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User-Centric Coordinates for Applications Leveraging 3-Axis Accelerometer Data

机译:利用3轴加速度计数据的应用程序的用户中心坐标

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摘要

Mobile devices are becoming ubiquitous and, sometimes, even extensions of ourselves. These devices are growing fast in terms of delivered computational power, storage capacity, battery duration, and built-in sensors. Time and again, we see headlines advertising new unforeseen applications leveraging this power, especially the sensors, for solving diverse problems, including fall detection, user’s activity recognition, location identification, or even user authentication based on the way of walking (gait). In this paper, we focus on motion sensors and discuss how the provided data can be interpreted and transformed to better serve different purposes. We propose a method to process the data from such sensors that reduces the acquisition noise and possible artifacts, and turns the data invariant to the device’s position and the user’s movement direction. We introduce a new coordinate system referred to as user-centric, as opposed to the two most common coordinate systems used—the device and world-coordinate systems. For testing, we design and develop a user recognition system based on gait, in which the three coordinates systems are compared and discussed considering a one-versus-rest authentication setup. The results show the importance of properly pre-processing the acquired data to enable more reliable applications underpinned by mobile sensors.
机译:移动设备变得无处不在,有时甚至是我们自身的扩展。这些设备在交付的计算能力,存储容量,电池持续时间和内置传感器方面正在迅速增长。我们屡次看到头条新闻宣传利用这种功能的新的不可预见的应用程序,特别是传感器,用于解决各种问题,包括跌倒检测,用户活动识别,位置识别,甚至基于步行方式的用户认证(步态)。在本文中,我们将重点放在运动传感器上,并讨论如何解释和转换所提供的数据以更好地满足不同目的。我们提出了一种方法来处理来自此类传感器的数据,该方法可减少采集噪声和可能的伪像,并将数据不变地变为设备的位置和用户的移动方向。我们引入了一个新的坐标系,称为“以用户为中心”,这与使用的两个最常见的坐标系(设备坐标系和世界坐标系)相对。为了进行测试,我们设计和开发了一种基于步态的用户识别系统,在该系统中,考虑了单向验证身份设置,比较并讨论了三个坐标系。结果表明,正确预处理采集的数据以实现移动传感器支持的更可靠应用的重要性。

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