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Accurate Activity Recognition Using a Mobile Phone Regardless of Device Orientation and Location

机译:无论设备方向和位置如何,使用移动电话准确的活动识别

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This paper investigates two major issues in using a tri-axial accelerometer-embedded mobile phone for continuous activity monitoring, i.e. the difference in orientations and locations of the device. Two experiments with a total of ten test subjects performed six daily activities were conducted in this study: one with a device fixed on the waist in sixteen different orientations and another with three different device locations (i.e., shirt-pocket, trouser-pocket and waist) in two different device orientations. For handling with varying device orientations, a projection-based method for device coordinate system estimation has been proposed. Based on the dataset with sixteen different device orientations, the experimental results have illustrated that the proposed method is efficient for rectifying the acceleration signals into the same coordinate system, yielding significantly improved activity recognition accuracy. After signal transformation, the recognition results of signals acquired from different device locations are compared. The experimental results show that when the sensor is placed on different rigid body, different models are required for certain activities.
机译:本文调查了使用三轴加速度计嵌入式移动电话进行连续活动监测的两个主要问题,即设备的取向和位置差异。这项研究中进行了两项试验科目的两项实验,在本研究中进行了六次日常活动:一个装置,一个装置固定在腰部的腰部,在十六个不同的方向上,另一个有三个不同的设备位置(即衬衫口袋,裤子口袋和腰部)两种不同的设备方向。为了处理不同的设备方向,已经提出了一种基于投影的用于设备坐标系估计的方法。基于具有十六个不同的设备方向的数据集,实验结果表明,该方法是有效的,使加速信号将加速信号整流到相同的坐标系中,产生显着提高的活动识别精度。在信号变换之后,比较从不同设备位置获取的信号的识别结果。实验结果表明,当传感器放置在不同的刚体上时,某些活动需要不同的型号。

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