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A hybrid multi-objective based approach for sustainable process plan generation in a reconfigurable manufacturing environment

机译:在可重配置制造环境中基于混合多目标的可持续过程计划生成方法

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Nowadays, in a hotly competitive manufacturing environment, one of the main challenges for companies is to minimize their costs of production and to be environmentally benign simultaneously. One of the answers lies in the optimal utilization of energy by manufacturing processes. In this paper, we attempt to obtain a partially “sustainable” reconfigurable manufacturing system, by considering the greenhouse gases emission (GHG) as a criterion in addition to the traditional two criteria, respectively, cost and time. In order to do so, we propose a hybrid multi-objective approach, combining the strengths of MOILP `Multi-Objective Integer Linear Programming' and the evolutionary algorithm AMOSA `Archived Multi-Objective Simulated-Annealing' to solve the process plan generation prob- lem of an RMS. More specifically, three criteria are considered, respectively, the total production cost, the completion time and the amount of GHG emitted during the product manufacturing. To illustrate the applicability of the developed approach, a simple example is presented and the numerical results analyzed.
机译:如今,在竞争激烈的制造环境中,公司面临的主要挑战之一是最大程度地降低生产成本并同时实现环境友好。答案之一在于制造过程对能源的最佳利用。在本文中,我们尝试通过将温室气体排放(GHG)视为除传统的两个标准(分别为成本和时间)之外的标准,从而获得部分“可持续”的可重构制造系统。为了做到这一点,我们提出了一种混合多目标方法,结合了MOILP“多目标整数线性规划”的优势和进化算法AMOSA“已归档多目标模拟退火”来解决工艺计划生成问题。 RMS的极限。更具体地说,考虑了三个标准,分别是总生产成本,完成时间和产品制造过程中排放的温室气体量。为了说明所开发方法的适用性,给出了一个简单的例子并分析了数值结果。

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