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A life cycle engineering approach to development of flexible manufacturing systems

机译:开发柔性制造系统的生命周期工程方法

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Life cycle engineering, or integrated product and process development (IPPD), has gained much attention recently due to its significant applications to various products and systems in industry. The authors' previous work introduced an IPPD methodology as a systems approach to competitive and environmentally conscious product and process development. Different product development issues are formally described as constrained optimization problems and solved using a life locus tree. The paper extends the methodology to the development of manufacturing systems. In order to increase its modeling capability and decision accuracy, a time variable is introduced into the methodology. The execution duration of processes and their time-varying characteristics are considered. The methodology is then applied to the life cycle development of a flexible manufacturing system (FMS). FMS machine selection and decisions along its life are optimally made. The latter includes how many times each FMS component should be upgraded and which end-of-life option it should take. Life cycle decision making is based on cost, benefit, and environmental impact of an FMS. The proposed approach provides a new way to develop cost-effective, high-quality, and environmentally conscious FMS.
机译:生命周期工程或集成的产品和过程开发(IPPD),由于其在工业中各种产品和系统上的重要应用,最近引起了广泛关注。作者之前的工作介绍了IPPD方法,将其作为一种系统方法,用于竞争性和环保产品和工艺开发。将不同的产品开发问题正式描述为约束优化问题,并使用生命轨迹树进行解决。本文将方法论扩展到制造系统的开发。为了提高其建模能力和决策准确性,将时间变量引入该方法中。考虑了进程的执行持续时间及其时变特性。然后将该方法应用于柔性制造系统(FMS)的生命周期开发。 FMS机器的选择和生命周期的决策是最佳的。后者包括每个FMS组件应升级多少次以及应采用哪种寿命终止选项。生命周期决策基于FMS的成本,收益和环境影响。提议的方法为开发具有成本效益,高质量和环保意识的FMS提供了新的途径。

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