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Open AccessJournal ArticleDOI

Modeling Heterogeneous Network Interference Using Poisson Point Processes

TLDR
This paper proposes to analyze downlink performance in a fixed-size cell, which is inscribed within a weighted Voronoi cell in a Poisson field of interferers, using recent applications of stochastic geometry to analyze cellular systems.
Abstract
Cellular systems are becoming more heterogeneous with the introduction of low power nodes including femtocells, relays, and distributed antennas. Unfortunately, the resulting interference environment is also becoming more complicated, making evaluation of different communication strategies challenging in both analysis and simulation. Leveraging recent applications of stochastic geometry to analyze cellular systems, this paper proposes to analyze downlink performance in a fixed-size cell, which is inscribed within a weighted Voronoi cell in a Poisson field of interferers. A nearest out-of-cell interferer, out-of-cell interferers outside a guard region, and cross-tier interferers are included in the interference calculations. Bounding the interference power as a function of distance from the cell center, the total interference is characterized through its Laplace transform. An equivalent marked process is proposed for the out-of-cell interference under additional assumptions. To facilitate simplified calculations, the interference distribution is approximated using the Gamma distribution with second order moment matching. The Gamma approximation simplifies calculation of the success probability and average rate, incorporates small-scale and large-scale fading, and works with co-tier and cross-tier interference. Simulations show that the proposed model provides a flexible way to characterize outage probability and rate as a function of the distance to the cell edge.

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Citations
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Journal ArticleDOI

DF Relaying Networks With Randomly Distributed Interferers

TL;DR: A decode-and-forward (DF) relaying network with random interferers, in which the source transmits its message to the destination with the help of relay selection based on received signal-to-interference ratio, is studied.
Journal ArticleDOI

Cell-Edge-Aware Precoding for Downlink Massive MIMO Cellular Networks

TL;DR: This result identifies CEA-ZF as a more effective precoding scheme for massive multiple-input multiple-output (MIMO) cellular networks.
Posted Content

Analysis of Blockage Effects on Urban Cellular Networks

TL;DR: The distribution of the number of blockages in a link is proven to be a Poisson random variable with parameter dependent on the length of the link, and the results show that the base station density should scale superlinearly with the blockage density to maintain the network connectivity.
Journal ArticleDOI

Spectral and Energy Efficiency Trade-offs in Cellular Networks

TL;DR: This paper presents a simple and effective method to study the spectral and energy efficiency (SE-EE) trade-off in cellular networks, an issue that has attracted significant recent interest in the wireless community.
Journal ArticleDOI

Modeling and Analysis of Wireless Power Transfer in Heterogeneous Cellular Networks

TL;DR: This paper model and analyze the downlink (DL) wireless power transfer and uplink (UL) information transmission of K-tier heterogeneous cellular networks with randomly located base stations (BSs) and mobile terminals (MTs), and shows that the UL outage probability per MT first decreases and then increases with increasing the time allocation factor.
References
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Reference BookDOI

Asymptotics and Special Functions

TL;DR: A classic reference, intended for graduate students mathematicians, physicists, and engineers, this book can be used both as the basis for instructional courses and as a reference tool as discussed by the authors, and it can be found in many libraries.
Book

Stochastic Geometry and Its Applications

TL;DR: Random Closed Sets I--The Boolean Model. Random Closed Sets II--The General Case.
Journal ArticleDOI

A Tractable Approach to Coverage and Rate in Cellular Networks

TL;DR: The proposed model is pessimistic (a lower bound on coverage) whereas the grid model is optimistic, and that both are about equally accurate, and the proposed model may better capture the increasingly opportunistic and dense placement of base stations in future networks.
Journal ArticleDOI

Femtocell networks: a survey

TL;DR: The technical and business arguments for femtocells are overview and the state of the art on each front is described and the technical challenges facing femtocell networks are described and some preliminary ideas for how to overcome them are given.
Book ChapterDOI

The m-Distribution—A General Formula of Intensity Distribution of Rapid Fading

TL;DR: In this article, the authors summarized the principal results of a series of statistical studies in the last seven years on the intensity distributions due to rapid fading, and presented an extremely simplified method for estimating the improvement available from various systems of diversity reception.
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