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Hesham ElSawy

Researcher at King Fahd University of Petroleum and Minerals

Publications -  167
Citations -  5814

Hesham ElSawy is an academic researcher from King Fahd University of Petroleum and Minerals. The author has contributed to research in topics: Cellular network & Telecommunications link. The author has an hindex of 31, co-authored 153 publications receiving 4958 citations. Previous affiliations of Hesham ElSawy include University of Manitoba & King Abdullah University of Science and Technology.

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Stochastic Geometry for Modeling, Analysis, and Design of Multi-Tier and Cognitive Cellular Wireless Networks: A Survey

TL;DR: This article presents a comprehensive survey on the literature related to stochastic geometry models for single-tier as well as multi-tier and cognitive cellular wireless networks, and discusses the open research challenges and future research directions.
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Modeling and Analysis of Cellular Networks Using Stochastic Geometry: A Tutorial

TL;DR: In this article, a tutorial on stochastic geometry-based analysis for cellular networks is presented, which is distinguished by its depth with respect to wireless communication details and its focus on cellular networks.
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Analytical Modeling of Mode Selection and Power Control for Underlay D2D Communication in Cellular Networks

TL;DR: In this paper, the authors present a comprehensive and tractable analytical framework for D2D-enabled uplink cellular networks with a flexible mode selection scheme along with truncated channel inversion power control.
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On Stochastic Geometry Modeling of Cellular Uplink Transmission with Truncated Channel Inversion Power Control

TL;DR: In this article, the authors developed a tractable uplink modeling paradigm for outage probability and spectral efficiency in both single and multi-tier cellular wireless networks, which accounts for per user equipment (UE) power control as well as the maximum power limitations for UEs.
Posted Content

On Stochastic Geometry Modeling of Cellular Uplink Transmission with Truncated Channel Inversion Power Control

TL;DR: Using stochastic geometry, a tractable uplink modeling paradigm for outage probability and spectral efficiency in both single and multi-tier cellular wireless networks is developed and approximate yet accurate simple expressions are obtained, which reduce to closed forms in some special cases.