一种求解装配序列规划问题的杂交蜜蜂交配优化算法

Biao Yuan, Chaoyong Zhang, Kunlei Lian, X. Shao
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引用次数: 1

摘要

装配序列规划(ASP)是指综合考虑装配特征、装配工具和机床等相关约束因素,生成低成本的可行序列。本文建立了基于连接器的装配顺序规划问题的数学模型,并提出了一种混合蜜蜂交配优化(HBMO)算法来求解该问题。与传统的HBMO算法相比,该算法具有两个主要的创新特征。首先,提出了一种多点优先交叉算子(MPX),避免了不可行解的产生,并保留了蜂群和蜂群的有意义特征。其次,工蜂利用模拟退火(SA)算法作为局部搜索方法来改进蜂群,使所提出的算法在集约化和多样化之间达到了适当的平衡。在三个实例上对混合HBMO算法进行了测试,并与Guided-GAs、MAs(模因算法)和AIS(人工免疫系统)等方法进行了比较。通过实例验证了该算法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A hybrid honey-bees mating optimization algorithm for assembly sequence planning problem
Assembly sequence planning (ASP) refers to taking the related constraint factors such as assembly features, assembly tools and machines into consideration to generate a low-cost feasible sequence. In this paper, a mathematical model of assembly sequence planning problem based on connectors is constructed, and a hybrid honey-bees mating optimization (HBMO) algorithm is proposed for solving this ASP problem. The proposed algorithm has two main innovative features compared to the conventional HBMO algorithm. Firstly, a crossover operator, called Multipoint Precedence Crossover (MPX), is proposed, which can avoid the generation of infeasible solutions and preserve the meaningful characteristics of the queen and broods. Secondly, worker bees utilize the simulated annealing (SA) algorithm as a local search method to improve the broods, which makes the proposed algorithm achieve the right balance between intensification and diversification. The hybrid HBMO algorithm is tested on three practical instances and compared with other approaches, such as Guided-GAs, MAs (memetic algorithm) and AIS (artificial immune systems). The superior results on these practical instances validate the effectiveness of the proposed algorithm.
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