Genetic algorithm for solving bicriteria network topology design problem

Jong Ryul Kim, M. Gen
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引用次数: 46

Abstract

Increasing attention is being paid to various problems inherent in the topological design of network systems. The topological structure of these networks can be based on service centers, terminals (users), and connection cables. Lately, these network systems have been designed with fiber optic cable, due to increasing user requirements. But considering the high cost of the fiber optic cable, it is desirable that the network architecture is composed of a spanning tree. Network topology design problems consist of finding a topology that optimizes design criteria such as connection cost, message delay, network reliability, and so on. Recently, genetic algorithms (GAs) have advanced in many research fields, such as network optimization problems, combinatorial optimization, multi-objective optimization, and so on. Also, GAs have received a great deal of attention concerning their ability as an optimization technique for many real-world problems. In this paper, a GA for solving bicriteria network topology design problems of wide-band communication networks connected with fiber optic cable is presented, considering network reliability. We also employ the Prufer number and cluster string in order to represent chromosomes. Finally, we present some experiments in order to certify the quality of the network designs obtained by using the proposed GA. From the results, the proposed method can search effectively better candidate network architecture.
遗传算法求解双准则网络拓扑设计问题
网络系统拓扑设计中固有的各种问题越来越受到人们的重视。这些网络的拓扑结构可以根据业务中心、终端(用户)和连接线缆进行划分。最近,由于用户需求的增加,这些网络系统已采用光纤电缆设计。但考虑到光纤的高成本,采用生成树的网络结构是比较理想的。网络拓扑设计问题包括寻找优化设计标准(如连接成本、消息延迟、网络可靠性等)的拓扑。近年来,遗传算法在网络优化问题、组合优化问题、多目标优化问题等许多研究领域都取得了进展。此外,由于能够作为一种优化技术来解决许多现实问题,GAs也受到了广泛的关注。在考虑网络可靠性的情况下,提出了一种用于解决光纤连接的宽带通信网络双准则网络拓扑设计问题的遗传算法。我们还使用普鲁特数和簇串来表示染色体。最后,我们给出了一些实验来验证使用所提出的遗传算法所获得的网络设计的质量。结果表明,该方法可以有效地搜索到更好的候选网络结构。
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