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      Modeling and Analysis of Cellular Networks Using Stochastic Geometry: A Tutorial

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          A Tractable Approach to Coverage and Rate in Cellular Networks

          , , (2011)
          Cellular networks are usually modeled by placing the base stations on a grid, with mobile users either randomly scattered or placed deterministically. These models have been used extensively but suffer from being both highly idealized and not very tractable, so complex system-level simulations are used to evaluate coverage/outage probability and rate. More tractable models have long been desirable. We develop new general models for the multi-cell signal-to-interference-plus-noise ratio (SINR) using stochastic geometry. Under very general assumptions, the resulting expressions for the downlink SINR CCDF (equivalent to the coverage probability) involve quickly computable integrals, and in some practical special cases can be simplified to common integrals (e.g., the Q-function) or even to simple closed-form expressions. We also derive the mean rate, and then the coverage gain (and mean rate loss) from static frequency reuse. We compare our coverage predictions to the grid model and an actual base station deployment, and observe that the proposed model is pessimistic (a lower bound on coverage) whereas the grid model is optimistic, and that both are about equally accurate. In addition to being more tractable, the proposed model may better capture the increasingly opportunistic and dense placement of base stations in future networks.
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            Stochastic geometry and random graphs for the analysis and design of wireless networks

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              Coverage and Rate Analysis for Millimeter-Wave Cellular Networks

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                Author and article information

                Journal
                IEEE Communications Surveys & Tutorials
                IEEE Commun. Surv. Tutorials
                Institute of Electrical and Electronics Engineers (IEEE)
                1553-877X
                21 2017
                21 2017
                : 19
                : 1
                : 167-203
                Article
                10.1109/COMST.2016.2624939
                f2483773-276b-48eb-9910-837fdae27acb
                © 2017

                http://www.ieee.org/publications_standards/publications/rights/ieeecopyrightform.pdf

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