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首页> 外文期刊>Wireless Communications Letters, IEEE >On Coverage Probability With Type-II HARQ in Large-Scale Uplink Cellular Networks
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On Coverage Probability With Type-II HARQ in Large-Scale Uplink Cellular Networks

机译:大型上行蜂窝网络中II型HARQ的覆盖概率

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This letter studies uplink transmission in large-scale cellular networks with a Type-II hybrid automatic repeat request (HARQ) retransmission scheme, under which an unsuccessful transmission (if occurs) is combined with the corresponding retransmission through maximal-ratio combining (MRC). Based on stochastic geometry analysis, the uplink coverage probabilities are characterized under a generalized power control scheme in the scenarios with quasi-static interference (QSI) and fast-varying interference (FVI), where the same and different interfering users, respectively, are present during the transmission and retransmission phase. Our analytical expressions reveal some scaling properties of the coverage probabilities and can be used to evaluate the diversity gain of MRC (i.e., the ratio of the required signal-to-interference ratio (SIR) for achieving a target coverage probability with MRC to that without MRC). We show that the diversity gain of MRC is more remarkable in the scenario with QSI compared to that with FVI. Moreover, the diversity gain of MRC can be mostly exploited by adopting full channel-inversion power control.
机译:这封信研究了具有II型混合自动重传请求(HARQ)重传方案的大型蜂窝网络中的上行链路传输,在这种方案下,未成功传输(如果发生)与通过最大比率合并(MRC)进行的相应重传组合在一起。基于随机几何分析,在具有准静态干扰(QSI)和快速变化干扰(FVI)的情况下,分别存在相同和不同的干扰用户的情况下,在广义功率控制方案下表征上行链路覆盖概率在传输和重传阶段。我们的分析表达式揭示了覆盖概率的某些缩放特性,可用于评估MRC的分集增益(即,使用MRC达到目标覆盖概率所需的信号干扰比(SIR)的比) MRC)。我们表明,与FVI相比,在QSI情况下,MRC的分集增益更为显着。而且,通过采用全信道反转功率控制,可以最大程度地利用MRC的分集增益。

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