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Simulation-Based Optimization Methodology for a Manual Material Handling Task Design That Maximizes Productivity While Considering Ergonomic Constraints

机译:人工物料搬运任务设计的基于仿真的优化方法,可在考虑人体工程学约束的同时最大化生产率

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摘要

Design of workplaces that include human-machine systems and manual material handling should consider both the productivity of workers and the risk of injury. In this study, a simulation-based optimization methodology for a manual material handling task design was developed. A new formulation of the optimization problem is presented, whose objective is to maximize worker productivity and at the same time not to exceed ergonomic thresholds (which represent injury-risk measures). The workplace and work process were simulated using digital human modeling software (Jack), and the best design was found using a genetic algorithm. The results show that the new formulation of the optimization problem improved the predicted productivity by 105%, compared to the formulation used in previous studies that used a multi-objective function. Meanwhile, the risk of injury did not exceed ergonomic thresholds.
机译:包括人机系统和人工物料搬运在内的工作场所的设计应同时考虑工人的生产率和受伤风险。在这项研究中,为人工物料搬运任务设计开发了基于仿真的优化方法。提出了一种优化问题的新公式,其目的是最大程度地提高工人的生产率,同时又不超过人体工程学阈值(代表伤害风险的措施)。使用数字人体建模软件(Jack)对工作场所和工作过程进行了仿真,并使用遗传算法找到了最佳设计。结果表明,与以前的研究中使用多目标函数的公式相比,优化问题的新公式将预测生产率提高了105%。同时,受伤风险未超过人体工程学阈值。

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