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A joint channel-aware and buffer-aware scheduling for energy-efficient transmission over fading channels with long coherent time

机译:一种关节通道感知和缓冲感知调度,用于节能传输在具有长相干时间的衰落通道上

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Joint channel-aware and buffer-aware scheduling along with rate/power adaptation is a promising solution to assure Quality of Service (QoS) and improve energy efficiency. In this paper, an analytical delay-power tradeoff and optimal threshold-based scheduling are proposed. In particular, we are interested in the scheduling policies where the scheduler only needs to decide transmitting or not. More specifically, we shall focus on the slow fading scenario, where channel coherent time is long enough to transmit several data packets. We formulate a linear programming problem where the average delay is minimized given an average power constraint. By deriving the analytical solution to this linear programming, the optimal delay-power tradeoff and the optimal scheduling policy are presented.
机译:联合通道感知和缓冲感知调度以及速率/功率适配是一个有希望的解决方案,以确保服务质量(QoS)并提高能源效率。 在本文中,提出了分析延迟功率权衡和基于最佳的基于阈值的调度。 特别是,我们对调度程序仅需要决定传输的调度策略感兴趣。 更具体地说,我们将专注于慢衰落的场景,其中信道相干时间足够长以传输几个数据包。 我们制定了一个线性编程问题,其中,在平均功率约束,平均延迟最小化。 通过导出该线性编程的分析解决方案,提出了最佳的延迟功率权衡和最佳调度策略。

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