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A Combined Fuzzy Goal Programming and Big-Bang Big-Crunch Algorithm for Workforce Optimisation with Facility Layout Consideration

机译:考虑设施布局的劳动力优化组合模糊目标规划和大爆炸算法

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Small scale enterprises constitute an important subset of manufacturing economy and the contribution of facility redesign in bridging the performance gaps in small-scale enterprises is necessary for enterprise growth and stability. In this paper, a bi-objective programming-based facility layout design problem is formulated. We minimise workforce costs and maximise efficiency improvement in a layout. We utilised fuzzy goal programming and big-bang big-crunch algorithm in generating a Pareto solution. The model was tested using a small-scale sachet water production enterprise data. Increase in finished goods area was 66.55 % while reduction in total annual distance travelled in the facility was 48.22 % when the proposed layout was compared with existing one. Reduction in annual cost of labour was 16.2 %. The possibility of using work-centres with high number of interrelationship was confirmed using quality function deployment and Hurwicz criterion. The optimal workforce size was found to be 14 workers against the existing workforce strength of 18 workers. The study provides a framework upon which small-scale sachet water production factories can be designed for optimum performance. (27 views)
机译:小型企业是制造业经济的重要子集,设施的重新设计对于弥合小型企业的绩效差距做出的贡献对于企业的成长和稳定是必要的。本文提出了一种基于双目标规划的设施布局设计问题。我们将劳动力成本降至最低,并最大程度地提高布局效率。在生成帕累托解决方案时,我们利用了模糊目标规划和大爆炸算法。该模型已使用小型香包水生产企业数据进行了测试。将建议的布局与现有布局进行比较时,成品面积的增加为66.55%,而设施中年度旅行总距离的减少为48.22%。每年的人工成本减少了16.2%。通过质量功能部署和Hurwicz准则,证实了使用具有大量相互关系的工作中心的可能性。最佳劳动力规模为14名工人,而现有的18名工人则为劳动力。该研究提供了一个框架,可以在该框架上设计小袋装水生产工厂以实现最佳性能。 (27观看次数)

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