Metadata-Based Quality-Estimation Model for Tile-Based Omnidirectional Video Streaming

IF 0.7 4区 计算机科学 Q3 Engineering
Yuichiro Urata, Masanori Koike, Kazuhisa Yamagishi, Noritsugu Egi
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引用次数: 0

Abstract

SUMMARY In this paper, a metadata-based quality-estimation model is proposed for tile-based omnidirectional video streaming services, aiming to realize quality monitoring during service provision. In the tile-based omnidirectional video (ODV) streaming services, the ODV is divided into tiles, and the high-quality tiles and the low-quality tiles are distributed in accordance with the user’s viewing direction. When the user changes the viewing direction, the user temporarily watches video with the low-quality tiles. In addition, the longer the time (delay time) until the high-quality tile for the new viewing direction is downloaded, the longer the viewing time of video with the low-quality tile, and thus the delay time affects quality. From the above, the video quality of the low-quality tiles and the delay time significantly impact quality, and these factors need to be considered in the quality-estimation model. We develop quality-estimation models by extending the conventional quality-estimation models for 2D adaptive streaming. We also show that the quality-estimation model using the bitrate, resolution, and frame rate of high- and low-quality tiles and that the delay time has sufficient estimation accuracy based on the results of subjective quality evaluation experiments.
基于元数据的全向视频流质量估计模型
本文提出了一种基于元数据的全向视频流服务质量估计模型,旨在实现服务提供过程中的质量监控。在基于tile的全向视频流媒体服务中,将ODV划分为tile,并根据用户的观看方向分布优质tile和低质量tile。当用户改变观看方向时,用户会暂时观看质量较低的视频。另外,下载新观看方向的高质量瓦片所需的时间(延迟时间)越长,低质量瓦片视频的观看时间越长,延迟时间影响质量。由此可见,低质量瓦片的视频质量和延迟时间对视频质量影响较大,在质量估计模型中需要考虑这些因素。我们通过扩展传统的二维自适应流的质量估计模型,建立了质量估计模型。基于主观质量评价实验的结果表明,采用高质量和低质量图像的比特率、分辨率和帧率进行质量估计模型,延迟时间具有足够的估计精度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
IEICE Transactions on Communications
IEICE Transactions on Communications ENGINEERING, ELECTRICAL & ELECTRONIC-TELECOMMUNICATIONS
CiteScore
1.50
自引率
28.60%
发文量
101
期刊介绍: The IEICE Transactions on Communications is an all-electronic journal published occasionally by the Institute of Electronics, Information and Communication Engineers (IEICE) and edited by the Communications Society in IEICE. The IEICE Transactions on Communications publishes original, peer-reviewed papers that embrace the entire field of communications, including: - Fundamental Theories for Communications - Energy in Electronics Communications - Transmission Systems and Transmission Equipment for Communications - Optical Fiber for Communications - Fiber-Optic Transmission for Communications - Network System - Network - Internet - Network Management/Operation - Antennas and Propagation - Electromagnetic Compatibility (EMC) - Wireless Communication Technologies - Terrestrial Wireless Communication/Broadcasting Technologies - Satellite Communications - Sensing - Navigation, Guidance and Control Systems - Space Utilization Systems for Communications - Multimedia Systems for Communication
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