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A feasibility study using simulation-based optimization and Taguchi experimental design method for material handling - transfer system in the automobile industry

机译:基于仿真的优化和田口实验设计方法在汽车工业物料输送系统中的可行性研究

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摘要

Nowadays, so as to adapt to the global market, where competition is getting tougher, firms producing through the modern production approach need to bring not the only performance of the system designed both during the research and development phase and the production phase but also the performance of the product to be developed as well as the process to be improved to the highest level. The Taguchi method is an experimental design technique seeking to minimize the effect of uncontrollable factors, using orthogonal arrays. It can also be designed as a set of plans showing the way data are collected through experiments. Experiments are carried out using factors defined at different levels and a solution model generated in ARENA 3.0 program using SIMAN, which is a simulation language. Many experimental investigations reveal that the speed and capacity of automated-guided vehicle, the capacities of local depots, and the mean time between shipping from the main depot are the major influential parameters that affect the performance criteria of the storage system. For the evaluation of experiment results and effects of related factors, variance analysis and signaloise ratio are used and the experiments are carried out in MINITAB15 according to Taguchi L16 scheme. The purpose of this study is to prove that experimental design is an utilizable method not only for product development and process improvement but it can also be used effectively in the design of material handling-transfer systems and performance optimization of automation technologies, which are to be integrated to the firms.
机译:如今,为了适应竞争日趋激烈的全球市场,通过现代生产方法进行生产的公司不仅需要在研发阶段和生产阶段都带来系统设计的性能,而且还要带来性能要开发的产品以及要改进到最高水平的过程。 Taguchi方法是一种实验设计技术,旨在使用正交阵列来最大程度地减小不可控因素的影响。也可以将其设计为一组计划,以显示通过实验收集数据的方式。实验是使用在不同级别定义的因素以及使用模拟语言SIMAN在ARENA 3.0程序中生成的解决方案模型进行的。许多实验研究表明,自动导引车的速度和容量,本地仓库的容量以及从主仓库发货的平均时间是影响存储系统性能标准的主要影响参数。为了评估实验结果和相关因素的影响,使用了方差分析和信噪比,并根据田口L16方案在MINITAB15中进行了实验。这项研究的目的是证明实验设计不仅是一种可用于产品开发和过程改进的有用方法,而且还可以有效地用于物料搬运传输系统的设计和自动化技术的性能优化,这将是未来的发展方向。整合到公司。

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