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Throughput and fairness of femtocell users in OFDM macrocell-femtocell networks

机译:OFDM宏小区-毫微微小区网络中毫微微小区用户的吞吐量和公平性

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摘要

While femtocell network enhances throughput and coverage, it also introduces cross-tier interference. In the uplink, to protect existing macrocell users (MUs), the interference accumulated at the macrocell base station (MBS) by femtocell users (FUs) should be limited. Due to variable distances between a femtocell base station (FBS) and the MBS, FU associated with the FBS closer to the MBS will impose more interference to the MBS due to smaller path loss. To meet the interference constraint at the MBS, the FU closer to the MBS has a stricter transmission power limit than the FU further away from the MBS. In this situation, fairness issue arises among the FUs. In this paper, we consider an uplink power allocation problem for orthogonal frequency division multiplexing (OFDM) transmissions under the rise-over-thermal constraint at the MBS and evaluate throughput and fairness of the FUs. Our simulation results indicate that the instantaneous channel knowledge between the FUs and the MBS increases throughput and fairness of the FUs compared to the average channel knowledge. In addition, wall loss is beneficial in improving the throughput and fairness as it suppresses interference from FUs to the MBS.
机译:毫微微小区网络提高了吞吐量和覆盖范围,但同时也引入了跨层干扰。在上行链路中,为了保护现有的宏小区用户(MU),应限制毫微微小区用户(FU)在宏小区基站(MBS)上积累的干扰。由于毫微微小区基站(FBS)与MBS之间的距离可变,与FBS相关联的更靠近MBS的FU将由于较小的路径损耗而对MBS施加更大的干扰。为了满足MBS的干扰约束,更靠近MBS的FU具有比远离MBS的FU更严格的发射功率限制。在这种情况下,FU之间会出现公平问题。在本文中,我们考虑了在MBS处在过热约束下的正交频分复用(OFDM)传输的上行链路功率分配问题,并评估了FU的吞吐量和公平性。我们的仿真结果表明,与平均信道知识相比,FU和MBS之间的瞬时信道知识增加了FU的吞吐量和公平性。另外,壁损耗由于抑制了FU对MBS的干扰,因此有利于提高吞吐量和公平性。

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