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Transmission power and playout control for packetized audio streaming over wireless links

机译:无线链路上打包音频流的传输功率和播放控制

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We investigate joint transmission power control and playout buffer control for packetized audio streaming over wireless links. We propose a novel model formulation to capture the interactions and tradeoffs between transmission power, playout freezing and jitter caused by the buffer underflow and re-buffering. The optimal joint control policy is obtained using a dynamic programming approach to optimally balance the average power consumption against quality of service (QoS). The latter is measured by the duration of playout freezes, frequency and inter-occurrence time of the playout jitters. We also investigate two special cases where only one of the two controls is available. We obtain the optimal policies and explore their structural properties. Based on those, we also design a low-complexity heuristic. Through simulation we see that the proposed scheme improves the QoS by 50% to 80% when compared with standard benchmarks under the fixed power constraints.
机译:我们调查了通过无线链路进行分组音频流的联合传输功率控制和播放缓冲区控制。我们提出了一种新颖的模型配方,以捕获由缓冲底流和重新缓冲引起的传输功率,播出冻结和抖动之间的相互作用和权衡。使用动态编程方法获得最佳的联合控制策略,以最佳地平衡用于服务质量(QoS)的平均功耗。后者通过播出冻结冻结,频率和发生时间的持续时间来衡量。我们还调查了两个特殊情况,其中只有两个控件中的一个可用。我们获得最佳政策并探索其结构性。基于这些,我们还设计了一个低复杂性启发式。通过模拟,我们认为,与固定功率约束下的标准基准相比,该方案将QoS提高50%至80%。

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