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Detection of Human Impacts by an Adaptive Energy-Based Anisotropic Algorithm

机译:基于自适应能量各向异性算法的人类影响检测

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摘要

Boosted by health consequences and the cost of falls in the elderly, this work develops and tests a novel algorithm and methodology to detect human impacts that will act as triggers of a two-layer fall monitor. The two main requirements demanded by socio-healthcare providers—unobtrusiveness and reliability—defined the objectives of the research. We have demonstrated that a very agile, adaptive, and energy-based anisotropic algorithm can provide 100% sensitivity and 78% specificity, in the task of detecting impacts under demanding laboratory conditions. The algorithm works together with an unsupervised real-time learning technique that addresses the adaptive capability, and this is also presented. The work demonstrates the robustness and reliability of our new algorithm, which will be the basis of a smart falling monitor. This is shown in this work to underline the relevance of the results.
机译:受到健康后果和老年人跌倒的影响,这项工作开发并测试了一种新颖的算法和方法,可以检测到人类的影响,从而触发两层跌倒监控器。社会医疗保健提供者所要求的两个主要要求(不引人注目和可靠)定义了研究的目标。我们已经证明,在要求苛刻的实验室条件下检测影响的任务中,一种非常敏捷,自适应且基于能量的各向异性算法可以提供100%的灵敏度和78%的特异性。该算法与解决自适应能力的无监督实时学习技术一起工作,并且对此进行了介绍。这项工作演示了我们新算法的鲁棒性和可靠性,这将成为智能跌落监控器的基础。这项工作表明了这一点,以强调结果的相关性。

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