Blind Image Quality Assessment Using Semi-supervised Rectifier Networks

Huixuan Tang, Neel Joshi, Ashish Kapoor
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引用次数: 106

Abstract

It is often desirable to evaluate images quality with a perceptually relevant measure that does not require a reference image. Recent approaches to this problem use human provided quality scores with machine learning to learn a measure. The biggest hurdles to these efforts are: 1) the difficulty of generalizing across diverse types of distortions and 2) collecting the enormity of human scored training data that is needed to learn the measure. We present a new blind image quality measure that addresses these difficulties by learning a robust, nonlinear kernel regression function using a rectifier neural network. The method is pre-trained with unlabeled data and fine-tuned with labeled data. It generalizes across a large set of images and distortion types without the need for a large amount of labeled data. We evaluate our approach on two benchmark datasets and show that it not only outperforms the current state of the art in blind image quality estimation, but also outperforms the state of the art in non-blind measures. Furthermore, we show that our semi-supervised approach is robust to using varying amounts of labeled data.
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基于半监督整流网络的盲图像质量评估
通常需要用不需要参考图像的感知相关度量来评估图像质量。最近解决这个问题的方法是使用人类提供的质量分数和机器学习来学习测量。这些努力的最大障碍是:1)难以在不同类型的扭曲中进行概括;2)收集学习测量所需的大量人类得分训练数据。我们提出了一种新的盲图像质量测量方法,通过使用整流神经网络学习鲁棒非线性核回归函数来解决这些困难。该方法使用未标记数据进行预训练,并使用标记数据进行微调。它泛化了大量的图像和失真类型,而不需要大量的标记数据。我们在两个基准数据集上评估了我们的方法,并表明它不仅在盲图像质量估计方面优于目前的技术水平,而且在非盲测量方面也优于目前的技术水平。此外,我们表明我们的半监督方法对于使用不同数量的标记数据具有鲁棒性。
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