[1]Deb K,Pratap A,Agarwal S,et al. A fast and
elitist multi-objective genetic algorithm:NSGA-II[J].
IEEE Transactions on Evolutionary Computation,2002,6(2):182-197.
[2]Thomas Stützle,
Hoos H H . MAX-MIN Ant system[J]. Future Generation Computer Systems,2000,16(8):889-914.
[3]Coello C A C,Pulido G T,Lechuga M S.
Handling multiple objectives with particle swarm optimization[J]. IEEE
Transactions on Evolutionary Computation,2004,8(3):256-279.
[4] 梅伟,赵云涛,毛雪松,等.基于离散灰狼算法的喷涂机器人路径规划方法[J/OL].计算机应用:1-7[2020-07-28].http://kns.cnki.net/kcms/detail/51.1307.TP.20200721.1654.012.html.
[5] 赵杰,胡浩然,孙启智,等.改进果蝇算法的运输车辆路径规划[J].黑龙江科技大学学报,2020,30(02):187-192+204.
[6] 徐飞,何定润,杨俊儒.基于鱼群算法的城市交通仿真[J].微计算机信息,2010,26(10):188-189+201.
[7]Pan W T. A new
Fruit Fly Optimization Algorithm: Taking the financial distress model as an
example[J]. Knowledge-Based Systems,2012,26:69-74.
[8] 潘文超.应用果蝇优化算法优化广义回归神经网络进行企业经营绩效评估[J].太原理工大学学报(社会科学版),2011,29(04):1-5.
[9] 吴建辉. 混合免疫优化理论与算法及其应用研究[D].湖南大学,2013.
[10]Specht
D F. A general regression neural network[J]. IEEE Transactions on Neural
Networks,1991,2(6):568-76.
[11] 张倩,熊英,何明珂,等.不确定需求生鲜电商配送路径规划多目标模型[J].系统仿真学报,2019,31(08):1582-1590.
[12] 毛正阳,方群,李克行,等.应用改进果蝇优化算法的月面巡视器路径规划[J].中国空间科学技术,2014,34(05):87-93.
[13] 郭伟,秦国选,王磊,等.基于改进人工鱼群算法和MAKLINK图的机器人路径规划[J].控制与决策,2020,35(09):2145-215
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