Stochastic Geometry And Wireless Networks Applications


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Stochastic Geometry for Wireless Networks


Stochastic Geometry for Wireless Networks

Author: Martin Haenggi

language: en

Publisher: Cambridge University Press

Release Date: 2013


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Analyse wireless network performance and improve design choices for future architectures and protocols with this rigorous introduction to stochastic geometry.

Stochastic Geometry and Wireless Networks: Applications


Stochastic Geometry and Wireless Networks: Applications

Author: François Baccelli

language: en

Publisher: Now Publishers Inc

Release Date: 2010-02


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This volume bears on wireless network modeling and performance analysis. The aim is to show how stochastic geometry can be used in a more or less systematic way to analyze the phenomena that arise in this context. It first focuses on medium access control mechanisms used in ad hoc networks and in cellular networks. It then discusses the use of stochastic geometry for the quantitative analysis of routing algorithms in mobile ad hoc networks. The appendix also contains a concise summary of wireless communication principles and of the network architectures considered in the two volumes.

Stochastic Geometry Analysis of Cellular Networks


Stochastic Geometry Analysis of Cellular Networks

Author: Bartłomiej Błaszczyszyn

language: en

Publisher: Cambridge University Press

Release Date: 2018-04-19


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Achieve faster and more efficient network design and optimization with this comprehensive guide. Some of the most prominent researchers in the field explain the very latest analytic techniques and results from stochastic geometry for modelling the signal-to-interference-plus-noise ratio (SINR) distribution in heterogeneous cellular networks. This book will help readers to understand the effects of combining different system deployment parameters on key performance indicators such as coverage and capacity, enabling the efficient allocation of simulation resources. In addition to covering results for network models based on the Poisson point process, this book presents recent results for when non-Poisson base station configurations appear Poisson, due to random propagation effects such as fading and shadowing, as well as non-Poisson models for base station configurations, with a focus on determinantal point processes and tractable approximation methods. Theoretical results are illustrated with practical Long-Term Evolution (LTE) applications and compared with real-world deployment results.