Improved Resource Allocation for TV White Space Network Based on Modified Firefly Algorithm

There is continued increased demand for dynamic spectrum access of TV White Spaces (TVWS) due to growing need for wireless broadband. Some of the use cases such as cellular (2G/3G/4G/5G) access to TVWS may have a high density of users that want to make use of TVWS. When there is a high density of se...

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Main Authors: Kennedy K. Ronoh, George Kamucha, Thomas O. Olwal, Tonny K. Omwansa
Format: Article
Language:English
Published: University of Zagreb Faculty of Electrical Engineering and Computing 2018-01-01
Series:Journal of Computing and Information Technology
Subjects:
Online Access:http://hrcak.srce.hr/file/312286
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spelling doaj-3667c9bf33c9403fb3d448196f18363c2020-11-24T21:02:16ZengUniversity of Zagreb Faculty of Electrical Engineering and ComputingJournal of Computing and Information Technology1330-11361846-39082018-01-01263167177Improved Resource Allocation for TV White Space Network Based on Modified Firefly AlgorithmKennedy K. Ronoh0George Kamucha1Thomas O. Olwal2Tonny K. Omwansa3School of Computing and Informatics, University of Nairobi Nairobi, KenyDepartment of Electrical and Information Engineering, University of Nairobi Nairobi, KenyaDepartment of Electrical Engineering, Tshwane University of Technology, Pretoria, South AfricaSchool of Computing and Informatics, University of Nairobi Nairobi, KenyThere is continued increased demand for dynamic spectrum access of TV White Spaces (TVWS) due to growing need for wireless broadband. Some of the use cases such as cellular (2G/3G/4G/5G) access to TVWS may have a high density of users that want to make use of TVWS. When there is a high density of secondary users (SUs) in a TVWS network, there is possibility of high interference among SUs that exceeds the desired threshold and also harmful interference to primary users (PUs). Optimization of resource allocation (power and spectrum allocation) is therefore necessary so as to protect PUs against harmful interference and to reduce the level of interference among SUs. Existing resource allocation optimization algorithms for a TVWS network ignore adjacent channel interference, interference among SUs or apply greedy algorithms which result in sub-optimal resource allocation. In this paper we propose an improved resource allocation algorithm based on continuous-binary firefly algorithm. Simulation is done using Matlab. Simulation results show that the proposed algorithm improves the SU sum throughput and SU signal to interference noise(SINR) ratio in the secondary network. http://hrcak.srce.hr/file/312286dynamic spectrum access, cognitive radio, spectrum allocation, power control
collection DOAJ
language English
format Article
sources DOAJ
author Kennedy K. Ronoh
George Kamucha
Thomas O. Olwal
Tonny K. Omwansa
spellingShingle Kennedy K. Ronoh
George Kamucha
Thomas O. Olwal
Tonny K. Omwansa
Improved Resource Allocation for TV White Space Network Based on Modified Firefly Algorithm
Journal of Computing and Information Technology
dynamic spectrum access, cognitive radio, spectrum allocation, power control
author_facet Kennedy K. Ronoh
George Kamucha
Thomas O. Olwal
Tonny K. Omwansa
author_sort Kennedy K. Ronoh
title Improved Resource Allocation for TV White Space Network Based on Modified Firefly Algorithm
title_short Improved Resource Allocation for TV White Space Network Based on Modified Firefly Algorithm
title_full Improved Resource Allocation for TV White Space Network Based on Modified Firefly Algorithm
title_fullStr Improved Resource Allocation for TV White Space Network Based on Modified Firefly Algorithm
title_full_unstemmed Improved Resource Allocation for TV White Space Network Based on Modified Firefly Algorithm
title_sort improved resource allocation for tv white space network based on modified firefly algorithm
publisher University of Zagreb Faculty of Electrical Engineering and Computing
series Journal of Computing and Information Technology
issn 1330-1136
1846-3908
publishDate 2018-01-01
description There is continued increased demand for dynamic spectrum access of TV White Spaces (TVWS) due to growing need for wireless broadband. Some of the use cases such as cellular (2G/3G/4G/5G) access to TVWS may have a high density of users that want to make use of TVWS. When there is a high density of secondary users (SUs) in a TVWS network, there is possibility of high interference among SUs that exceeds the desired threshold and also harmful interference to primary users (PUs). Optimization of resource allocation (power and spectrum allocation) is therefore necessary so as to protect PUs against harmful interference and to reduce the level of interference among SUs. Existing resource allocation optimization algorithms for a TVWS network ignore adjacent channel interference, interference among SUs or apply greedy algorithms which result in sub-optimal resource allocation. In this paper we propose an improved resource allocation algorithm based on continuous-binary firefly algorithm. Simulation is done using Matlab. Simulation results show that the proposed algorithm improves the SU sum throughput and SU signal to interference noise(SINR) ratio in the secondary network.
topic dynamic spectrum access, cognitive radio, spectrum allocation, power control
url http://hrcak.srce.hr/file/312286
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AT georgekamucha improvedresourceallocationfortvwhitespacenetworkbasedonmodifiedfireflyalgorithm
AT thomasoolwal improvedresourceallocationfortvwhitespacenetworkbasedonmodifiedfireflyalgorithm
AT tonnykomwansa improvedresourceallocationfortvwhitespacenetworkbasedonmodifiedfireflyalgorithm
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