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Fast JND-Based Video Carving With GPU Acceleration for Real-Time Video Retargeting

机译:基于JND的快速视频雕刻和GPU加速,可实现实时视频重定向

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摘要

A recently developed image resizing technique, seam carving, has been proved to be a useful tool for content-adaptive spatially nonuniform image resizing with the purpose of optimal display on a screen of reduced resolution or different aspect ratio. In this paper, we present a fast algorithm for real-time content-aware video retargeting based on the improved seam carving method proposed in this paper. The proposed algorithm is designed to be highly parallelizable and suitable for running on a multicore architecture. First, two novel operators, i.e., seam update and seam split, are introduced to analyze an image for detecting the local and global seams with minimum costs very efficiently. With these operators, parallel processing can be achieved to determine multiple seams simultaneously. In addition, the saliency measure is extended with a just-noticeable-distortion model which makes the resized video more consistent with human perception. We demonstrate the efficiency of the above new components with a graphics processing unit (GPU) implementation. In addition, the proposed fast seam carving algorithm is extended for video retargeting. To the best of our knowledge, this is the first paper based on the seam carving method to achieve real-time video retargeting on a GPU. Experimental results on video sequences of various characteristics are demonstrated to show the superior performance of the proposed algorithm in comparison with the existing content-adaptive image/video resizing methods.
机译:事实证明,最近开发的图像尺寸调整技术(接缝雕刻)是一种有用的工具,可用于内容自适应的空间不均匀图像尺寸调整,目的是在分辨率降低或纵横比不同的屏幕上进行最佳显示。在本文中,我们提出了一种基于本文提出的改进的接缝雕刻方法的实时内容感知视频重定位的快速算法。所提出的算法被设计为高度可并行化的,并且适合在多核体系结构上运行。首先,引入了两个新颖的运算符,即接缝更新和接缝分割,以分析图像以非常有效地以最小的成本检测局部和全局接缝。使用这些运算符,可以实现并行处理以同时确定多个接缝。此外,显着性度量标准还采用了一个可察觉的失真模型,该模型使调整大小后的视频更加符合人类的感知。我们通过图形处理单元(GPU)的实施演示了上述新组件的效率。另外,所提出的快速接缝雕刻算法被扩展用于视频重定向。据我们所知,这是第一篇基于接缝雕刻方法的论文,可在GPU上实现实时视频重定向。实验表明,针对各种特征的视频序列,与现有的内容自适应图像/视频大小调整方法相比,该算法具有更好的性能。

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