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Hierarchical Interference Alignment for Downlink Heterogeneous Networks

机译:下行异构网络的分层干扰对齐

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This paper focuses on interference issues arising in the downlink of a heterogeneous network (HetNet), where small cells are deployed within a macrocell. Interference scenario in a HetNet varies based on the type of small cell access modes, which can be classified as either closed subscriber group (CSG) or open subscriber group (OSG) modes. For these two types of modes, we propose hierarchical interference alignment (HIA) schemes, which successively determine beamforming matrices for small cell and macro base stations (BSs) by considering a HetNet environment in which the macro BS and small cell BSs have different numbers of transmit antennas. Unlike prior work on interference alignment (IA) for homogeneous networks, the proposed HIA schemes compute the beamforming matrices in closed-form and reduce the feedforward overhead through a hierarchical approach. By providing a tight outer bound of the degrees-of-freedom (DoF), we also investigate the optimality of the proposed HIA schemes with respect to the number of antennas without any time expansion. Furthermore, we propose a new optimization process to maximize the sum-rate performance of each cell while satisfying the IA conditions. The simulation results show that the proposed HIA schemes provide an additional DoF compared to the conventional interference coordination schemes using a time domain-based resource partitioning. Under multi-cell interference environments, the proposed schemes offer an approximately 100% improvement in throughput gain compared to the conventional coordinated beamforming schemes when the interference from coordinated BSs is significantly stronger than the remaining interference from uncoordinated BSs.
机译:本文关注于异构网络(HetNet)的下行链路中出现的干扰问题,在异构网络中,宏小区中部署了小型小区。 HetNet中的干扰方案会根据小小区访问模式的类型而有所不同,小小区访问模式可以分为封闭用户组(CSG)或开放用户组(OSG)模式。对于这两种类型的模式,我们提出了分级干扰对齐(HIA)方案,该方案通过考虑其中宏BS和小型小区BS具有不同数量的HetNet环境,连续确定小型小区和宏基站(BS)的波束成形矩阵。发射天线。与先前针对同类网络进行干扰对准(IA)的工作不同,所提出的HIA方案以封闭形式计算波束成形矩阵,并通过分层方法减少前馈开销。通过提供自由度(DoF)的紧密外部界限,我们还研究了所提出的HIA方案相对于天线数量的最优性,而没有任何时间扩展。此外,我们提出了一种新的优化过程,以在满足IA条件的同时最大化每个单元的求和速率性能。仿真结果表明,与使用基于时域的资源划分的传统干扰协调方案相比,提出的HIA方案提供了额外的DoF。在多小区干扰环境下,当来自协调BS的干扰明显强于来自未协调BS的其余干扰时,与传统的协调波束形成方案相比,所提出的方案在吞吐量增益方面提供了大约100%的改善。

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