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首页> 外文期刊>International Journal of Environmental Research and Public Health >A ZigBee-Based Location-Aware Fall Detection System for Improving Elderly Telecare
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A ZigBee-Based Location-Aware Fall Detection System for Improving Elderly Telecare

机译:基于ZigBee的位置感知跌倒检测系统,用于改善老年人远程护理

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Falls are the primary cause of accidents among the elderly and frequently cause fatal and non-fatal injuries associated with a large amount of medical costs. Fall detection using wearable wireless sensor nodes has the potential of improving elderly telecare. This investigation proposes a ZigBee-based location-aware fall detection system for elderly telecare that provides an unobstructed communication between the elderly and caregivers when falls happen. The system is based on ZigBee-based sensor networks, and the sensor node consists of a motherboard with a tri-axial accelerometer and a ZigBee module. A wireless sensor node worn on the waist continuously detects fall events and starts an indoor positioning engine as soon as a fall happens. In the fall detection scheme, this study proposes a three-phase threshold-based fall detection algorithm to detect critical and normal falls. The fall alarm can be canceled by pressing and holding the emergency fall button only when a normal fall is detected. On the other hand, there are three phases in the indoor positioning engine: path loss survey phase, Received Signal Strength Indicator (RSSI) collection phase and location calculation phase. Finally, the location of the faller will be calculated by a k-nearest neighbor algorithm with weighted RSSI. The experimental results demonstrate that the fall detection algorithm achieves 95.63% sensitivity, 73.5% specificity, 88.62% accuracy and 88.6% precision. Furthermore, the average error distance for indoor positioning is 1.15 ± 0.54 m. The proposed system successfully delivers critical information to remote telecare providers who can then immediately help a fallen person.
机译:跌倒是老年人事故的主要原因,并经常造成致命和非致命的伤害,并带来大量医疗费用。使用可穿戴无线传感器节点的跌倒检测具有改善老年人远程护理的潜力。这项调查提出了一种基于ZigBee的位置感知跌倒检测系统,用于老人远程护理,当跌倒发生时,老人和护理人员之间的通信畅通无阻。该系统基于基于ZigBee的传感器网络,并且传感器节点由具有三轴加速度计的主板和ZigBee模块组成。腰部佩戴的无线传感器节点会连续检测跌倒事件,并在跌倒时立即启动室内定位引擎。在跌倒检测方案中,本研究提出了一种基于三相阈值的跌倒检测算法来检测关键跌落和正常跌倒。仅当检测到正常跌倒时,才能通过按住紧急跌倒按钮来取消跌倒警报。另一方面,室内定位引擎分为三个阶段:路径损耗调查阶段,接收信号强度指示器(RSSI)收集阶段和位置计算阶段。最后,下落者的位置将通过具有加权RSSI的k近邻算法来计算。实验结果表明,该跌倒检测算法可达到95.63%的灵敏度,73.5%的特异性,88.62%的精度和88.6%的精度。此外,室内定位的平均误差距离为1.15±0.54 m。拟议的系统成功地将关键信息传递给远程远程医疗提供者,后者可以立即帮助下落的人。

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