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首页> 外文期刊>Circuits and Systems for Video Technology, IEEE Transactions on >Adaptive General Scale Interpolation Based on Weighted Autoregressive Models
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Adaptive General Scale Interpolation Based on Weighted Autoregressive Models

机译:基于加权自回归模型的自适应通用尺度插值

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摘要

The autoregressive (AR) model has been widely used in signal processing for its effective estimation, especially in image processing. Many dedicated interpolation algorithms adopt the AR model to describe the strong correlation between low-resolution (LR) pixels and high-resolution (HR) pixels. However, these AR model-based methods closely depend on the fixed relative position between LR pixels and HR pixels that are nonexistent in the general scale interpolation. In this paper, we present an adaptive general scale interpolation algorithm that is capable of arbitrary scaling factors considering the nonstationarity of natural images. Different from other dedicated interpolation methods, the proposed AR terms are modeled by pixels with their adjacent unknown HR neighbors. To compensate for the information loss caused by mismatches of AR models, we consider a weighting scheme suitable for general scale situations based on the pixel similarity to increase accuracy of the estimation. Comprehensive experiments demonstrate the effectiveness of the proposed method on general scaling factors. The maximum gain of peak signal-to-noise ratio is 2.07 dB compared with segment adaptive gradient angle in enlargements. To evaluate the performance in resolution adaptive video coding, we have also tested our method on Joint Scalable Video Model codec and obtained better subjective quality and rate-distortion performance.
机译:自回归(AR)模型因其有效的估计而被广泛用于信号处理中,尤其是在图像处理中。许多专用插值算法都采用AR模型来描述低分辨率(LR)像素和高分辨率(HR)像素之间的强相关性。但是,这些基于AR模型的方法紧密取决于一般比例插值中不存在的LR像素和HR像素之间的固定相对位置。在本文中,我们提出了一种自适应的通用尺度插值算法,该算法能够考虑自然图像的非平稳性而具有任意缩放因子。与其他专用插值方法不同,建议的AR项由具有相邻未知HR邻居的像素建模。为了补偿AR模型不匹配导致的信息丢失,我们考虑了一种基于像素相似度的加权方案,适用于一般规模的情况,以提高估计的准确性。综合实验证明了该方法对一般比例因子的有效性。与扩大时的分段自适应梯度角相比,峰值信噪比的最大增益为2.07 dB。为了评估分辨率自适应视频编码中的性能,我们还在联合可伸缩视频模型编解码器上测试了我们的方法,并获得了更好的主观质量和速率失真性能。

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