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Analysis of Human Weight Perception for Sudden Weight Changes during Lifting Task Using a Force Display Device

机译:使用力显示装置在提升任务期间对突发重量变化的人类重量感知分析

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The main purpose of this study is to apply the mechanism of human weight perception to multimedia applications. When a start and the goal points are given in the human motion, the velocity profile has a unimodal profile including the acceleration and deceleration zones. In such case, it is widely said that the motion control becomes more accurate in the deceleration zone for the final approach. Hence, it is assumed that the sensing ability also improves. This study challenges to confirm the hypothesis with weight stimuli generated by a force display device. As a preliminary experiment, this study confirms that our device enables the evaluation of human perception by tracing Weber''s experiment in virtual reality; the obtained difference threshold (DL: Differenz Limen) almost agrees with the previous results. The difference threshold is a very important factor, which means perceptual threshold for weight changes. We further attempt to clarify the mechanism of the human weight perception for sudden weight changes during the lifting process. Based on individual lifting profiles, this study suddenly changes the load force in the two zones, and examines the difference thresholds of each subject. The results demonstrate that the human weight perception tends to become more sensitive in the deceleration zone during the lifting process. These results also imply the effectiveness of force display devices for physical experiments.
机译:本研究的主要目的是将人类重量感知的机制应用于多媒体应用。当在人体运动中给出开始和目标点时,速度分布具有包括加速度和减速区域的单峰轮廓。在这种情况下,广泛地说,用于最终方法的减速区中的运动控制变得更准确。因此,假设感测能力也提高。这项研究挑战确认了力显示装置产生的重量刺激的假设。作为初步实验,本研究证实,我们的设备通过追踪Weber的虚拟现实的实验来实现人类感知;获得的差异阈值(DL:Diglerz Limen)几乎与以前的结果同意。差异阈值是一个非常重要的因素,这意味着重量变化的感知阈值。我们进一步试图阐明在提升过程中对突然的重量变化进行人类重量感知的机制。基于单个提升概况,该研究突然改变了两个区域中的负载力,并检查每个受试者的差值阈值。结果表明,在提升过程中,人类重量感知趋于在减速区中变得更敏感。这些结果暗示了力显示装置的有效性进行物理实验。

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