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A production planning methodology for semiconductor manufacturing based on iterative simulation and linear programming calculations

机译:基于迭代仿真和线性规划计算的半导体制造生产计划方法

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We introduce a methodology for automated production planning of semiconductor manufacturing based on iterative linear programming (LP) optimization and discrete-event simulation calculations. The LP formulation incorporates epoch dependent parameters for flow times from lot release up to each operation on each manufacturing route. LP-derived release schedules are used as input to the simulation model, from which statistics on flow times are collected and used to reformulate the LP model for a revised planning calculation. Iteration continues until satisfactory agreement between simulation and LP models is obtained. We demonstrate in experiments on an industry data set that a relatively small number of iterations is required to develop a production plan correctly characterizing future flow times as a function of factory load and product mix. The methodology makes possible automated production planning of semiconductor manufacturing on an engineering work station.
机译:我们介绍一种基于迭代线性规划(LP)优化和离散事件模拟计算的半导体制造自动化生产计划方法。 LP配方结合了历时相关的参数,用于从批次释放到每个生产路线上的每个操作的流转时间。 LP衍生的排放计划用作模拟模型的输入,从中收集流动时间的统计信息,并用于重新制定LP模型以进行修订的计划计算。迭代一直进行到获得仿真模型和LP模型之间令人满意的一致性为止。我们在行业数据集上的实验中证明,需要相对较少的迭代次数才能正确制定生产计划,从而根据工厂负荷和产品组合来表征未来的生产时间。该方法使在工程工作站上进行半导体制造的自动化生产计划成为可能。

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