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Optimal Placement of Accelerometers for the Detection of Everyday Activities

机译:加速度计的最佳位置以检测日常活动

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This article describes an investigation to determine the optimal placement of accelerometers for the purpose of detecting a range of everyday activities. The paper investigates the effect of combining data from accelerometers placed at various bodily locations on the accuracy of activity detection. Eight healthy males participated within the study. Data were collected from six wireless tri-axial accelerometers placed at the chest, wrist, lower back, hip, thigh and foot. Activities included walking, running on a motorized treadmill, sitting, lying, standing and walking up and down stairs. The Support Vector Machine provided the most accurate detection of activities of all the machine learning algorithms investigated. Although data from all locations provided similar levels of accuracy, the hip was the best single location to record data for activity detection using a Support Vector Machine, providing small but significantly better accuracy than the other investigated locations. Increasing the number of sensing locations from one to two or more statistically increased the accuracy of classification. There was no significant difference in accuracy when using two or more sensors. It was noted, however, that the difference in activity detection using single or multiple accelerometers may be more pronounced when trying to detect finer grain activities. Future work shall therefore investigate the effects of accelerometer placement on a larger range of these activities.
机译:本文介绍了一项调查,以确定加速度计的最佳位置,以检测一系列日常活动。本文研究了将来自放置在身体各个位置的加速度计的数据进行合并对活动检测准确性的影响。八名健康男性参加了研究。数据是从放置在胸部,手腕,下背部,臀部,大腿和脚部的六个无线三轴加速度计收集的。活动包括步行,在电动跑步机上跑步,坐着,躺着,站立和上下楼梯。支持向量机提供了所有调查的机器学习算法中最准确的活动检测。尽管来自所有位置的数据都提供了相似的准确度,但是髋关节是记录数据以使用支持向量机进行活动检测的最佳单个位置,其准确性比其他被调查的位置小,但好得多。统计上将传感位置的数量从一增加到两个或更多会增加分类的准确性。使用两个或多个传感器时,精度没有显着差异。但是,应注意的是,在尝试检测更细的谷物活动时,使用单个或多个加速度计进行活动检测的差异可能会更加明显。因此,未来的工作将调查加速度计放置对这些活动的更大范围的影响。

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