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Maximizing Energy Efficiency in Multiple Access Channels by Exploiting Packet Dropping and Transmitter Buffering

机译:通过利用丢包和发送器缓冲来最大程度地提高多路访问通道的能效

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摘要

Quality of service (QoS) for a network is characterized in terms of various parameters specifying packet delay and loss tolerance requirements for the application. The unpredictable nature of the wireless channel demands for application of certain mechanisms to meet the QoS requirements. Traditionally, medium access control (MAC) and network layers perform these tasks. However, these mechanisms do not take (fading) channel conditions into account. In this paper, we investigate the problem using cross layer techniques where information flow and joint optimization of higher and physical layer is permitted. We propose a scheduling scheme to optimize the energy consumption of a multiuser multi-access system such that QoS constraints in terms of packet loss are fulfilled while the system is able to maximize the advantages emerging from multiuser diversity. Specifically, this work focuses on modeling and analyzing the effects of packet buffering capabilities of the transmitter on the system energy for a packet loss tolerant application. We discuss low complexity schemes which show comparable performance to the proposed scheme. The numerical evaluation reveals useful insights about the coupling effects of different QoS parameters on the system energy consumption and validates our analytical results.
机译:网络的服务质量(QoS)通过各种参数来表征,这些参数指定了应用程序的数据包延迟和丢失容忍要求。无线信道的不可预测的性质要求应用某些机制来满足QoS要求。传统上,介质访问控制(MAC)和网络层执行这些任务。但是,这些机制没有考虑(衰落)信道条件。在本文中,我们使用跨层技术调查问题,该技术允许信息流以及高层和物理层的联合优化。我们提出了一种调度方案,以优化多用户多址系统的能耗,从而满足丢包方面的QoS约束,同时该系统能够最大程度地发挥多用户分集带来的优势。具体来说,这项工作着重于建模和分析发射机的分组缓冲能力对容忍丢包应用的系统能量的影响。我们讨论了低复杂度方案,该方案显示了与拟议方案相当的性能。数值评估揭示了关于不同QoS参数对系统能耗的耦合效应的有用见解,并验证了我们的分析结果。

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