Falls, highly common in the constantly increasing global aging population, can have a variety of negative effects on their health, well-being, and quality of life, including restricting their capabilities to conduct Activities of Daily Living (ADLs), which are crucial for one's sustenance. Timely assistance during falls is highly necessary, which involves tracking the indoor location of the elderly during their diverse navigational patterns associated with ADLs to detect the precise location of a fall. With the decreasing caregiver population on a global scale, it is important that the future of intelligent living environments can detect falls during ADLs while being able to track the indoor location of the elderly in the real world. To address these challenges, this work proposes a cost-effective and simplistic design paradigm for an Ambient Assisted Living system that can capture multimodal components of user behaviors during ADLs that are necessary for performing fall detection and indoor localization in a simultaneous manner in the real world. Proof of concept results from real-world experiments are presented to uphold the effective working of the system. The findings from two comparison studies with prior works in this field are also presented to uphold the novelty of this work. The first comparison study shows how the proposed system outperforms prior works in the areas of indoor localization and fall detection in terms of the effectiveness of its software design and hardware design. The second comparison study shows that the cost for the development of this system is the least as compared to prior works in these fields, which involved real-world development of the underlining systems, thereby upholding its cost-effective nature.
翻译:秋季是全球不断增长的老龄化人口中非常常见的,对老年人的健康、福祉和生活质量产生各种不利影响,包括限制他们开展日常生活活动的能力,这对于维持生计至关重要。秋季期间的及时援助非常必要,包括跟踪老年人在室内的位置,因为与老年生活活动有关的导航模式各不相同,可以同时探测坠落的确切位置。随着全球范围护理者人数不断减少,明智生活环境的未来必须能够在适应水平期间发现跌落,同时能够跟踪老年人在现实世界中的室内位置。为了应对这些挑战,这项工作提出了一个具有成本效益和简单化的设计模式,用以建立一个适合常住的辅助生活系统,从而能够捕捉老年人在适应水平下的各种航行模式,从而在现实世界中同时探测跌落的确切位置。现实世界实验的理论结果证明,维持系统的有效运行。与本领域前两项比较研究的结果,也用来维持本领域新颖工作的最新成本。因此,第一次比较研究表明,在前期设计过程中,系统的拟议设计是如何在实际发展过程中进行最慢的成本。