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Performance of Overlaid MIMO Cellular Networks with TAS/MRC Under Hybrid-Access Small Cells and Poisson Field Interference

机译:Hybrid-Access小细胞下的TAS / MRC具有覆盖MIMO蜂窝网络的性能和泊松场干扰

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This paper presents new approaches to characterize the achieved performance of hybrid control-access small cells in the context of two-tier multi-input multi-output (MIMO) cellular networks with random interference distributions. The hybrid scheme at small cells (such as femtocells) allows for sharing radio resources between the two network tiers according to the densities of small cells and their associated users, as well as the observed interference power levels in the two network tiers. The analysis considers MIMO transceivers at all nodes, for which antenna arrays can be utilized to implement transmit antenna selection (TAS) and receive maximal ratio combining (MRC) under MIMO point-to-point channels. Moreover, it targets network-level models of interference sources inside each tier and between the two tiers, which are assumed to follow Poisson field processes. To fully capture the occasions for Poisson field distribution on MIMO spatial domain. Two practical scenarios of interference sources are addressed including highly-correlated or uncorrelated transmit antenna arrays of the serving macrocell base station. The analysis presents new analytical approaches that can characterize the downlink outage probability performance in any tier. Furthermore, the outage performance in high signal-to-noise (SNR) regime is also obtained, which can be useful to deduce diversity and/or coding gains.
机译:本文介绍了在具有随机干扰分布的双层多输入多输出(MIMO)蜂窝网络的上下文中实现了混合控制访问小型电池的实现的新方法。小小区(例如毫微微小区)的混合方案允许根据小小区的密度和其相关的用户的密度来共享两个网络层之间的无线电资源,以及两个网络层中的观察到的干扰功率电平。该分析考虑了所有节点的MIMO收发器,其用于在MIMO点对点信道下实现天线阵列的天线阵列来实现发射天线选择(TAS)并接收组合(MRC)的最大比率。此外,它针对每个层内部的干扰源的网络级模型以及两个层之间的干扰源,假设假设泊松场过程。完全捕捉MIMO空间域上的泊松场分布的场合。解决了两种实际的干扰源的场景,包括服务宏小区基站的高度相关或不相关的发射天线阵列。该分析提出了新的分析方法,可以在任何一层中表征下行链路中断概率性能。此外,还获得了高信噪比(SNR)制度中的停电性能,这可能是推测多样性和/或编码增益的有用。

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