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首页> 外文期刊>Applied Ergonomics >Innovative system for real-time ergonomic feedback in industrial manufacturing
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Innovative system for real-time ergonomic feedback in industrial manufacturing

机译:工业生产中实时人体工学反馈的创新系统

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摘要

This work presents a system that permits a real-time ergonomic assessment of manual tasks in an industrial environment. First, a biomechanical model of the upper body has been developed by using inertial sensors placed at different locations on the upper body. Based on this model, a computerized RULA ergonomic assessment was implemented to permit a global risk assessment of musculoskeletal disorders in real-time. Furthermore, local scores were calculated per segment, e.g. the neck region, and gave information on the local risks for musculoskeletal disorders. Visual information was fed back to the user by using a see-through head mounted display. Additional visual highlighting and auditory warnings were provided when some predefined thresholds were exceeded. In a user study (N = 12 participants) a group with the RULA feedback was compared to a control group. Results demonstrate that the real-time ergonomic feedback significantly decreased the outcome of both globally as well as locally hazardous RULA values that are associated with increased risk for musculoskeletal disorders. Task execution time did not differ between groups. The real-time ergonomic tool introduced in this study has the potential to considerably reduce the risk of musculoskeletal disorders in industrial settings. Implications for ergonomics in manufacturing and user feedback modalities are further discussed.
机译:这项工作提出了一个系统,该系统允许对工业环境中的手动任务进行实时的人体工程学评估。首先,通过使用放置在上身不同位置的惯性传感器,开发了上身的生物力学模型。在此模型的基础上,实施了计算机化的RULA人体工学评估,可以实时进行肌肉骨骼疾病的整体风险评估。此外,按每个细分计算本地得分,例如颈部区域,并提供有关肌肉骨骼疾病局部风险的信息。视觉信息通过使用透视头戴式显示器反馈给用户。当超出一些预定义的阈值时,将提供其他视觉突出显示和听觉警告。在一项用户研究(N = 12名参与者)中,将具有RULA反馈的组与对照组进行了比较。结果表明,实时的人体工程学反馈显着降低了与骨骼肌肉疾病风险增加相关的全局和局部危险RULA值。各组之间的任务执行时间没有差异。这项研究中引入的实时人体工学工具具有在工业环境中大大降低肌肉骨骼疾病风险的潜力。人体工程学在制造和用户反馈方式中的意义将进一步讨论。

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