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首页> 外文期刊>IEEE Transactions on Vehicular Technology >Optimal Downlink and Uplink Fractional Frequency Reuse in Cellular Wireless Networks
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Optimal Downlink and Uplink Fractional Frequency Reuse in Cellular Wireless Networks

机译:蜂窝无线网络中的最佳下行链路和上行链路小数频率复用

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摘要

Densely deployed cellular wireless networks, which employ small cell technology, are being widely implemented. Mitigating the impact of inter- and intracell signal interferences induced by the operations of these networks is a challenging yet essential task. In this paper, we consider adaptive rate scheduling for a transmitting node, regardless of whether it is a base station (BS) or a mobile user. We aim to maximize the system's throughput through the employment of fractional frequency reuse (FFR) schemes. Each BS employs either an omnidirectional or a directional antenna system. We derive the optimal configuration of the FFR scheme and evaluate the ensuing system's performance behavior under absolute and proportional fairness requirements. To maximize the attained throughput by mobiles, we determine the best method to use to classify cell users into interior and edge mobiles. The bandwidth levels allocated for serving interior and edge mobiles are optimized. We derive approximate closed-form mathematical expressions for calculating the probability distributions of the interference signal levels measured at the destined receivers. We account for the impact of the classification process on intercell interference power levels. Under an absolute fairness requirement, we show that optimally configured FFR schemes lead to much enhanced performance. We show that the optimally configured directional-FFR schemes increase the throughput capacity by a factor of about 60% relative to that obtained by using optimal omnidirectional-FFR schemes. The analyses and simulation results presented in this paper serve to characterize the performance behavior attainable by using such small cell deployed cellular wireless network systems when employing the underlying configurations.
机译:使用小型小区技术的密集部署的蜂窝无线网络正在被广泛实施。减轻由这些网络的操作引起的小区间和小区间信号干扰的影响是一项具有挑战性但必不可少的任务。在本文中,我们考虑针对传输节点的自适应速率调度,无论它是基站(BS)还是移动用户。我们的目标是通过采用分数频率复用(FFR)方案来最大化系统的吞吐量。每个BS采用全向或定向天线系统。我们推导了FFR方案的最佳配置,并评估了在绝对和比例公平性要求下的后续系统的性能行为。为了最大程度地提高手机的吞吐量,我们确定了用于将手机用户分类为内部和边缘手机的最佳方法。优化了为内部和边缘移动设备服务的带宽级别。我们推导近似的封闭形式的数学表达式,以计算在目的地接收机处测得的干扰信号电平的概率分布。我们考虑了分类过程对小区间干扰功率电平的影响。在绝对公平性要求下,我们证明了最佳配置的FFR方案可以大大提高性能。我们表明,相对于使用最佳全向FFR方案所获得的吞吐量而言,最佳配置的定向FFR方案使吞吐量提高了约60%。本文中提出的分析和仿真结果可用来表征在采用基础配置时通过使用此类部署了小型小区的蜂窝无线网络系统可获得的性能行为。

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