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Context-aware adaptation of mobile video decoding resolution

2022/02/20 by Octavian Machidon, Jani Asprov, Machidon, Octavian +5
Computer Science · Engineering · Social Sciences · #FOS: Computer and information sciences #Green IT and Sustainability #Human-Computer Interaction (cs.HC) #Image and Video Quality Assessment #Multimedia (cs.MM) #Multimedia Communication and Technology

paper · pdf · doi:10.48550/arxiv.2202.09772

openalex publication_date 2022/02/20 · openalex created_date 2025/10/10 · openalex updated_date 2026/07/28

Abstract

While the evolution of mobile computing is experiencing a considerable growth, it is at the same time seriously threatened by the limitations of the battery technology, which does not keep pace with the evergrowing increase in energy requirements of mobile applications. A novel approach for reducing the energy appetite of mobile apps comes from the approximate computing field, which proposes techniques that in a controlled manner sacrifice computation accuracy for higher energy savings. Building on this philosophy we propose a context-aware mobile video quality adaptation that reduces the energy needed for video playback, while ensuring that a user's quality expectations with respect to the mobile video are met. We confirm that the decoding resolution can play a significant role in reducing the overall power consumption of a mobile device and conduct two user studies to investigate how the context in which a video is played, its content, and the user's personality, modulate a user's quality expectations. We discover that a user's physical activity, the spatial/temporal properties of the video, and the user's personality traits interact and jointly influence the minimal acceptable playback resolution, paving the way for context-adaptable approximate mobile computing.

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