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首页> 外文期刊>International Journal of Industrial Ergonomics >A theoretical framework for evaluating mental workload resources in human systems design for manufacturing operations
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A theoretical framework for evaluating mental workload resources in human systems design for manufacturing operations

机译:用于评估制造运营人力系统设计中精神工作量资源的理论框架

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摘要

As the nature of manufacturing work is changing, requiring more cognitive demands, there is a need to develop system models for measuring and predicting human performance in repetitive task operations. This paper presents a theoretical framework, which provides a systematic approach for measuring mental workload using a combination of analytical and empirical techniques: human performance modeling with a computer simulation and mathematical modeling, along with physiological, subjective and performance measures. For this study, the Air Force MATE, which is a re-development of the NASA simulation tool, was used to model multitasking in a controlled environment to validate the theoretical framework. The independent variable of task complexity was measured, in the modeling of resource demands for a cleaning-inspection process and a final inspection process, using three dependent variables (subjective, physiological and performance measures) with a total of four responses (NASA-TLX, Workload Profile, fixation duration and human error probability). The results indicate no significant difference among the response variables for each task complexity level, indicating the model accurately represents the operator's workload. Additional analysis shows accurate predication from the model in analyzing workload peaks.
机译:随着制造工作的性质正在发生变化,需要更多的认知需求,需要开发系统模型,以便在重复任务操作中测量和预测人类性能。本文提出了一种理论框架,它提供了一种使用分析和经验技术的组合测量心理工作量的系统方法:用计算机仿真和数学建模的人类性能建模,以及生理,主观和性能措施。对于这项研究,空军伴侣是NASA仿真工具的重新开发,用于在受控环境中模拟多任务处理,以验证理论框架。测量任务复杂性的独立变量,在资源需求的建模中,使用三个依赖变量(主观,生理和性能措施),共有四个响应(NASA-TLX,工作负载概况,固定持续时间和人为错误概率)。结果表明每个任务复杂性级别的响应变量之间没有显着差异,指示模型准确表示操作员的工作负载。另外的分析显示了在分析工作负荷峰值时从模型的准确预测。

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