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首页> 外文期刊>IEEE transactions on wireless communications >Minimum-Energy Power and Rate Control for Fair Scheduling in the Cellular Downlink under Flow Level Delay Constraint
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Minimum-Energy Power and Rate Control for Fair Scheduling in the Cellular Downlink under Flow Level Delay Constraint

机译:流量水平延迟约束下蜂窝下行链路公平调度的最小能量功率和速率控制

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摘要

In this paper, we study the energy-delay trade-off in the downlink of a proportional-fair cellular system with inter-cell interference and fading, while incorporating the efficiency characteristics of realistic amplifiers(PA). We study the potential for energy saving by lowering the transmission power level at different user locations in a cell at the cost of additional flow level delay. We identify the transmission power levels at different locations so that the energy consumption at the base station is minimized and the flow level delay is controlled. We formulate the energy minimization problem in a game theoretic framework and prove the convergence of the best response iteration algorithm. The energy saving potential is found to depend on the network load and the efficiency characteristics of the PAs. There is a significant potential for energy saving when the network operates under low to medium loads and efficient PAs are utilized. For example, with envelope tracking PA, around 90% of energy can be saved by introducing small additional flow level delay when the network load is less than 75%. Motivated by the fact that the network load keeps varying throughout the day, we take a daily traffic model and demonstrate the potential for energy saving by this scheme.
机译:在本文中,我们研究了具有小区间干扰和衰落的比例公平蜂窝系统下行链路中的能量延迟权衡,同时结合了实际放大器(PA)的效率特性。我们研究了通过降低小区中不同用户位置的发射功率水平(以增加流量水平延迟为代价)来节省能源的潜力。我们确定了不同位置的发射功率水平,从而使基站的能耗最小化,并控制了流量水平延迟。我们在博弈论的框架内制定了能量最小化问题,并证明了最佳响应迭代算法的收敛性。发现节能潜力取决于网络负载和功率放大器的效率特性。当网络在中低负载下运行并利用有效的PA时,存在巨大的节能潜力。例如,使用包络跟踪PA,当网络负载小于75%时,通过引入小的附加流量水平延迟可以节省大约90%的能量。由于网络负载全天都在变化,因此我们采用了每日流量模型,并演示了此方案可能节省的能源。

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