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Energy-efficient PCF operation of IEEE 802.11a WLANs via transmit power control

机译:通过发射功率控制实现IEEE 802.11a WLAN的节能PCF操作

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Transmit power control (TPC) has been recognized as one of the effective ways to save energy in wireless devices. In this paper, we demonstrate the energy-efficient point coordination function (PCF) operation of IEEE 802.11a wireless local-area networks (WLANs) via TPC and physical layer (PHY) rate adaptation. The basic idea is that the best transmit power level as well as the proper PHY rate are adaptively selected by a wireless station to transmit an uplink data frame, according to the up-to-date path loss condition between itself and the point coordinator, thus delivering data with minimum energy consumption. Evaluation results show that significant energy savings can be achieved by combining TPC with adaptive PHY rate selection. Note that a key requirement for a wireless station to realize the proposed energy-efficient PCF operation is the knowledge of the path loss, and we present a simple, novel, and effective path loss estimation scheme for this purpose. The results and conclusions presented in this paper should serve as a valuable guidance or reference for the design of future 5 GHz 802.11 WLAN systems.
机译:发射功率控制(TPC)已被认为是在无线设备中节省能源的有效方法之一。在本文中,我们通过TPC和物理层(PHY)速率自适应演示了IEEE 802.11a无线局域网(WLAN)的节能点协调功能(PCF)操作。基本思想是,无线站根据自身与点协调器之间的最新路径损耗条件,自适应地选择最佳发射功率电平以及适当的PHY速率,以发射上行链路数据帧。以最低的能耗提供数据。评估结果表明,通过将TPC与自适应PHY速率选择相结合,可以节省大量能源。注意,无线站要实现所提出的节能PCF操作的关键要求是对路径损耗的了解,为此,我们提出了一种简单,新颖,有效的路径损耗估计方案。本文介绍的结果和结论应为未来5 GHz 802.11 WLAN系统的设计提供有价值的指导或参考。

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