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首页> 外文期刊>Journal of VLSI signal processing systems >Interactive Content-aware Video Streaming System with Fine Granularity Scalability
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Interactive Content-aware Video Streaming System with Fine Granularity Scalability

机译:具有细粒度可扩展性的交互式内容感知视频流系统

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摘要

Video streaming with varying transmission bandwidth is becoming increasingly important. In this paper, an interactive video streaming system is proposed. Fine Granularity Scalability (FGS) is applied to be the streaming video format. The computational complexity of FGS coding is analyzed to explore an efficient FGS implementation. A new transmission model is proposed for the realization of a content-aware video streaming. At encoder side, the current MPEG-4 FGS coding flow is reordered such that the picture-level maximum can be acquired in advance and bit-plane data can be dynamically adapted. With these proposed hardware-oriented optimization approaches, a hardwired FGS block-level processing core is proposed to achieve a cost-effective solution to FGS implementation. The streaming server can adaptively decide quality-enhanced region by selective enhancement according to both object information from encoding side and user-defined region from receiver side. From the simulation results, it's demonstrated that the proposed approach can provide better quality in users' interest regions with no bit-rate or complexity overhead.
机译:具有变化的传输带宽的视频流变得越来越重要。本文提出了一种交互式视频流系统。精细粒度可伸缩性(FGS)被应用为流视频格式。分析了FGS编码的计算复杂度,以探索有效的FGS实现。提出了一种新的传输模型,用于实现内容感知视频流。在编码器端,对当前的MPEG-4 FGS编码流进行重新排序,以便可以预先获取图片级别的最大值,并且可以动态调整位平面数据。利用这些建议的面向硬件的优化方法,提出了一种硬连接的FGS块级处理核心,以实现FGS实现的经济有效的解决方案。流服务器可以根据来自编码侧的对象信息和来自接收侧的用户定义区域两者,通过选择性增强来自适应地确定质量增强区域。从仿真结果可以证明,该方法可以在用户感兴趣的区域提供更好的质量,而没有比特率或复杂性开销。

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