Radio Wave Propagation Modelling using Finite Element Method: Novel approaches to model radio wave propagation and solve complex models efficiently using finite element analysis - Couverture souple

Arshad, Kamran

 
9783843358019: Radio Wave Propagation Modelling using Finite Element Method: Novel approaches to model radio wave propagation and solve complex models efficiently using finite element analysis

Synopsis

Fourth generation (4G) wireless communication systems are intended to support high data rates which requires careful and accurate modelling of the radio environment. In this book, finite element based accurate and computationally efficient models of wave propagation in different outdoor and indoor environments have been developed. Coverage diagrams, path loss contours and power levels were also calculated. Results obtained were compared with commercially available software Advanced Refractive Effects Prediction Software (AREPS) to validate the accuracy of the developed models. The models were very flexible in handling complex geometries and similar analysis can be easily extended to other environments. A fully vectored finite element base propagation model was developed for straight and curved tunnels. An optimum range of values of different electrical parameters for tunnels of different shapes has been derived. The results of this book will have a great impact in modelling and characterisation of future wireless communication systems.

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Présentation de l'éditeur

Fourth generation (4G) wireless communication systems are intended to support high data rates which requires careful and accurate modelling of the radio environment. In this book, finite element based accurate and computationally efficient models of wave propagation in different outdoor and indoor environments have been developed. Coverage diagrams, path loss contours and power levels were also calculated. Results obtained were compared with commercially available software Advanced Refractive Effects Prediction Software (AREPS) to validate the accuracy of the developed models. The models were very flexible in handling complex geometries and similar analysis can be easily extended to other environments. A fully vectored finite element base propagation model was developed for straight and curved tunnels. An optimum range of values of different electrical parameters for tunnels of different shapes has been derived. The results of this book will have a great impact in modelling and characterisation of future wireless communication systems.

Biographie de l'auteur

Dr. Kamran Arshad received his PhD in Computing Science at Middlesex University London in 2007. Currently, he is working as a Research Fellow in University of Surrey. He has authored more than 30 publications in quality Journals and International Conferences. Dr. Arshad research includes channel modelling and Cognitive Radio Networks.

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