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Handoff Rate and Coverage Analysis in Multi-Tier Heterogeneous Networks

机译:多层异构网络中的切换率和覆盖率分析

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This paper analyzes the impact of user mobility in multi-tier heterogeneous networks. We begin by obtaining the handoff rate for a mobile user in an irregular cellular network with the access point locations modeled as a homogeneous Poisson point process. The received signal-to-interference-ratio (SIR) distribution along with a chosen SIR threshold is then used to obtain the probability of coverage. To capture potential connection failures due to mobility, we assume that a fraction of handoffs result in such failures. Considering a multi-tier network with orthogonal spectrum allocation among tiers and the maximum biased average received power as the tier association metric, we derive the probability of coverage for two cases: 1) the user is stationary (i.e., handoffs do not occur, or the system is not sensitive to handoffs); 2) the user is mobile, and the system is sensitive to handoffs. We derive the optimal bias factors to maximize the coverage. We show that when the user is mobile, and the network is sensitive to handoffs, both the optimum tier association and the probability of coverage depend on the user's speed; a speed-dependent bias factor can then adjust the tier association to effectively improve the coverage, and hence system performance, in a fully-loaded network.
机译:本文分析了多层异构网络中用户移动性的影响。我们从获取不规则蜂窝网络中移动用户的切换速率开始,将接入点位置建模为同类泊松点过程。然后,将接收到的信号干扰比(SIR)分布以及选择的SIR阈值用于获得覆盖的概率。为了捕获由于移动性引起的潜在连接失败,我们假设一部分切换会导致此类失败。考虑一个在各层之间具有正交频谱分配并且最大偏置平均接收功率作为层关联度量的多层网络,我们得出两种情况下的覆盖概率:1)用户是固定的(即,不发生越区切换,或者系统对切换不敏感); 2)用户是移动的,并且系统对越区切换敏感。我们得出最佳的偏见因子以最大化覆盖范围。我们表明,当用户处于移动状态且网络对切换敏感时,最佳层关联和覆盖概率均取决于用户的速度。然后,取决于速度的偏差因子可以调整层关联,以有效地改善满负荷网络中的覆盖范围,从而改善系统性能。

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