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Coverage Analysis of Reduced Power Subframes Applied in Heterogeneous Networks With Subframe Misalignment Interference

机译:具有子帧错位干扰的异构网络中降低功率子帧的覆盖范围分析

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In heterogeneous networks (HetNets), to reduce the interference to users in cell range expansion (CRE) areas of small cells, reduced power subframes (RPSs) are used by macro base stations (BSs) to serve their center region users. CRE users can receive full power subframes (FPSs) from small-cell BSs in the same time slots as RPSs. However, it is difficult to maintain strict subframe alignment (SA) between neighboring cells. Subframe misalignment (SM) between RPSs and FPSs transmitted by neighboring macro BSs and small-cell BSs may degrade the coverage performance for macrocell center and small-cell CRE users. With existing time synchronization techniques used in HetNets, the SM offsets are actually upper-bounded. In this letter, we propose a novel SM model for a two-tier HetNet adopting RPSs with SM offsets restricted within a subframe duration, and analyze the coverage probability under the effects of RPSs and SM based on stochastic geometry. The results show that the strict SA requirement can be relaxed by up to 20% of subframe duration with below 5% coverage loss.
机译:在异构网络(HetNet)中,为了减少小型小区的小区范围扩展(CRE)区域对用户的干扰,宏基站(BS)使用降低功率的子帧(RPS)为他们的中心区域用户提供服务。 CRE用户可以在与RPS相同的时隙中从小小区BS接收全功率子帧(FPS)。然而,难以在相邻小区之间维持严格的子帧对准(SA)。相邻宏BS和小小区BS传输的RPS和FPS之间的子帧未对齐(SM)可能会降低宏小区中心和小小区CRE用户的覆盖性能。利用HetNets中使用的现有时间同步技术,SM偏移实际上是上限。在这封信中,我们为两层HetNet提出了一种新颖的SM模型,该模型采用具有在子帧持续时间内限制SM偏移的RPS,并基于随机几何分析了RPS和SM的影响下的覆盖概率。结果表明,严格的SA要求可以放宽20%的子帧持续时间,而覆盖损耗低于5%。

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