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A new genetic algorithm based on modified Physarum network model for bandwidth-delay constrained least-cost multicast routing

journal contribution
posted on 2017-03-01, 00:00 authored by M Liang, C Gao, Zili ZhangZili Zhang
A mobile ad hoc network is a kind of popular self-configuring network, in which multicast routing under the quality of service constraints, is a significant challenge. Many researchers have proved that such problem can be formulated as a NP-complete problem and proposed some swarm-based intelligent algorithms to solve the optimal solution, such as the genetic algorithm (GA), bees algorithm. However, a lower efficiency of local search ability and weak robustness still limit the computational effectiveness. Aiming to those shortcomings, a new hybrid algorithm inspired by the self-organization of Physarum, is proposed in this paper. In our algorithm, an updating scheme based on Physarum network model (PM) is used for improving the crossover operator of traditional GAs, in which the same parts of parent chromosomes are reserved and the new offspring by the PM is generated. In order to estimate the effectiveness of our proposed optimized scheme, some typical genetic algorithms and their updating algorithms (PMGAs) are compared for solving the multicast routing on four different datasets. The simulation experiments show that PMGAs are more efficient than original GAs. More importantly, the PMGAs are more robustness that is very important for solving the multicast routing problem. Moreover, a series of parameter analyses is used to find a set of better setting for realizing the maximal efficiency of our algorithm.

History

Journal

Natural computing

Volume

16

Issue

1

Pagination

85 - 98

Publisher

Springer

Location

Dodrecht, The Netherlands

ISSN

1567-7818

eISSN

1572-9796

Language

eng

Publication classification

C1 Refereed article in a scholarly journal; C Journal article

Copyright notice

2016, Springer