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首页> 外文期刊>IEEE Journal on Selected Areas in Communications >Rate control for robust video transmission over burst-error wireless channels
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Rate control for robust video transmission over burst-error wireless channels

机译:速率控制,用于通过突发错误无线信道进行可靠的视频传输

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We study the problem of rate control for transmission of video over burst-error wireless channels, i.e., channels such that errors tend to occur in clusters during fading periods. In particular we consider a scenario consisting of packet based transmission with automatic repeat request (ARQ) error control and a back channel. We start by showing how the delay constraints in real time video transmission can be translated into rate constraints at the encoder, where the applicable rate constraints at a given time depend on future channel rates. With the acknowledgments received through the back channel we have an estimate of the current channel state. This information, combined with an a priori model of the channel, allows us to statistically model the future channel rates. Thus the rate constraints at the encoder can be expressed in terms of the expected channel behavior. We can then formalize a rate distortion optimization problem, namely, that of assigning quantizers to each of the video blocks stored in the encoder buffer such that the quality of the received video is maximized. This requires that the rate constraints be included in the optimization, since violating a rate constraint is equivalent to violating a delay constraint and thus results in losing a video block. We formalize two possible approaches. The first one seeks to minimize the distortion for the expected rate constraints given the channel model and current observation. The second approach seeks to allocate bits so as to minimize the expected distortion for the given model. We use both dynamic programming and Lagrangian optimization approaches to solve these problems. Our simulation results demonstrate that both the video distortion at the decoder and packet loss rate can be significantly reduced when incorporating the channel information provided by the feedback channel and the a priori model into the rate control algorithm.
机译:我们研究了在突发错误无线信道(即信道)上进行视频传输的速率控制问题,该信道使得在衰落期间群集中容易出现错误。特别地,我们考虑一种场景,该场景包括具有自动重传请求(ARQ)错误控制和反向信道的基于分组的传输。我们从显示实时视频传输的延迟约束如何在编码器处转换为速率约束开始,其中给定时间的适用速率约束取决于未来的信道速率。通过反向信道收到的确认,我们可以估计当前信道状态。该信息与通道的先验模型相结合,使我们能够对未来的通道速率进行统计建模。因此,可以根据预期的信道行为来表达编码器处的速率约束。然后,我们可以形式化速率失真优化问题,即为存储在编码器缓冲区中的每个视频块分配量化器,以使接收到的视频的质量最大化。这要求将速率约束包括在优化中,因为违反速率约束等同于违反延迟约束,从而导致丢失视频块。我们确定了两种可能的方法。第一种方法是在给定信道模型和当前观察的情况下,针对预期的速率限制,试图将失真最小化。第二种方法试图分配位,以便最小化给定模型的预期失真。我们同时使用动态规划和拉格朗日优化方法来解决这些问题。我们的仿真结果表明,将反馈信道和先验模型提供的信道信息合并到速率控制算法中时,可以显着减少解码器的视频失真和丢包率。

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