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全景图像作为运动相机视频的感知质量评估。

Perceptual Quality Assessment of Omnidirectional Images as Moving Camera Videos.

出版信息

IEEE Trans Vis Comput Graph. 2022 Aug;28(8):3022-3034. doi: 10.1109/TVCG.2021.3050888. Epub 2022 Jun 30.

Abstract

Omnidirectional images (also referred to as static 360 panoramas) impose viewing conditions much different from those of regular 2D images. How do humans perceive image distortions in immersive virtual reality (VR) environments is an important problem which receives less attention. We argue that, apart from the distorted panorama itself, two types of VR viewing conditions are crucial in determining the viewing behaviors of users and the perceived quality of the panorama: the starting point and the exploration time. We first carry out a psychophysical experiment to investigate the interplay among the VR viewing conditions, the user viewing behaviors, and the perceived quality of 360 images. Then, we provide a thorough analysis of the collected human data, leading to several interesting findings. Moreover, we propose a computational framework for objective quality assessment of 360 images, embodying viewing conditions and behaviors in a delightful way. Specifically, we first transform an omnidirectional image to several video representations using different user viewing behaviors under different viewing conditions. We then leverage advanced 2D full-reference video quality models to compute the perceived quality. We construct a set of specific quality measures within the proposed framework, and demonstrate their promises on three VR quality databases.

摘要

全景图像(也称为静态 360 度全景图)带来的观看条件与常规 2D 图像有很大的不同。人类如何感知沉浸式虚拟现实 (VR) 环境中的图像失真,这是一个受到较少关注的重要问题。我们认为,除了失真的全景图本身外,两种 VR 观看条件对于确定用户的观看行为和全景图的感知质量至关重要:起始点和探索时间。我们首先进行了一项心理物理实验,以研究 VR 观看条件、用户观看行为和 360 度图像感知质量之间的相互作用。然后,我们对收集到的人类数据进行了深入分析,得出了一些有趣的发现。此外,我们提出了一个用于 360 度图像客观质量评估的计算框架,以愉快的方式体现观看条件和行为。具体来说,我们首先使用不同的观看条件和不同的用户观看行为,将全景图像转换为几个视频表示。然后,我们利用先进的 2D 全参考视频质量模型来计算感知质量。我们在提出的框架内构建了一组特定的质量度量,并在三个 VR 质量数据库上证明了它们的潜力。

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