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首页> 外文期刊>Journal of Scientific & Industrial Research >Simulation and Modelling of Hybrid Heuristics Distribution Algorithm for Flow Shop Scheduling Problem to Optimize Makespan in an Indian Manufacturing Industry
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Simulation and Modelling of Hybrid Heuristics Distribution Algorithm for Flow Shop Scheduling Problem to Optimize Makespan in an Indian Manufacturing Industry

机译:流动店调度问题混合启发式分配算法的仿真与建模,优化印度制造业的Makespan

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摘要

This study presents a heuristic formulation of the flow shop scheduling problem by the hybrid algorithm fitness function. The genetic algorithm is used to model the time-estimates such as makespan and completion time. This paper aims to optimize the sequence-indepaident and sequence-dependatt time-estimates. The production scheduling parameters such as permutation, non-permutation, no-wait, tardiness, and several workstations are identified from a piston manufacturing industry, in Northern India. Different machine operating parameters were collected from the piston manufacturing industry to work on reducing the makespan. The MATLAB programming in heuristics algorithm distribution function resulted in a reduction of makespan of the product by five times. The reduced completion time is 23 minutes for the piston ring product and 26 minutes in the cumulative validation of the proposed model. The cumulative optimized standard aror of 0.26; (n=3) simulate and synthesize the suggested model with its validation. The system efficiency through completion time optimization ranged from 70-82 permit in piston ring, and 63-89 patent in cumulative validation of the model has been worked out for each machine type. The data generated through system optimization helps the scientific world and entrepreneurs in the advancement of sequence-based transportation.
机译:本研究提出了混合算法健身功能的流动店调度问题的启发式制定。遗传算法用于建模诸如MakEspan和完成时间的时间估计。本文旨在优化序列 - IndePaident和序列依赖的时间估计。在印度北部的活塞制造业中识别出置换,不排列,不等待,迟到和几个工作站等生产调度参数。从活塞制造业收集不同的机器操作参数,以便在减少Makespan。启发式算法分布函数的MATLAB编程导致产品的MEPESPAN减少五次。活塞环产品的完井时间为23分钟,在累计验证的建议模型中26分钟。累积优化标准轴为0.26; (n = 3)通过验证模拟和综合建议的模型。通过完成时间优化的系统效率范围从70-82允许的活塞环允许,每台机器类型都已经为模型的累积验证中的63-89专利。通过系统优化产生的数据有助于科学的世界和企业家在基于序列的运输方面的进步。

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