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A novel decoding method for the hybrid flow-shop scheduling problem with multiprocessor tasks

机译:一种具有多处理器任务的混合流水车间调度问题的新型解码方法

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摘要

As the strongly NP-hard problem, the hybrid flow-shop problem with multiprocessor tasks (HFSPMT) has gained increasing attention due to its academic significance and wide application background. For many heuristics and meta-heuristics to solve the HFSPMT, decoding method is the key element to decode sequences to schedules, which has great effect on the solution quality. To narrow the idle time between the consecutive operations in the processor and to increase the flexibility in selecting processors to schedule the following operations, several rules are proposed to adjust sequences to minimize the makespan of the HFSPMT. Based on the rules, a novel and effective decoding method named forward scheduling (FS) is proposed in this paper for solving the HFSPMT. At each stage, it first decodes the solution according to the non-decreasing order of the jobs' completion times at the previous stage, and then it adjusts the processing order of the jobs dynamically according to the rules to obtain potentially better schedule. Numerical results based on the well-known benchmarks and comparisons with some existing decoding methods demonstrate the effectiveness of the proposed FS decoding method.
机译:作为强NP难题,具有多处理器任务的混合流水车间问题(HFSPMT)由于其学术意义和广泛的应用背景而受到越来越多的关注。对于许多启发式和元启发式方法来求解HFSPMT而言,解码方法是将序列解码为调度的关键要素,这对解决方案质量有很大影响。为了缩小处理器中连续操作之间的空闲时间,并增加选择处理器以调度以下操作的灵活性,提出了一些规则来调整序列以最小化HFSPMT的制造时间。基于这些规则,本文提出了一种新的有效的解码方法,称为前向调度(FS),用于解决HFSPMT。在每个阶段,它首先根据上一阶段作业完成时间的非递减顺序对解决方案进行解码,然后根据规则动态调整作业的处理顺序,以获得可能更好的调度。基于众所周知的基准并与一些现有解码方法进行比较的数值结果证明了所提出的FS解码方法的有效性。

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