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Data Modeling augmentation of JPEG for real-time streaming video

机译:JPEG对实时流媒体视频的数据建模

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This paper explores sub-sampling in conjunction with JPEG compression algorithms. Rather than directly compressing large high-resolution images, we propose decimation to thumbnails followed by compression. This enables Redundant Array of Independent Disks (RAID) compression and facilitates real-time streaming video with small bandwidth requirements. Image reconstruction occurs on demand at the receiver to any resolution required using Data Modeling based fractal interpolation. The receive side first uncompresses JPEG and then fractal interpolates to any required resolution. This device independent resolution capability is useful for real-time sharing of image data across virtual networks where each node has a different innate resolution capability. The same image is constructed to whatever limitations exist at each individual node, keeping image data device independent and image resolution scalable up or down as hardware/bandwidth limitations and options evolve.
机译:本文探讨了与JPEG压缩算法结合的子采样。我们而不是直接压缩大的高分辨率图像,我们向缩略图提出抽取,然后是压缩。这使得独立磁盘(RAID)压缩冗余阵列能够促进具有小带宽要求的实时流视频。图像重建在接收器到使用基于数据建模的分形插值所需的任何分辨率发生。接收侧首先将JPEG解压缩,然后将分形插入到任何所需的分辨率。该设备独立分辨率能力对于跨虚拟网络的实时共享图像数据是有用的,其中每个节点具有不同的先天分辨率功能。构造相同的图像以在每个单独节点处存在任何限制,使图像数据设备独立和图像分辨率可伸缩或下降,如硬件/带宽限制和选项演变。

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