmartColor showcasing the use of color correction for different types of display content. SmartColor uses color correction to provide three management strategies: correction, contrast, and show-up-on-contrast. Correction determines the alternate color which best preserves the original color. Contrast determines the color which best supports text legibility while preserving as much of the original hue. Show-up-on-contrast makes a component visible when a related component does not have enough contrast to be legible. We describe SmartColor´s architecture and illustrate the color strategies for various types of display content.
Keywords
colour; computer graphics; helmet mounted displays; optical distortion; software libraries; OHMD; SmartColor; color blending problem; distortions; graphics library; optical see-through head-mounted displays; real-time color correction; real-time contrast correction; show-up-on-contrast; transparent display material; Adaptive optics; Color; Image color analysis; Multimedia communication; Optical distortion; Real-time systems; User interfaces; Virtual reality; Information Interfaces and Presentation; Information interfaces and presentation; Multimedia Information Systems; User Interfaces; and virtual realities; augmented; evaluation/methodology; multimedia information systems-artificial; screen design; style guides; user interfaces-ergonomics;
fLanguage
English
Journal_Title
Visualization and Computer Graphics, IEEE Transactions on
Publisher
ieee
ISSN
1077-2626
Type
jour
DOI
10.1109/TVCG.2015.2450745
Filename
7138644
Link To Document