首页> 外文会议>IEEE Congress on Evolutionary Computation >Minimize the average mean first passage time of random walk in complex networks by genetic algorithm
【24h】

Minimize the average mean first passage time of random walk in complex networks by genetic algorithm

机译:用遗传算法最小化复杂网络中随机游走的平均平均首次通过时间

获取原文

摘要

We investigate the methods of rewiring a given connected network so that the average mean first passage time (AMFPT) for random walk processes can be reduced. Two rewiring mechanisms are used, which we call the zeroth order method (Z) and the higher order method (H) according to the series expansion analysis of the first passage time. We aim at finding the optimal sequence of rewiring action of k units long composed of the Z and H methods that yields the maximal reduction of average mean first passage time. We use both the simple genetic algorithm (SGA) and mutation only genetic algorithm (MOGA) and the results show in general MOGA produces networks with higher reduction of AMFPT for benchmark tests on all three major classes of complex networks (ER, BA, WS). In general, the higher order method appears more often in the networks with large clustering coefficient. The networks with small clustering coefficient will develop to regular networks through the zeroth order rewiring method, while the networks with initially large clustering coefficient have preference to reduce the number of small loops through the higher order rewiring method. We also apply our rewiring sequence of three steps on real networks (IEEE30, IEEE 57) and produce remarkable reduction on the AMFPT. This indicates that our method of analysis can be of practical importance for engineering.
机译:我们研究了重新布线给定连接网络的方法,以便可以减少随机行走过程的平均平均首次通过时间(AMFPT)。根据第一次通过时间的序列展开分析,使用了两种重新布线机制,分别称为零阶方法(Z)和高阶方法(H)。我们旨在找到由Z和H方法组成的k个单位的重新布线动作的最佳顺序,该顺序可以最大程度地减少平均平均首次通过时间。我们同时使用简单遗传算法(SGA)和仅变异遗传算法(MOGA),结果表明,一般而言,MOGA生成的AMFPT降低率更高的网络用于所有三种主要类别的复杂网络(ER,BA,WS)的基准测试。通常,高阶方法在具有大聚类系数的网络中更常出现。聚类系数小的网络将通过零阶重新布线方法发展为常规网络,而初始聚类系数较大的网络则倾向于通过高阶重新布线方法来减少小环路的数量。我们还将三个步骤的重新布线序列应用到实际网络(IEEE30,IEEE 57)上,并在AMFPT上产生了明显的降低。这表明我们的分析方法对于工程学可能具有实际的重要性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号