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A study on flexible flow shop and job shop scheduling using meta-heuristic approaches

机译:基于元启发式方法的柔性流水车间和作业车间调度研究

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摘要

Scheduling aims at allocation of resources to perform a group of tasks over a period of time in such a manner that some performance goals such as flow time, tardiness, lateness, and makespan can be minimized. Today, manufacturers face the challenges in terms of shorter product life cycles, customized products and changing demand pattern of customers. Due to intense competition in the market place, effective scheduling has now become an important issue for the growth and survival of manufacturing firms. To sustain in the current competitive environment, it is essential for the manufacturing firms to improve the schedule based on simultaneous optimization of performance measures such as makespan, flow time and tardiness. Since all the scheduling criteria are important from business operation point of view, it is vital to optimize all the objectives simultaneously instead of a single objective. It is also essentially important for the manufacturing firms to improve the performance of production scheduling systems that can address internal uncertainties such as machine breakdown, tool failure and change in processing times. The schedules must meet the deadline committed to customers because failure to do so may result in a significant loss of goodwill. Often, it is necessary to reschedule an existing plan due to uncertainty event like machine breakdowns. The problem of finding robust schedules (schedule performance does not deteriorate in disruption situation) or flexible schedules (schedules expected to perform well after some degree of modification when uncertain condition is encountered) is of utmost importance for real world applications as they operate in dynamic environments.
机译:调度旨在以一定的方式分配资源,以在一段时间内执行一组任务,以使某些性能目标(例如,流动时间,拖延时间,迟到性和延展性)最小化。如今,制造商面临着缩短产品生命周期,定制产品和改变客户需求模式的挑战。由于市场上的激烈竞争,有效的调度现在已成为制造企业成长和生存的重要问题。为了在当前的竞争环境中保持竞争力,制造企业必须在同时优化性能指标(例如工期,生产时间和拖延时间)的基础上改善进度。从业务运营的角度来看,所有计划标准都很重要,因此至关重要的是同时优化所有目标而不是单个目标。对于制造公司来说,提高生产计划系统的性能也很重要,该系统可以解决内部不确定性,例如机器故障,工具故障和加工时间的变化。时间表必须在承诺的最后期限之前完成,否则可能会导致商誉严重损失。通常,由于诸如机器故障之类的不确定事件,有必要重新计划现有计划。对于现实世界的应用程序来说,找到可靠的时间表(在中断情况下时间表性能不会变坏)或灵活的时间表(在遇到不确定的条件后经过一定程度的修改后有望良好执行的时间表)的问题对于现实世界中的应用而言至关重要。 。

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    Singh Manas Ranjan;

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  • 年度 2014
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