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An Effective Scheme of a Depth Sensor Set Up for a Real-Time Ergonomics Assessment by the Gesture Confidence Level

机译:深度传感器的有效方案设置了姿态置信水平的实时人体工程学评估

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Ergonomics assessment of human body movement demands a comprehensive and systematic data collection. The easy-to-use self-report (e.g. questionnaires, checklist, interview) and the observational technique (e.g. pose rating) are the commonly practiced techniques. However, these methods suffer from a high bias across different respondents and observers. Recently, the direct measurement technique by utilizing a depth sensor equipped with a modelling software is the alternative tool to facilitate a real-time digital human modelling. It gathers the 3-D human motion data with real-time ergonomics analysis and intervention features. This study aims to obtain the effective sensor setup by examining its parameters (object-to-sensor distance, horizontal field of view (FOV), and light intensity) to reach the acceptable gesture confidence level using a Kinect SDK V2.0. The standing position with a hand overhead was selected as the investigated gestures. The result showed that distance and horizontal FOV were statistically significant parameters. Thus, it proposes to place the sensor within 2 or 3 m away from the investigated object and to limit the horizontal FOV to 0 or 10°. Eventually, this proposal could be set as the reference in setting up a direct measurement studio for acquiring the human body movement data.
机译:人体工程学评估人体运动要求全面和系统的数据收集。易于使用的自我报告(例如问卷,清单,面试)和观察技术(例如姿势评级)是常用的技术。然而,这些方法遭受不同受访者和观察者的高偏见。最近,通过利用配备有建模软件的深度传感器的直接测量技术是促进实时数字人类建模的替代工具。它通过实时符合人体工程学分析和干预特征来聚集3-D人类运动数据。本研究旨在通过检查其参数(对象到传感器距离,水平视野(FOV)和光强度)来获得有效的传感器设置,以通过Kinect SDK V2.0达到可接受的手势置信水平。选择具有手开销的站立位置作为调查的手势。结果表明,距离和水平FOV是统计上显着的参数。因此,提出将传感器距离所研究的对象之外的2或3米,并将水平FOV限制为0或10°。最终,可以将该提案设置为参考设置用于获取人体运动数据的直接测量工作室。

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