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首页> 外文期刊>IEEE Transactions on Vehicular Technology >Channel-Access-Aware User Association With Interference Coordination in Two-Tier Downlink Cellular Networks
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Channel-Access-Aware User Association With Interference Coordination in Two-Tier Downlink Cellular Networks

机译:两层下行蜂窝网络中具有干扰协调能力的通道访问感知用户关联

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The diverse transmit power levels of base stations (BSs) in a multitier cellular network, on the one hand, lead to an uneven distribution of traffic loads among different BSs when received signal power (RSP)-based user association is used. This causes underutilization of resources at low-power BSs. On the other hand, strong interference from high-power BSs affects downlink transmissions to the users associated with low-power BSs. In this context, this paper proposes a channel-access-aware (CAA) user association scheme that can simultaneously enhance the spectral efficiency (SE) of downlink transmission and achieve traffic load balancing among different BSs. The CAA scheme is a network-assisted user association scheme that requires traffic load information from different BSs, in addition to channel quality indicators. We develop a tractable mathematical model to derive the SE of the network and the SE of downlink transmission to a user who associates with a BS using the proposed CAA scheme considering almost blank subframe (ABS)-based interference coordination at a macro BS. The framework can model and analyze the individual traffic load distributions of different BSs in a two-tier network. The derived expressions provide approximate solutions of reasonable accuracy, compared with the results obtained from Monte Carlo simulations. Numerical results comparatively analyze the gains of the CAA scheme over conventional-RSP-based association and biased-RSP-based association. Based on this, important insights are extracted, which are related to the selection of the proportion of an ABS in various traffic load scenarios.
机译:一方面,当使用基于接收信号功率(RSP)的用户关联时,多层蜂窝网络中基站(BS)的不同发射功率电平会导致不同BS之间的业务负载分布不均。这导致在低功率BS处资源的未充分利用。另一方面,来自高功率BS的强烈干扰影响到与低功率BS相关联的用户的下行链路传输。在这种情况下,本文提出了一种可同时提高下行链路传输的频谱效率(SE)并实现不同BS之间业务负载平衡的信道访问感知(CAA)用户关联方案。 CAA方案是一种网络辅助的用户关联方案,除了信道质量指标外,它还需要来自不同BS的流量负载信息。我们开发了一个易于处理的数学模型,使用拟议的CAA方案,考虑到宏BS处基于几乎空白子帧(ABS)的干扰协调,可以得出网络的SE和与BS关联的用户的下行链路传输的SE。该框架可以对两层网络中不同BS的单个业务负载分布进行建模和分析。与从蒙特卡洛模拟获得的结果相比,得出的表达式提供了合理精度的近似解决方案。数值结果比较分析了CAA方案在基于常规RSP的关联和基于偏向RSP的关联上的收益。基于此,提取出重要的见解,这些见解与在各种流量负载情况下选择ABS的比例有关。

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