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Real-time low-bitrate multimedia communication for smart spaces and wireless sensor networks

机译:用于智能空间和无线传感器网络的实时低比特率多媒体通信

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摘要

Smart spaces is a scenario that is ideal for the application of wireless communication technology to benefit non-expert users. A prime example of such an application would be low-cost and real-time video surveillance of hallways or video conferencing. Traditional solutions for these scenarios use state-of-the-art video codecs like H.264/AVC in order to achieve the low bitrate which is essential in wireless communication. On the flip side, such encoders are computationally complex and need expensive hardware to run on thus making them inefficient choices for being deployed in clusters. Recent research has resulted in distributed video coding (DVC) being proposed as a solution for applications that have limited battery resources and low hardware complexity, thus necessitating a low-complexity encoder. It is now a popular topic in the research community and the past years have seen several implementations. However, current DVC solutions use iteratively decodable channel codes like low-density parity check - accumulate (LDPCA) codes or Turbo codes that have large latencies. In order to make real-time communication possible, the proposed architecture makes efficient use of skip blocks to reduce the bitrate, eliminates the iterative decoding nature of the Wyner-Ziv (WZ) channel and uses a simple data-hidingbased compression algorithm. This drastically cuts down on the time complexity of the decoding procedure while still maintaining a rate??distortion performance better than that of H.264/AVC intra-coding and other current DVC solutions.
机译:智能空间是一种非常适合应用无线通信技术以使非专家用户受益的场景。此类应用的主要示例是走廊或视频会议的低成本实时视频监控。针对这些情况的传统解决方案使用最新的视频编解码器(例如H.264 / AVC)来实现低比特率,这是无线通信中必不可少的。在另一方面,这种编码器在计算上很复杂,并且需要昂贵的硬件来运行,因此使它们成为部署在集群中的低效率选择。最近的研究导致提出了分布式视频编码(DVC)作为电池资源有限和硬件复杂度较低的应用的解决方案,因此需要一种低复杂度的编码器。现在,它已成为研究界的热门话题,并且在过去的几年中已经实现了几种实现方式。但是,当前的DVC解决方案使用可迭代解码的通道代码,例如低密度奇偶校验-累积(LDPCA)代码或具有较大延迟的Turbo代码。为了使实时通信成为可能,所提出的体系结构有效利用了跳过块来降低比特率,消除了Wyner-Ziv(WZ)信道的迭代解码特性,并使用了一种基于数据隐藏的简单压缩算法。这大大降低了解码过程的时间复杂度,同时仍保持比H.264 / AVC帧内编码和其他当前DVC解决方案更好的速率失真性能。

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  • 来源
    《Communications, IET》 |2011年第17期|p.2482-2490|共9页
  • 作者

    Vijayanagar K.R.; Kim J.;

  • 作者单位

    Department of Electrical and Computer Engineering, Illinois Institute of Technology;

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  • 正文语种 eng
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