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Application of genetic algorithm to computer-aided process planning in preliminary and detailed planning

机译:遗传算法在初步计划和详细计划中的计算机辅助过程计划中的应用

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摘要

Computer-aided process planning (CAPP) is an important interface between computer-aided design (CAD) and computer-aided manufacturing (CAM) in the computer integrated manufacturing (CIM) environment. A good process plan of a part is built up based on two elements: (1) optimized sequence of the operations of the part; and (2) optimized selection of the machine, cutting tool and tool access direction (TAD) for each operation. On the other hand, two levels of planning in the process planning is suggested: (1) preliminary and (2) secondary and detailed planning. In this paper for the preliminary stage, the feasible sequences of operations are generated based on the analysis of constraints and using a genetic algorithm (GA). Then in the detailed planning stage, using a genetic algorithm again which prunes the initial feasible sequences, the optimized operations sequence and the optimized selection of the machine, cutting tool, and TAD for each operation are obtained. By applying the proposed GA in two levels of planning, the CAPP system can generate optimal or near-optimal process plans based on a selected criterion. A number of case studies are carried out to demonstrate the feasibility and robustness of the proposed algorithm. This algorithm performs well on all the test problems, exceeding or matching the solution quality of the results reported in the literature for most problems. The main contribution of this work is to emerge the preliminary and detailed planning, implementation of compulsive and additive constraints, optimization sequence of the operations of the part, and optimization selection of machine, cutting tool and TAD for each operation using the proposed GA, simultaneously.
机译:在计算机集成制造(CIM)环境中,计算机辅助过程计划(CAPP)是计算机辅助设计(CAD)与计算机辅助制造(CAM)之间的重要接口。一个良好的零件工艺计划是建立在两个要素的基础上的:(1)零件操作的最佳顺序; (2)针对每个操作优化选择机器,切削刀具和刀具进入方向(TAD)。另一方面,建议在过程计划中进行两个级别的计划:(1)初步计划;(2)辅助计划和详细计划。在本文的初步阶段,基于约束分析并使用遗传算法(GA)生成了可行的操作序列。然后,在详细的计划阶段,再次使用遗传算法对初始可行序列进行修剪,从而获得优化的操作序列以及每个操作的机器,切削工具和TAD的优化选择。通过在两个级别的计划中应用拟议的遗传算法,CAPP系统可以根据选定的标准生成最佳或接近最佳的工艺计划。进行了许多案例研究,以证明所提出算法的可行性和鲁棒性。该算法在所有测试问题上均表现出色,超过或匹配了文献中针对大多数问题报告的结果的解决方案质量。这项工作的主要贡献是同时提出了初步和详细的计划,强制和附加约束的实现,零件操作的优化顺序以及使用建议的GA同时为每个操作优化选择机床,切削刀具和TAD。 。

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