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Base-station and subcarrier assignment in two-cell OFDMA downlink under QoS fairness

机译:QoS公平下两小区OFDMA下行链路中的基站和子载波分配

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Consider the problem of base-station and sub-carrier assignment on the downlink of a two-cell OFDMA system with adaptive modulation. The aim is to maximize a common data rate that can be offered to each user with a guaranteed maximum rate-outage probability. A target bit-error rate is also guaranteed with a maximum outage probability. The channel model takes into account the propagation path-loss in addition to log-normal shadowing and Rayleigh fading. The channel-state information available about each user corresponds to the shadowed path-loss that we define. We use the well-known frequency-reuse partitioning as an inter-cell interference mitigation technique. We suggest a simple threshold-based method for optimizing the reuse scheme. This method allows us to transform the considered optimization problem into a tractable one that we resolve numerically. Simulation results allows us to validate the proposed method and to compare the average achieved performance to that obtained with static BS-assignment and/or static frequency-reuse scheme.
机译:考虑具有自适应调制的两小区OFDMA系统的下行链路上的基站和子载波分配问题。目的是使可以以最大的最大速率中断概率提供给每个用户的通用数据速率最大化。还以最大中断概率保证目标误码率。信道模型除了对数正态阴影和瑞利衰落外,还考虑了传播路径损耗。有关每个用户的可用信道状态信息对应于我们定义的阴影路径损耗。我们使用众所周知的频率重用分区作为小区间干扰缓解技术。我们建议一种简单的基于阈值的方法来优化重用方案。这种方法使我们能够将考虑到的优化问题转化为易于解决的问题,并通过数值方法解决该问题。仿真结果使我们能够验证所提出的方法,并将平均获得的性能与静态BS分配和/或静态频率复用方案获得的性能进行比较。

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