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UMOISP: Usage Mode and Orientation Invariant Smartphone Pedometer

机译:UMOISP:使用模式和方向不变的智能手机计步器

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摘要

Currently available pedometer applications on smartphones use either accelerometer or gyroscope sensors to calculate the number of steps walked. The main challenge with such individual sensor based approaches is that the accuracy can be impaired due to overlap in patterns when the phone is held in different modes, namely, hand (with and without swinging) and shirt pocket or pant pocket. This paper proposes a novel approach of pedometer implementation by combining both accelerometer and gyroscope sensors. By combining these two sensors and deriving features from the raw data, the proposed system can estimate step counts more accurately in all the smartphone usage modes. The proposed pedometer is also invariant to the orientation of the smartphone in each of the usage modes. This paper also proposes a novel magnetometer-based random motion detection algorithm, which can mitigate false step counts caused by random motions during phone handling. The performance of the proposed system is tested with different users across various walking conditions, and the results show an overall step count accuracy of 98.73% across all the smartphone usage modes.
机译:智能手机上当前可用的计步器应用程序使用加速度计或陀螺仪传感器来计算步数。这种基于传感器的单独方法的主要挑战在于,当手机以不同的模式(即手(有或没有摆动)和衬衫口袋或裤子口袋)握持时,由于图案的重叠会导致准确性下降。通过结合加速度计和陀螺仪传感器,本文提出了一种计步器实现的新方法。通过组合这两个传感器并从原始数据中得出特征,所提出的系统可以在所有智能手机使用模式下更准确地估算步数。所提出的计步器在每种使用模式下也不会改变智能手机的方向。本文还提出了一种新颖的基于磁力计的随机运动检测算法,该算法可以减轻在电话处理过程中由随机运动引起的错误步数。在不同的步行条件下,针对不同的用户测试了所提出系统的性能,结果表明,在所有智能手机使用模式下,总步数准确性为98.73%。

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