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Analysis and Optimization of Inter-Tier Interference Coordination in Downlink Multi-Antenna HetNets With Offloading

机译:具有卸载功能的下行多天线HetNet网络层间干扰协调分析与优化

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Heterogeneous networks (HetNets) with offloading is considered as an effective way to meet the high data rate demand of future wireless service. However, offloaded users suffer from strong inter-tier interference, which reduces the benefits of offloading and is one of the main limiting factors of system performance. In this paper, we investigate an interference nulling (IN) scheme in improving system performance by carefully managing the inter-tier interference to the offloaded users in downlink two-tier HetNets with multi-antenna base stations. Utilizing tools from stochastic geometry, we first derive a tractable expression for the rate coverage probability of the IN scheme. Then, by studying its order, we obtain the optimal design parameter, i.e., the degree of freedom that can be used for IN, to maximize the rate coverage probability. Finally, we analyze the rate coverage probabilities of the simple offloading scheme without interference management and the multi-antenna version of the almost blank subframes (ABS) scheme in 3GPP LTE, and compare the performance of the IN scheme with these two schemes. Both analytical and numerical results show that the IN scheme can achieve good performance gains over both of these two schemes, especially in the large antenna regime.
机译:具有卸载功能的异构网络(HetNets)被认为是满足未来无线服务对高数据速率需求的有效方法。但是,卸载的用户会受到强大的层间干扰,这降低了卸载的好处,并且是系统性能的主要限制因素之一。在本文中,我们通过仔细管理具有多天线基站的下行链路两层HetNet中对卸载用户的层间干扰来研究改善系统性能的干扰归零(IN)方案。利用随机几何中的工具,我们首先为IN方案的速率覆盖概率导出一个易于处理的表达式。然后,通过研究其顺序,我们获得最佳设计参数,即可用于IN的自由度,以使速率覆盖概率最大化。最后,我们分析了3GPP LTE中没有干扰管理的简单卸载方案和几乎空白子帧(ABS)方案的多天线版本的速率覆盖概率,并将IN方案的性能与这两种方案进行了比较。分析和数值结果均表明,IN方案相对于这两种方案都可以实现良好的性能增益,尤其是在大型天线方案中。

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