Improved adaptive genetic algorithm for cutter allocation problem of CNC in FMS

Faxiang Miao, Guanghui Zhou, Zhongdong Xiao
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引用次数: 0

Abstract

Cutter is an important component part of the flexible manufacturing system, so the selection of cutters would have direct effect on the machining efficiency and production cost to the whole system. In this paper, a mathematical model for cutter allocation of CNC machining center in FMS is presented, in which the optimization objective is to minimize the total cost of production. Furthermore, the factors of job delivery time and parallel processing of working steps are included in the model. Based on the model, an improved adaptive genetic algorithm is designed and developed to solve the problem to accelerate the speed of the algorithm's convergence and improve the solution efficiency. Finally, the results of the example validations indicate the correctness and effectiveness of the model and the algorithm. This research provides a suitable way for the cutter allocation problem of flexible manufacturing system.
改进的自适应遗传算法求解数控系统中刀具分配问题
刀具是柔性制造系统的重要组成部分,刀具的选择直接影响到整个系统的加工效率和生产成本。提出了一种以生产总成本最小为优化目标的FMS数控加工中心刀具分配的数学模型。此外,该模型还考虑了作业交付时间和工序并行处理等因素。在此基础上,设计并开发了一种改进的自适应遗传算法来求解该问题,加快了算法的收敛速度,提高了求解效率。算例验证结果表明了模型和算法的正确性和有效性。该研究为柔性制造系统的刀具分配问题提供了一种合适的方法。
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