BiPMAP: A Toolbox for Predictions of Perceived Motion Artifacts on Modern Displays

Fuente: arXiv
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Auteurs principaux: Meng, Guanghan, Galor, Dekel, Waller, Laura, Banks, Martin S.
Format: Preprint
Publié: 2022
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author Meng, Guanghan
Galor, Dekel
Waller, Laura
Banks, Martin S.
author_facet Meng, Guanghan
Galor, Dekel
Waller, Laura
Banks, Martin S.
contents Presenting dynamic scenes without incurring motion artifacts visible to observers requires sustained effort from the display industry. A tool that predicts motion artifacts and simulates artifact elimination through optimizing the display configuration is highly desired to guide the design and manufacture of modern displays. Despite the popular demands, there is no such tool available in the market. In this study, we deliver an interactive toolkit, Binocular Perceived Motion Artifact Predictor (BiPMAP), as an executable file with GPU acceleration. BiPMAP accounts for an extensive collection of user-defined parameters and directly visualizes a variety of motion artifacts by presenting the perceived continuous and sampled moving stimuli side-by-side. For accurate artifact predictions, BiPMAP utilizes a novel model of the human contrast sensitivity function to effectively imitate the frequency modulation of the human visual system. In addition, BiPMAP is capable of deriving various in-plane motion artifacts for 2D displays and depth distortion in 3D stereoscopic displays.
format Preprint
id arxiv_https___arxiv_org_abs_2212_03854
institution arXiv
publishDate 2022
record_format arxiv
spellingShingle BiPMAP: A Toolbox for Predictions of Perceived Motion Artifacts on Modern Displays
Meng, Guanghan
Galor, Dekel
Waller, Laura
Banks, Martin S.
Signal Processing
Human-Computer Interaction
Quantitative Methods
Presenting dynamic scenes without incurring motion artifacts visible to observers requires sustained effort from the display industry. A tool that predicts motion artifacts and simulates artifact elimination through optimizing the display configuration is highly desired to guide the design and manufacture of modern displays. Despite the popular demands, there is no such tool available in the market. In this study, we deliver an interactive toolkit, Binocular Perceived Motion Artifact Predictor (BiPMAP), as an executable file with GPU acceleration. BiPMAP accounts for an extensive collection of user-defined parameters and directly visualizes a variety of motion artifacts by presenting the perceived continuous and sampled moving stimuli side-by-side. For accurate artifact predictions, BiPMAP utilizes a novel model of the human contrast sensitivity function to effectively imitate the frequency modulation of the human visual system. In addition, BiPMAP is capable of deriving various in-plane motion artifacts for 2D displays and depth distortion in 3D stereoscopic displays.
title BiPMAP: A Toolbox for Predictions of Perceived Motion Artifacts on Modern Displays
topic Signal Processing
Human-Computer Interaction
Quantitative Methods
url https://arxiv.org/abs/2212.03854