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Performance analysis of coordination strategies in two-tier Heterogeneous Networks

机译:两层异构网络中协调策略的性能分析

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Large scale multi-tier Heterogeneous Networks (HetNets) are expected to ensure a consistent quality of service (QoS) in 5G systems. Such networks consist of a macro base station (BS) equipped with a large number of antennas and a dense overlay of small cells. The small cells could be deployed within the same coverage of the macro-cell BS, thereby causing high levels of inter-cell interference. In this regard, coordinated beamforming techniques are considered as a viable solution to counteract the arising interference. The goal of this work is to analyze the efficiency of coordinated beamforming techniques in mitigating both intra-cell and inter-cell interference. In particular, we consider the downlink of a Time-division duplexing (TDD) massive multiple-input-multiple-output (MIMO) tier-HetNet and analyze different beamforming schemes together with different degrees of coordination between the BSs. We exploit random matrix theory tools in order to provide, in explicit form, deterministic equivalents for the average achievable rates in the macro-cell and the micro-cells. We prove that our theoretical derivations allow us to draw some conclusions regarding the role played by coordination strategies in reducing the inter-cell interference. These findings are finally validated by a selection of some numerical results.
机译:大型多层异构网络(HetNet)有望确保5G系统中一致的服务质量(QoS)。这样的网络由配备有大量天线和小小区密集覆盖的宏基站(BS)组成。小小区可能被部署在宏小区BS的相同覆盖范围内,从而引起高水平的小区间干扰。在这方面,协调波束成形技术被认为是抵消所产生干扰的可行解决方案。这项工作的目的是分析协作波束形成技术在缓解小区间内和小区间干扰方面的效率。特别地,我们考虑时分双工(TDD)大规模多输入多输出(MIMO)层-HetNet的下行链路,并分析不同的波束形成方案以及基站之间的不同协调度。我们利用随机矩阵理论工具,以显式形式提供宏单元和微单元中平均可实现速率的确定性等价物。我们证明了我们的理论推论使我们能够得出关于协调策略在减少小区间干扰方面所起的作用的一些结论。这些发现最终通过选择一些数值结果得到验证。

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