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New completion time algorithms for sequence based scheduling in multiproduct batch processes using matrix

机译:基于矩阵的多产品批处理中基于序列的调度的新完成时间算法

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Scheduling of batch processes involves various parameters such as batch process recipes,sequence of production and transfer policy for product intermediates.All these parameters directly or indirectly affect the makespan,i.e.completion time of a batch process.The scheduling approaches reported in past literatures mostly refer to the use of complex mathematical models for determining makespan.These models require good understanding in formulating the problem using programming techniques to find the optimal solution.The current work proposes new completion time algorithms for multiproduct batch process with two commonly used transfer policies namely zero wait(ZW)and no intermediate storage(NIS).The batch process recipes are presented in the form of a matrix which is then used to solve for the completion time using developed algorithms.Rearrangement of the matrix rows reflects the changes in production sequences possible for the specified batch process recipes which then enable the makespan to be determined accordingly for the different sequences.Designer is then provided with the production sequence options with their corresponding makespan from which a selection could be made.
机译:批生产过程的调度涉及各种参数,例如批生产过程的配方,生产顺序和产品中间体的转移策略。所有这些参数都直接或间接影响到批生产的完成时间,即完成时间。过去文献中报道的调度方法主要涉及这些模型需要通过编程技术来制定问题以找到最佳解决方案时需要很好的理解。当前的工作为多产品批处理过程提出了新的完成时间算法,该算法具有两种常用的转移策略,即零等待(ZW)且没有中间存储(NIS)。批处理过程配方以矩阵的形式显示,然后使用已开发的算法用于解决完成时间。矩阵行的重新排列反映了生产顺序可能的变化指定的批处理配方,然后启用makep然后为设计人员提供生产序列选项以及其相应的有效期,从中可以进行选择。

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