Deterministic Modelling For Indoor Radio Propagation Prediction Of Fifth Generation Networks

Due to the fascinating properties in higher frequencies, the applications of such radio waves are increasing significantly in indoor communication systems. In the field of wireless communications, the propagation predictions play a vital role to gain better performance. A study of ray tracing is pr...

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Main Author: Hossain, Ferdous
Format: Thesis
Published: 2019
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spelling my-mmu-ep.77602020-09-22T17:51:23Z Deterministic Modelling For Indoor Radio Propagation Prediction Of Fifth Generation Networks 2019-04 Hossain, Ferdous TK5101-6720 Telecommunication. Including telegraphy, telephone, radio, radar, television Due to the fascinating properties in higher frequencies, the applications of such radio waves are increasing significantly in indoor communication systems. In the field of wireless communications, the propagation predictions play a vital role to gain better performance. A study of ray tracing is presented in this thesis, with special consideration to future high-frequency applications. Although practical measurements provide accurate judgment of performance, they require a huge resource in time, effort and cost. Hence, computerised simulation would be a good alternative to wireless channel modelling. This study considers an initiative for developing a simulator using ray tracing technique. Based on the literature review, we observe that there is a r esearch gap on conventional ray tracing methods that is worthy of further investigation. The radio propagation prediction simulation method based on deterministic models such as ray launching is extensively used to accomplish radio channel characterization. The superiority of the simulation depends on the number of rays launched and received. Conventional menthols launched more ray these are directly related to the complexity. We propose to develop a Three-Dimensional (3-D) Adaptive Path Sensing Method (APSM), which is applicable for an efficient indoor radio wave propagation prediction. Using the efficient APSM in the simulation environment for ray lunching drastically reduces the number of rays needed to be traced, and improve the efficiency of ray tracing. Implementation and justification of APSM simulations are conducted at 6 GHz. 2019-04 Thesis http://shdl.mmu.edu.my/7760/ http://library.mmu.edu.my/library2/diglib/mmuetd/ phd doctoral Multimedia University Faculty of Engineering & Technology
institution Multimedia University
collection MMU Institutional Repository
topic TK5101-6720 Telecommunication
Including telegraphy, telephone, radio, radar, television
spellingShingle TK5101-6720 Telecommunication
Including telegraphy, telephone, radio, radar, television
Hossain, Ferdous
Deterministic Modelling For Indoor Radio Propagation Prediction Of Fifth Generation Networks
description Due to the fascinating properties in higher frequencies, the applications of such radio waves are increasing significantly in indoor communication systems. In the field of wireless communications, the propagation predictions play a vital role to gain better performance. A study of ray tracing is presented in this thesis, with special consideration to future high-frequency applications. Although practical measurements provide accurate judgment of performance, they require a huge resource in time, effort and cost. Hence, computerised simulation would be a good alternative to wireless channel modelling. This study considers an initiative for developing a simulator using ray tracing technique. Based on the literature review, we observe that there is a r esearch gap on conventional ray tracing methods that is worthy of further investigation. The radio propagation prediction simulation method based on deterministic models such as ray launching is extensively used to accomplish radio channel characterization. The superiority of the simulation depends on the number of rays launched and received. Conventional menthols launched more ray these are directly related to the complexity. We propose to develop a Three-Dimensional (3-D) Adaptive Path Sensing Method (APSM), which is applicable for an efficient indoor radio wave propagation prediction. Using the efficient APSM in the simulation environment for ray lunching drastically reduces the number of rays needed to be traced, and improve the efficiency of ray tracing. Implementation and justification of APSM simulations are conducted at 6 GHz.
format Thesis
qualification_name Doctor of Philosophy (PhD.)
qualification_level Doctorate
author Hossain, Ferdous
author_facet Hossain, Ferdous
author_sort Hossain, Ferdous
title Deterministic Modelling For Indoor Radio Propagation Prediction Of Fifth Generation Networks
title_short Deterministic Modelling For Indoor Radio Propagation Prediction Of Fifth Generation Networks
title_full Deterministic Modelling For Indoor Radio Propagation Prediction Of Fifth Generation Networks
title_fullStr Deterministic Modelling For Indoor Radio Propagation Prediction Of Fifth Generation Networks
title_full_unstemmed Deterministic Modelling For Indoor Radio Propagation Prediction Of Fifth Generation Networks
title_sort deterministic modelling for indoor radio propagation prediction of fifth generation networks
granting_institution Multimedia University
granting_department Faculty of Engineering & Technology
publishDate 2019
_version_ 1747829676010635264