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Integrating ergonomic risks evaluation through OCRA index and balancing/sequencing decisions for mixed model stochastic asynchronous assembly lines

机译:通过OCRA索引和平衡/排序决策为混合模型随机异步装配流水线集成人体工程学风险评估

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摘要

In the paper we proposed and tested on a real industrial case, related to a company in the segment of Agricultural Equipment, an approach to design asynchronous assembly lines in compliance with ergonomic legislation. We considered the OCRA index as method for ergonomic risk assessment, as it is the preferred method indicated in international norms for detailed risk assessment related to handling of low loads at high frequency. A genetic algorithm approach able to integrate the ergonomic risks evaluation and balancing/sequencing is proposed. The approach allow designing line configurations taking into account many characteristics of the complex scenario of real industrial cases: mixed models assembly lines, stochastic task times, precedence constraints among tasks, equipment and line feeding duplication costs associated to parallel workstations. Thanks to the integration of a discrete event simulator, it is also possible to consider the effect of blocking and starvation phenomena on the effective cycle time and on worker's ergonomic load. The respect of ergonomic norms is often view by companies as an onerous obligation, being often associated to the increase of required manpower. Results show that, using the proposed approach, extra costs due to the compliance with ergonomic legislation can be very limited. This should encourage companies to adopt design methodologies able at the same time to comply with ergonomic norms and to defend their profitability. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在本文中,我们针对与农业设备领域的一家公司有关的实际工业案例提出了建议并进行了测试,这是一种符合人体工程学法规的异步装配线设计方法。我们认为OCRA指数是进行人体工程学风险评估的方法,因为它是国际规范中针对与高频低负荷处理相关的详细风险评估的首选方法。提出了一种遗传算法,可以整合人体工学风险评估和平衡/排序。该方法允许设计生产线配置时考虑到实际工业案例的复杂场景的许多特征:混合模型装配线,随机任务时间,任务之间的优先约束,设备和与并行工作站相关的生产线复制成本。由于集成了离散事件模拟器,因此还可以考虑阻塞和饥饿现象对有效周期时间和工人工效的影响。公司通常将尊重人机工程学规范视为一项艰巨的义务,通常与所需人力的增加有关。结果表明,使用建议的方法,由于符合人体工程学法规而导致的额外费用可能非常有限。这应鼓励公司采用能够同时符合人体工学规范并捍卫其盈利能力的设计方法。 (C)2017 Elsevier Ltd.保留所有权利。

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