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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >An interactive approach to solve the operation sequencing problem using simulated annealing
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An interactive approach to solve the operation sequencing problem using simulated annealing

机译:一种使用模拟退火解决操作排序问题的交互式方法

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摘要

The problem of operation sequencing is affected by geometrical parameters such as tool compatibility, feature symmetry, feature accessibility, feature orientation and non-geometrical parameters such as dimensional tolerance, geometric tolerance, location tolerance and surface finish. Operation sequences are determined after meeting the objective functions such as minimum setup changeover and tool changeover, maximum tool motion continuity and maximum loose precedence among features. Because of the conflicting nature of the objectives and constraints, it is a tedious task to formulate a single objective function that can meet the requirements of the problem. Thus in this paper, an attempt has been made to address this issue to an extent by developing operation sequencing rating index (OSRI) which is the weighted sum of four indices: setup changeover index, tool changeover index, motion continuity index and loose precedence index. Determination of setup changeover index involves datum selection and sequencing in addition to grouping features into setup. Owing to the combinatorial nature of the problem, the simulated annealing (SA) based algorithm has been employed to determine the optimalear-optimal operation sequence by maximising OSRI. In the proposed methodology, a perturbation scheme named as modified shifting scheme (MSS) has been devised to generate a feasible neighbourhood sequence that minimizes the search space and helps the algorithm to escape from local optima. A new approach for temperature variation in the SA algorithm is also incorporated in which the temperature is assumed to be parabolic. The advantage and effectiveness of the proposed methodology in terms of its algorithmic implementation have been verified on four test parts.
机译:操作排序问题受几何参数(例如工具兼容性,特征对称性,特征可访问性,特征方向)和非几何参数(例如尺寸公差,几何公差,位置公差和表面光洁度)的影响。在满足目标功能(例如最小的设置转换和刀具转换,最大的刀具运动连续性以及最大的特征之间的松动优先级)后确定操作顺序。由于目标和约束的冲突性质,制定一个可以满足问题要求的目标函数是一项繁琐的任务。因此,本文尝试通过开发操作顺序等级指数(OSRI)来在一定程度上解决此问题,该指数是四个指数的加权总和:设置转换指数,刀具转换指数,运动连续性指数和宽松优先权指数。设置转换索引的确定除了将特征分组到设置中之外,还涉及基准选择和排序。由于该问题的组合性质,已采用基于模拟退火(SA)的算法来通过最大化OSRI来确定最佳/接近最佳操作顺序。在提出的方法中,已设计出一种称为修正移位方案(MSS)的扰动方案,以生成可行的邻域序列,该序列将搜索空间最小化,并有助于算法摆脱局部最优。 SA算法中还引入了一种新的温度变化方法,其中温度被假定为抛物线形。在四个测试部分上,已经验证了所提出方法在算法实现方面的优势和有效性。

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