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Optimal Resource Allocation for Full-Duplex Wireless Video Transmissions under Delay Constraints

机译:延迟约束下全双工无线视频传输的最佳资源分配

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In this paper, wireless video transmission over full-duplex channels is studied. In order to provide the desired performance levels to the end-users in real-time video transmissions, quality of service (QoS) requirements such as statistical delay constraints are also considered. Effective capacity (EC) is used as the throughput metric in the presence of such statistical delay constraints since deterministic delay bounds are difficult to guarantee due to the time-varying nature of wireless fading channels. A communication scenario with a pair of users and multiple subchannels in which users can have different delay requirements is addressed. Following characterizations from the rate-distortion (R-D) theory, a logarithmic model of the quality-rate relation is used for predicting the quality of the reconstructed video in terms of the peak signal-to-noise ratio (PSNR) at the receiver side. Since the optimization problem is not concave or convex, the optimal power allocation policy that maximizes the weighted sum video quality subject to total transmission power constraint is derived by using monotonic optimization (MO) theory. The optimal scheme is compared with two suboptimal strategies.
机译:本文研究了全双工信道上的无线视频传输。为了在实时视频传输中向终端用户提供所需的性能水平,还考虑了服务质量(QoS)要求,例如统计延迟约束。在存在此类统计延迟约束的情况下,将有效容量(EC)用作吞吐量指标,因为由于无线衰落信道的时变特性,难以保证确定性延迟范围。解决了具有一对用户和多个子信道的通信场景,其中用户可以具有不同的延迟要求。根据速率失真(R-D)理论的表征,质量-速率关系的对数模型用于根据接收器端的峰值信噪比(PSNR)预测重构视频的质量。由于优化问题不是凸凹的,因此使用单调优化(MO)理论得出了使总加权视频质量受总传输功率约束最大的最优功率分配策略。将最优方案与两个次优策略进行比较。

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