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A novel two-stage framework for reducing ergonomic risks of a mixed-model parallel U-shaped assembly-line

机译:一种用于减少混合模型平行U形装配线的人体工程学风险的新型两级框架

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Considering ergonomic factors in assembly line balancing problems can significantly improve human ergonomic conditions. In this study, a two-stage framework is developed to balance a mixed-model parallel U-shaped assembly line by considering ergonomic risks. In the first stage, according to various ergonomic standards and using the best-worst method and ELECTRE TRI, ergonomic risks of each task are identified and each task is classified into hard, normal, or easy class. In the second stage, a mathematical model of the problem is developed by considering a new objective function to level the number of tasks of each class between stations. This objective ensures that the tasks of each class are distributed equally among stations, resulting in having a roughly equal number of hard, normal, and easy tasks in each station. To solve the problem, a constraint programming model and a heuristic algorithm are developed. Numerical results show that the proposed objective function can level ergonomic risks well. The performance of the proposed solution approaches is examined against six different metaheuristic algorithms. Numerical results indicate the superiority of the constraint programming model for small and medium-size problems and that of the heuristic algorithm for large-size problems.
机译:考虑到装配线平衡问题的人体工程学因素可以显着改善人体工程学条件。在这项研究中,开发了一种两级框架,通过考虑符合人体工程学风险来平衡混合模型平行U形装配线。在第一阶段,根据各种符合人体工程学标准,并使用最佳方法和电器三维,每个任务的人体工程学风险都被识别,每个任务分为硬,正常或轻松的班级。在第二阶段,通过考虑新的目标函数来级别在站之间的每个类的任务数量来开发问题的数学模型。此目标可确保每个类的任务在站之间同样分布,导致在每个站中具有大致相等的硬,正常和简单的任务。为了解决问题,开发了一个约束编程模型和启发式算法。数值结果表明,拟议的客观函数可以很好地融合符合人体工程学的风险。检查提出的解决方案方法的性能针对六种不同的成群质算法检查。数值结果表明,中小型问题的约束规划模型的优越性及其大尺寸问题的启发式算法。

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