An interference-aware resource allocation scheme for self-organizing heterogeneous networks

H. Du, Lin Tian, Ling Liu, Zhanwei Hou
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引用次数: 3

Abstract

In heterogeneous networks of low power Pico Base Station (PBS) overlaid with Macro Base Station (MBS), cell range expansion (CRE) which add a positive bias in PBS for cell association is proposed to offload user equipments (UEs) to PBSs. In this way UEs in CRE region that associated to PBS with weak signal power may experience strong cross-tier interference from MBS. To manage this interference, almost blank subframe (ABS) is proposed which not allowed MBS to transmit data in ABS by coordinating MBS and PBS in time domain. In ABS, the number of ABS subframes is subject to constraints on the MBSs for intercell fairness. In addition, it significantly drops throughput of MBS by completely blank on the ABS. To overcome these drawbacks, an interference-aware autonomous resource allocation scheme for Heterogeneous Networks is proposed in this paper. Each PBS independently configure the Interference Aware Subframes (IASFs) based on the requirement of victim UEs in CRE region, while MBSs is not involved. In IASFs, a PBS subchannel and transmit power allocation algorithm is proposed to suppress interference for neighboring BSs and maximum total throughput. It is verified by simulation that the proposed strategy provides significant throughput gain compared with the existing interference avoidance schemes.
一种干扰感知的自组织异构网络资源分配方案
在低功耗微基站(PBS)与宏基站(MBS)叠加的异构网络中,提出了在微基站(PBS)中增加正偏置进行小区关联的小区范围扩展(CRE),将用户设备(ue)分流到微基站(PBSs)上。这样,与弱信号功率的PBS相关联的CRE区域的ue可能会受到来自MBS的强跨层干扰。为了控制这种干扰,提出了一种几乎空白子帧(ABS),通过在时域上协调MBS和PBS,使MBS不能在ABS中传输数据。在ABS中,为了保证小区间的公平性,ABS子帧的数量受到mbs的约束。为了克服这些缺点,本文提出了一种异构网络的干扰感知自主资源分配方案。每个PBS根据CRE区域的受害ue的需求独立配置干扰感知子帧(iasf),而mbs不参与其中。在iasf中,提出了一种PBS子信道和发射功率分配算法,以抑制相邻BSs的干扰和最大总吞吐量。仿真结果表明,与现有的抗干扰方案相比,该策略具有显著的吞吐量增益。
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