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Saliency in objective video quality assessment: What is the ground truth?

机译:客观视频质量评估的显着性:实地真相是什么?

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Finding ways to be able to objectively and reliably assess video quality as would be perceived by humans has become a pressing concern in the multimedia community. To enhance the performance of video quality metrics (VQMs), a research trend is to incorporate visual saliency aspects. Existing approaches have focused on utilizing a computational saliency model to improve a VQM. Since saliency models still remain limited in predicting where people look in videos, the benefits of inclusion of saliency in VQMs may heavily depend on the accuracy of the saliency model used. To gain an insight into the actual added value of saliency in VQMs, ground truth saliency obtained from eye-tracking instead of computational saliency is an essential prerequisite. However, collecting eye-tracking data within the context of video quality is confronted with a bias due to the involvement of massive stimulus repetition. In this paper, we introduce a new experimental methodology to alleviate such potential bias and consequently, to be able to deliver reliable intended data. We recorded eye movements from 160 human observers while they freely viewed 160 video stimuli distorted with different distortion types at various degradation levels. We analyse the extent to which ground truth saliency as well as computational saliency actually benefit existing state of the art VQMs. Our dataset opens new challenges for saliency modelling in video quality research and helps better gauge progress in developing saliency-based VQMs.
机译:要想办法能够客观,可靠地评估视频质量会被人类感知已经成为多媒体社区一个紧迫的问题。为了提高视频质量指标(VQMs)的性能,研究趋势是将视觉显着性的方面。现有的方法集中在利用计算显着性模型来提高VQM。由于显着的模型仍停留在预测人们在看视频的限制,包括显着的在VQMs的好处可能在很大程度上取决于所使用的显着性模型的准确性。要深入了解在VQMs显着的实际附加值,从获得的地面实况显着眼球追踪,而不是计算的显着性是一个重要的先决条件。然而,视频质量的范围内收集眼睛跟踪数据面临的偏置由于大规模的刺激重复的参与。在本文中,我们引入了新的实验方法来减轻这种潜在的偏见,因此,能够提供可靠的预期的数据。我们从160点人的观察员记录眼球运动,而他们自由地观看与不同类型的失真在不同降解水平失真160个视频刺激。我们分析到地面实况显着性以及计算显着受益居然艺术VQMs的存在状态的程度。我们的数据打开了视频质量研究的显着性建模新的挑战,并帮助开发基于显着性,VQMs更好地测量进展。

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