Firefly Algorithm Based Optimization Model for Planning of Optical Transport Networks

The growth in data traffic is raising serious challenges for OTN in terms of improving their capacity efficiency in order to meet the new traffic requirements. Under these circumstances, the task of efficiently utilizing available resources opens opportunities for the development of a variety of...

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Main Authors: OLIVEIRA, B. Q., SOUSA, M. A., VIEIRA, F. H. T.
Format: Article
Language:English
Published: Stefan cel Mare University of Suceava 2020-05-01
Series:Advances in Electrical and Computer Engineering
Subjects:
Online Access:http://dx.doi.org/10.4316/AECE.2020.02007
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spelling doaj-8ca45bed0c064bf2b8f3a6291582bde12020-11-25T04:01:41ZengStefan cel Mare University of SuceavaAdvances in Electrical and Computer Engineering1582-74451844-76002020-05-01202556410.4316/AECE.2020.02007Firefly Algorithm Based Optimization Model for Planning of Optical Transport NetworksOLIVEIRA, B. Q.SOUSA, M. A.VIEIRA, F. H. T.The growth in data traffic is raising serious challenges for OTN in terms of improving their capacity efficiency in order to meet the new traffic requirements. Under these circumstances, the task of efficiently utilizing available resources opens opportunities for the development of a variety of techniques for network planning. This paper presents a decision support system for the optical transport network. It is considered the optical transport network planning problem where a traffic interest matrix between the demand nodes is specified. The network is modeled as a graph, through the arc-path approach. An Integer Linear Programming problem solved with a Firefly Algorithm is proposed for network planning, considering cost minimization. The main novelties of the proposed ILP model is that it accomplishes the optical network design with the possibility of multiple destinations of the traffic matrix and with dynamic allocation of the transmission system modularity. To solve the ILP optimization model the firefly algorithm, genetic algorithm and the exact method are used. Simulations are carried out to verify the performance of the bio-inspired algorithms in relation to the exact method. The results obtained with the firefly algorithm surpass those of the genetic algorithm and approximate the optimal result.http://dx.doi.org/10.4316/AECE.2020.02007artificial intelligencecommunication networksgenetic algorithmsoptical fiber networksoptimization
collection DOAJ
language English
format Article
sources DOAJ
author OLIVEIRA, B. Q.
SOUSA, M. A.
VIEIRA, F. H. T.
spellingShingle OLIVEIRA, B. Q.
SOUSA, M. A.
VIEIRA, F. H. T.
Firefly Algorithm Based Optimization Model for Planning of Optical Transport Networks
Advances in Electrical and Computer Engineering
artificial intelligence
communication networks
genetic algorithms
optical fiber networks
optimization
author_facet OLIVEIRA, B. Q.
SOUSA, M. A.
VIEIRA, F. H. T.
author_sort OLIVEIRA, B. Q.
title Firefly Algorithm Based Optimization Model for Planning of Optical Transport Networks
title_short Firefly Algorithm Based Optimization Model for Planning of Optical Transport Networks
title_full Firefly Algorithm Based Optimization Model for Planning of Optical Transport Networks
title_fullStr Firefly Algorithm Based Optimization Model for Planning of Optical Transport Networks
title_full_unstemmed Firefly Algorithm Based Optimization Model for Planning of Optical Transport Networks
title_sort firefly algorithm based optimization model for planning of optical transport networks
publisher Stefan cel Mare University of Suceava
series Advances in Electrical and Computer Engineering
issn 1582-7445
1844-7600
publishDate 2020-05-01
description The growth in data traffic is raising serious challenges for OTN in terms of improving their capacity efficiency in order to meet the new traffic requirements. Under these circumstances, the task of efficiently utilizing available resources opens opportunities for the development of a variety of techniques for network planning. This paper presents a decision support system for the optical transport network. It is considered the optical transport network planning problem where a traffic interest matrix between the demand nodes is specified. The network is modeled as a graph, through the arc-path approach. An Integer Linear Programming problem solved with a Firefly Algorithm is proposed for network planning, considering cost minimization. The main novelties of the proposed ILP model is that it accomplishes the optical network design with the possibility of multiple destinations of the traffic matrix and with dynamic allocation of the transmission system modularity. To solve the ILP optimization model the firefly algorithm, genetic algorithm and the exact method are used. Simulations are carried out to verify the performance of the bio-inspired algorithms in relation to the exact method. The results obtained with the firefly algorithm surpass those of the genetic algorithm and approximate the optimal result.
topic artificial intelligence
communication networks
genetic algorithms
optical fiber networks
optimization
url http://dx.doi.org/10.4316/AECE.2020.02007
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