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A novel micro-vibration sensor for activity recognition: Potential and limitations

机译:用于活动识别的新型微振动传感器:潜力和局限性

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This paper researches the potential of a novel ball switch as a wearable vibration sensor for activity recognition. The ball switch is available as a commercial, off-the-shelf sensor and is unique among such sensors due to its miniaturized design and the low mass of the ball. We present a detailed analysis of the physical properties of the sensor as well as a recommendation for circuit design, sampling method and a feature generation algorithm for activity recognition. The analysis reveals that it is sensitive to vibrations between 1.5 kHz and 8 kHz, where the acceleration sensor is responsive below 1.6 kHz. Furthermore, the ball switch is substantially cheaper (3x), smaller (2x) and uses less power (50x) than an accelerometer based system, but delivers less information. We also present the results of a case study in activity recognition done in parallel with an acceleration sensor using 5 subjects and 8 different activities. It shows that the ball switch can increase recognition rates when added to an accelerometer-based system, demonstrating that it can sample activity-pertinent information which an accelerometer can not. We conclude that this ball switch can be used to recognize high-frequency activity components and effectively improve recognition rates while representing a very low cost sensor in terms of price, device size and power consumption.
机译:本文研究了新型球形开关作为可穿戴式振动传感器进行活动识别的潜力。滚珠开关可作为现成的商用传感器使用,由于其微型化设计和低质量的球,因此在此类传感器中是独一无二的。我们对传感器的物理特性进行了详细分析,并提出了电路设计,采样方法和用于活动识别的特征生成算法的建议。分析表明,它对1.5 kHz至8 kHz之间的振动敏感,其中加速度传感器在1.6 kHz以下响应。此外,与基于加速度计的系统相比,球形开关价格便宜得多(3倍),更小(2倍),并且使用的功率更少(50倍),但是传递的信息更少。我们还介绍了使用5个主题和8个不同活动的加速度传感器并行进行的活动识别案例研究的结果。它表明,将球形开关添加到基于加速度计的系统中后,可以提高识别率,这表明它可以采样与加速度计不相关的活动相关信息。我们得出的结论是,该球形开关可用于识别高频活动成分并有效提高识别率,同时在价格,设备尺寸和功耗方面代表了一种非常低成本的传感器。

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