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A GENETIC ALGORITHM APPROACH TO DESIGNING AND MODELLING OF A MULTI-FUNCTIONAL FRACTAL MANUFACTURING LAYOUT

机译:一种遗传算法设计和建模多功能分形制造布局

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A dynamic and optimal shop floor design, modelling and implementation is key to achieving successful Fractal Manufacturing System (FrMS). To build adaptive and fault-tolerant fractal layout, attention is paid to issues of shop floor planning, function layout, determination of capacity level, cell composition planning and flow distances of products. A full fledged FrMS. layout is multi-functional and is capable of producing a variety of products with minimal reconfiguration. This paper is part and a progression of an on-going project whereby Genetic Algorithm (GA) is adopted to design and model a flexible and multi-functional FrMS floor layout. GA is used in the project for modeling and simulation. The design implementation is done using MATLAB. The result is a fault tolerant configuration that self-regulates and adapts to unpredictable changes in the manufacturing environment arising from lead time reduction pressure, inventories, product customization and other challenges of a dynamic and volatile operational environment.
机译:动态和最佳的车间设计,建模和实施是实现成功分形制造系统(FRMS)的关键。为了构建适应性和容错分形布局,注意力被支付给车间规划,功能布局,能力水平的测定,电池组成规划和产品流量距离的问题。完整的FREDGED FRMS。布局是多功能的,能够产生具有最小重新配置的各种产品。本文是一部分的,采用遗传算法(GA)来设计和模型遗传算法(GA)的进展。 GA用于建模和仿真项目。设计实现是使用MATLAB完成的。结果是一种容错配置,可自行调节和适应来自铅时间减少压力,库存,产品定制等动态和挥发运营环境的其他挑战所产生的制造环境的不可预测的变化。

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