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首页> 外文期刊>International Journal of Industrial Ergonomics >Establishment of overall workload assessment technique for various tasks and workplaces
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Establishment of overall workload assessment technique for various tasks and workplaces

机译:建立用于各种任务和工作场所的整体工作量评估技术

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摘要

A model for assessing workloads called overall workload level (OWL) was developed by introducing linguistic variable sets and applying the analytic hierarchy process (AHP) to estimate the external workload imposed on a human operator m man-machine systems. To do this, a five-point linguistic variable set scale was constructed and their hierarchical prioritization procedures were set up. The task and workplace variables (e.g., physical, environmental, postural, and mental job demand workloads) which can obtain the operator's perception of workload are selected as workload factors and the AHP technique is used to collect different weights. Finally, OWL is calculated using a computer-assisted system to determine the level of overall workload impinged on an operator. The OWL was implemented in an actual industrial environment from a physiological and epidemiological viewpoint to determine the validity of the model. Furthermore, the results obtained by applying OWL were compared to the results obtained by applying the overall workload (OW) of the NASA task load index (TLX). The results show that there is a close linear relationship among the physiological measurements, the severity of injury and illness rates, OW, and OWL. Thus, this approach can be used for problem identification and for solving widespread occupational workloads.
机译:通过引入语言变量集并应用层次分析法(AHP)来估计施加在人机系统上的外部工作量,开发了一种用于评估工作量的模型,称为总工作量级别(OWL)。为此,构建了一个五点语言变量集量表,并建立了它们的分层优先级排序程序。选择可以获得操作员对工作量的感知的任务和工作场所变量(例如,身体,环境,姿势和精神工作需求工作量)作为工作量因素,并使用AHP技术收集不同的权重。最后,使用计算机辅助系统来计算OWL,以确定影响操作员的总体工作量。从生理和流行病学的角度在实际的工业环境中实施OWL,以确定模型的有效性。此外,将通过应用OWL获得的结果与通过应用NASA任务负荷指数(TLX)的总体工作量(OW)获得的结果进行了比较。结果表明,生理测量值,损伤的严重程度和疾病发生率,OW和OWL之间存在密切的线性关系。因此,该方法可用于问题识别和解决广泛的职业工作量。

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