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Internet of Things (IoT)-Enabled Elderly Fall Verification Exploiting Temporal Inference Models in Smart Homes

机译:启用物联网(IoT)的老年人跌倒验证在智能家居中利用时间推断模型

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摘要

Everyday life of the elderly and impaired population living in smart homes is challenging because of possible accidents that may occur due to daily activities. In such activities, persons often lean over (to reach something) and, if they not cautious, are prone to falling. To identify fall incidents, which could stochastically cause serious injuries or even death, we propose specific temporal inference models; namely, CM-I and CM-II. These models can infer a fall incident based on classification methods by exploiting wearable Internet of Things (IoT) altimeter sensors adopted by seniors. We analyzed real and synthetic data of fall and lean over incidents to test the proposed models. The results are promising for incorporating such inference models to assist healthcare for fall verification of seniors in smart homes. Specifically, the CM-II model achieved a prediction accuracy of 0.98, which is the highest accuracy when compared to other models in the literature under the McNemar’s test criterion. These models could be incorporated in wearable IoT devices to provide early warning and prediction of fall incidents to clinical doctors.
机译:由于日常活动可能发生事故,老年人和智障家庭中的残疾人的日常生活充满挑战。在这样的活动中,人们经常俯身(伸手拿东西),如果不谨慎的话,容易跌倒。为了确定可能随机造成严重伤害甚至死亡的跌倒事件,我们提出了具体的时间推断模型。即CM-I和CM-II。这些模型可以通过利用老年人采用的可穿戴式物联网(IoT)高度计传感器,基于分类方法推断跌倒事件。我们分析了跌倒和倾斜事件的真实和综合数据,以测试所提出的模型。该结果有望纳入此类推理模型,以帮助医疗保健部门对智能家居中的老年人进行秋季验证。具体来说,CM-II模型的预测精度为0.98,与文献中根据McNemar的测试标准的其他模型相比,这是最高的精度。这些模型可以并入可穿戴式物联网设备中,以向临床医生提供跌倒事件的预警和预测。

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