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Video transcoder architectures for networked multimedia applications.

机译:用于网络多媒体应用程序的视频代码转换器体系结构。

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For the deployment of multimedia services over heterogeneous networks, it is very desirable that a video delivery system be able to dynamically adapt the bit-rate of a video bit-stream to the time-varying network conditions, such as the available bandwidth. A video transcoder which can adapt the bit-rate of a video bit-stream and support various content. manipulations, error-resilience, and video watermarking insertion will improve the overall performance of multimedia systems.; In this dissertation, we investigate various issues regarding transcoder architectures for networked multimedia applications. We first investigate existing fast architectures and analyze potential problems and limitations. We show that due to inherent but often ignored assumptions in the derivation, the existing fast architectures have severe limitations in practical applications. We also propose a fast transcoder scheme which does not have the limitations and problems of the existing fast transcoder architectures and can achieve drift-free performance with similar processing speed as the existing fast transcoders. In the proposed architecture, drift-error is prevented by adopting a pixel-domain cascaded structure. To reduce the computational cost in transcoding, several stages of computational blocks, such as Discrete Cosine Transform (DCT), Inverse DCT (IDCT), quantization, and inverse quantization are optimized.; We also extend the transcoding function to applications. of a logo insertion. We consider the case when transcoding is necessary in the logo insertion process to reduce the bit-rate.; As many multimedia services are deployed in the Internet environment, the video delivery system requires a more intelligent and sophisticated bit-rate adaptation scheme with a high transcoding ratio because of the wide range of operating bandwidths of the current Internet infrastructure. Down-conversions of frame-rates or picture resolutions can be effectively used for achieving a high transcoding ratio while maintaining an acceptable video quality. For this temporal and resolution transcoding, we propose a fast-motion vector refinement scheme to obtain the outgoing motion vectors from the motion vectors extracted from the incoming bit-stream. Simulation results show that significant computational saving is possible while achieving almost the same video quality compared with that of using full-scale motion estimation.
机译:为了在异构网络上部署多媒体服务,非常希望视频传送系统能够动态地使视频比特流的比特率适应时变网络条件,例如可用带宽。一种视频转码器,可以适应视频比特流的比特率并支持各种内容。操作,容错能力和视频水印插入将改善多媒体系统的整体性能。在本文中,我们研究了有关网络多媒体应用的代码转换器体系结构的各种问题。我们首先研究现有的快速架构,并分析潜在的问题和局限性。我们表明,由于推导中固有的但经常被忽略的假设,现有的快速架构在实际应用中存在严重的局限性。我们还提出了一种快速代码转换器方案,该方案不存在现有快速代码转换器架构的限制和问题,并且可以以与现有快速代码转换器相似的处理速度来实现无漂移性能。在所提出的架构中,通过采用像素域级联结构来防止漂移误差。为了减少转码中的计算成本,优化了多个阶段的计算块,例如离散余弦变换(DCT),逆DCT(IDCT),量化和逆量化。我们还将代码转换功能扩展到应用程序。徽标插入。我们考虑在徽标插入过程中需要进行代码转换以降低比特率的情况。由于在Internet环境中部署了许多多媒体服务,因此,由于当前Internet基础结构的工作带宽范围很广,因此视频传输系统需要一种具有高转码率的更智能,更复杂的比特率自适应方案。在保持可接受的视频质量的同时,可以有效地使用帧速率或图片分辨率的下转换来实现高代码转换率。对于这种时间和分辨率代码转换,我们提出了一种快速运动矢量细化方案,以从从传入位流中提取的运动矢量中获得传出运动矢量。仿真结果表明,与使用全尺寸运动估计相比,在实现几乎相同的视频质量的同时,可以节省大量计算时间。

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