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A comparative study to minimize the makespan of parallel-machine problem with job arrival in uncertainty

机译:在不确定的情况下使并行机问题的有效期最小化的比较研究

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The continuously occurring random and unpredictable events in the manufacturing factories might change the system status or have negative impacts on the system, which includes dynamic order arriving, machine breakdowns, rush orders, due date changes, material shortages, or quality problems.Some proper actions such as rescheduling should be triggered to counter the impacts of dynamic arrival of jobs. In this paper,we develop a parallel insertion algorithm implemented with rescheduling criteria to minimize the makespan of parallel-machine problem with job arrival in uncertainty and sequence-dependent setup time. Furthermore, we provide the probabilistic model to estimate the makespan for identical parallel-machine problem with the inter-arrival time of jobs exponentially distributed and sequence-dependent setup time under the FIFO rule. Since the probabilistic model is under FIFO rule, which is a common and simple dispatching rule, the expected makespan generated by probability model can be regarded as a lower standard in performance comparison and be used to evaluate the superiority of scheduling algorithm, such as Parallel Insertion. The larger the deviation between the makespan respectively determined by the FIFO rule and the algorithm, the more superiority of the algorithm can be concluded. A comparative computation including the results by the LPT rule is provided to demonstrate the effectiveness of the proposed algorithm.
机译:制造工厂中连续发生的随机且不可预测的事件可能会更改系统状态或对系统产生负面影响,包括动态订单到达,机器故障,紧急订单,到期日更改,物料短缺或质量问题。应该触发诸如重新计划之类的计划,以应对工作动态到达所带来的影响。在本文中,我们开发了一种采用重新调度标准实施的并行插入算法,以最大程度地减少具有不确定性和与序列有关的设置时间的作业到达的并行机问题的有效期。此外,我们提供了概率模型来估计相同并行机问题的制造期限,其中FIFO规则下具有按指数分布的作业到达时间和依赖序列的建立时间。由于概率模型是基于FIFO规则(这是一种常见且简单的调度规则),因此概率模型生成的预期有效期可被视为性能比较中的较低标准,并可用于评估调度算法(例如并行插入)的优越性。 FIFO规则和算法分别确定的makepan之间的偏差越大,可以得出该算法的优越性。提供了包含LPT规则结果的比较计算,以证明所提出算法的有效性。

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