DocumentCode
1634549
Title
A multi-objective evolutionary algorithm with ε-dominance to calculate multicast routes with QoS requirements
Author
Oliveira, Gina M B ; Vita, Stéfano S B V
Author_Institution
Fac. de Comput., Univ. Fed. de Uberlandia, Uberlandia
fYear
2009
Firstpage
182
Lastpage
189
Abstract
Multicasting routing is an effective way to communicate among multiple hosts in computer networks. Usually multiple quality of service (QoS) guarantees are required in most of multicast applications. Several researchers have investigated genetic algorithms-based models for multicast route computation with QoS requirements. The evolutionary models proposed here use multi-objective approaches in a Pareto sense to solve this problem and to deal with the inheriting multiple metrics involved in QoS proposal. Basically, we construct three QoS-constrained multicasting routing algorithms; the first one was based on NSGA, the second one was based on NSGA-II and the third is an adaptation of NSGA-II incorporating the concept of epsiv-dominance. These algorithms were applied to find multicast routes over two network topologies. Three different pairs of objectives were evaluated; the first objective used in each pair is related to the total cost of a multicast route and the second metric is related to delay. The first evaluated delay metric computes the total delay involved in the tree solution; the second one computes the mean delay accumulated from the source to each destination node; the third one is the maximum delay accumulated from the source to a destination node. Our results indicated that the NSGA-II environment incorporating the concept of epsiv-dominance - named epsiv-NSGA-II multicasting routing-returned the best performance.
Keywords
Pareto optimisation; delays; genetic algorithms; multicast communication; quality of service; telecommunication network routing; telecommunication network topology; Pareto optimization; QoS; computer networks; destination node; genetic algorithms-based models; mean delay; multicasting routing; multiobjective evolutionary algorithm; network topologies; quality of service; Application software; Computer networks; Delay; Evolutionary computation; Genetics; Multicast algorithms; Network topology; Proposals; Quality of service; Routing;
fLanguage
English
Publisher
ieee
Conference_Titel
Evolutionary Computation, 2009. CEC '09. IEEE Congress on
Conference_Location
Trondheim
Print_ISBN
978-1-4244-2958-5
Electronic_ISBN
978-1-4244-2959-2
Type
conf
DOI
10.1109/CEC.2009.4982946
Filename
4982946
Link To Document