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Adaptive rate control scheme for video streaming over wireless channels

机译:无线信道上视频流的自适应速率控制方案

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Providing continuous video playback with graceful quality degradation over wireless channels is fraught with challenges. Video applications require stringent delay guarantees and a relatively high throughput. Wireless channels are error prone, time varying, and bandwidth limited. To improve the reliability of the wireless link, forward error correction (FEC) and automatic repeat request (ARQ) are often used. If designed for the worst channel conditions, FEC can provide constant throughput and bounded delay. However, this causes unnecessary overhead and reduces the maximum achievable throughput when the channel is in good conditions. On the other hand, it is difficult to achieve strict delay guarantees using ARQ schemes alone, especially when the channel is in deep fading. Playback buffer occupancy plays a major role in the target video quality. The retransmission of erroneous packets and the reduction in throughput due to FEC overhead can lead to playback buffer starvation as well as transmitter buffer fullness. Therefore, it is desirable to reduce the bit rate of the transmitted video signal and increase error protection when the channel is anticipated to be bad or the receiver playback buffer starvation is predicted. In this study, we introduce a scalable and adaptive source-channel rate control scheme for video transmission over wireless packet networks. In this scheme, the level of adaptiveness is optimized to reduce the bandwidth requirement while guaranteeing delay and loss bounds. Simulation and numerical investigations are carried out to study the interactions among various key parameters and verify the adequacy of the analysis.
机译:在无线信道上提供连续的视频回放并以适度的质量降级充满了挑战。视频应用需要严格的延迟保证和相对较高的吞吐量。无线通道容易出错,随时间变化且带宽有限。为了提高无线链路的可靠性,经常使用前向纠错(FEC)和自动重发请求(ARQ)。如果设计用于最恶劣的信道条件,则FEC可以提供恒定的吞吐量和有限的延迟。但是,这会导致不必要的开销,并且在信道处于良好状态时会降低最大可达到的吞吐量。另一方面,仅使用ARQ方案很难实现严格的延迟保证,尤其是在信道处于深度衰落时。回放缓冲区占用率在目标视频质量中起着重要作用。错误数据包的重传和由于FEC开销而导致的吞吐量降低可能导致播放缓冲区不足以及发送器缓冲区已满。因此,期望在预期信道变坏或预测接收器回放缓冲器不足时降低所发送的视频信号的比特率并增加差错保护。在这项研究中,我们介绍了一种可伸缩的自适应源信道速率控制方案,用于无线分组网络上的视频传输。在此方案中,优化了自适应级别,以减少带宽需求,同时又保证了延迟和丢失边界。进行了仿真和数值研究,以研究各种关键参数之间的相互作用并验证分析的充分性。

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