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Efficient ultrawideband propagation modelling by using the cubic B-spline function in ray tracing calculations

Author:
وحید محتشمی
,
A.A. Shishegar
,
Vahid Mohtashami
Year
: 2012
Abstract: In site-specific ultrawideband propagation modelling, electromagnetic field calculations need to be performed by ray tracing at numerous frequencies of the band in order to properly include the frequency variations of the propagation mechanisms and antenna patterns. This is computationally intensive especially in calculating the coverage map or finding the statistics of the channel parameters where field calculations need to be carried out at a lot of receiver locations. In this study, the cubic B-spline

function is incorporated in ray tracing to increase the computational efficiency of site-specific ultrawideband propagation

modelling. This function can accurately reconstruct a signal from a few samples at a low-computational cost. By calculating the electromagnetic fields at a few frequency samples followed by cubic B-spline reconstruction, a lot of unnecessary calculations of the post-processing stage are suppressed without degrading the accuracy of the results. The study develops a systematic procedure for determining the number of required frequency samples according to the geometrical and electromagnetic properties of the walls, frequency variations of the antenna patterns and characteristics of the cubic B-spline function. The proper functionality of the proposed method is verified by numerical results where the simulation time is reduced several times for a typical indoor environment.
URI: https://libsearch.um.ac.ir:443/fum/handle/fum/3348233
Keyword(s): cubic B-spline,propagation,ray tracing
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    Efficient ultrawideband propagation modelling by using the cubic B-spline function in ray tracing calculations

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contributor authorوحید محتشمیen
contributor authorA.A. Shishegaren
contributor authorVahid Mohtashamifa
date accessioned2020-06-06T13:16:00Z
date available2020-06-06T13:16:00Z
date issued2012
identifier urihttps://libsearch.um.ac.ir:443/fum/handle/fum/3348233?locale-attribute=en
description abstractIn site-specific ultrawideband propagation modelling, electromagnetic field calculations need to be performed by ray tracing at numerous frequencies of the band in order to properly include the frequency variations of the propagation mechanisms and antenna patterns. This is computationally intensive especially in calculating the coverage map or finding the statistics of the channel parameters where field calculations need to be carried out at a lot of receiver locations. In this study, the cubic B-spline

function is incorporated in ray tracing to increase the computational efficiency of site-specific ultrawideband propagation

modelling. This function can accurately reconstruct a signal from a few samples at a low-computational cost. By calculating the electromagnetic fields at a few frequency samples followed by cubic B-spline reconstruction, a lot of unnecessary calculations of the post-processing stage are suppressed without degrading the accuracy of the results. The study develops a systematic procedure for determining the number of required frequency samples according to the geometrical and electromagnetic properties of the walls, frequency variations of the antenna patterns and characteristics of the cubic B-spline function. The proper functionality of the proposed method is verified by numerical results where the simulation time is reduced several times for a typical indoor environment.
en
languageEnglish
titleEfficient ultrawideband propagation modelling by using the cubic B-spline function in ray tracing calculationsen
typeJournal Paper
contenttypeExternal Fulltext
subject keywordscubic B-splineen
subject keywordspropagationen
subject keywordsray tracingen
journal titleIET Microwaves Antennas and Propagationfa
pages1347-1358
journal volume6
journal issue12
identifier linkhttps://profdoc.um.ac.ir/paper-abstract-1038500.html
identifier articleid1038500
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