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Uplink Interference Analysis for Two-Tier Cellular Networks With Diverse Users Under Random Spatial Patterns

机译:随机空间模式下具有不同用户的两层蜂窝网络的上行干扰分析

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摘要

Multi-tier architecture improves the spatial reuse of radio spectrum in cellular networks, but it introduces complicated heterogeneity in the spatial distribution of transmitters, which brings new challenges in interference analysis. In this work, we present a stochastic geometric model for evaluating the uplink interference in a two-tier network considering multi-type users and base stations. Each type of tier-1 users and tier-2 base stations are modeled as independent homogeneous Poisson point processes, and tier-2 users are modeled as locally non-homogeneous clustered Poisson point processes centered at tier-2 base stations. By applying a superposition-aggregation-superposition approach, we quantify the interference at both tiers. Our model is also able to capture the impact of two types of exclusion regions, where either tier-2 base stations or tier-2 users are restricted to avoid cross-tier interference. As an important application of this analytical model, an intensity planning scenario is investigated, in which we aim to maximize the total income of the network operator with respect to the intensities of tier-2 cells, under constraints on the outage probabilities of tier-1 and tier-2 users. The result of our interference analysis suggests that this maximization can be converted to a standard convex optimization problem. Finally, numerical studies further demonstrate the correctness of our analysis.
机译:多层体系结构改善了蜂窝网络中无线电频谱的空间复用性,但是它在发射机的空间分布中引入了复杂的异构性,这给干扰分析带来了新的挑战。在这项工作中,我们提出了一种随机几何模型,用于评估考虑多类型用户和基站的两层网络中的上行链路干扰。每种类型的第1层用户和第2层基站都被建模为独立的同质Poisson点过程,而第2层用户则被建模为以第2层基站为中心的本地非均匀集群式Poisson点过程。通过应用叠加-聚合-叠加方法,我们可以量化两层的干扰。我们的模型还能够捕获两种类型的排除区域的影响,其中限制了第2层基站或第2层用户以避免跨层干扰。作为此分析模型的重要应用,研究了一个强度计划方案,在该方案中,我们旨在在限制第1层中断概率的情况下,最大化网络运营商相对于第2层小区强度的总收入和2级用户。我们的干扰分析结果表明,该最大化可以转换为标准凸优化问题。最后,数值研究进一步证明了我们分析的正确性。

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