School of Engineering, Macquarie University, Sydney, NSW 2109, Australia.
Faculty of Electrical and Computer Engineering, Shahid Beheshti University, Tehran 1983969411, Iran.
Sensors (Basel). 2022 Jan 29;22(3):1059. doi: 10.3390/s22031059.
Drowning is considered amongst the top 10 causes of unintentional death, according to the World Health Organization (WHO). Therefore, anti-drowning systems that can save lives by preventing and detecting drowning are much needed. This paper proposes a robust and waterproof sensor-based device to detect distress in swimmers at varying depths and different types of water environments. The proposed device comprises four main components, including heart rate, blood oxygen level, movement, and depth sensors. Although these sensors were designed to work together to boost the system's capability as an anti-drowning device, each could operate independently. The sensors were able to determine the heart rate to an accuracy of 1 beat per minute (BPM), 1% SpO, the acceleration with adjustable sensitivities of ±2 g, ±4 g, ±8 g, and ±16 g, and the depth up to 12.8 m. The data obtained from the sensors were sent to a microcontroller that compared the input data to adjustable threshold values to detect dangerous situations. Being in hazardous situations for more than a specific time activated the alarming system. Based on the comparison made in the program and measuring the time of submersion, a message indicating drowning or safe was sent to a lifeguard to continuously monitor the swimmer' condition via Wi-Fi to an IP address reachable by a mobile phone or laptop. It is also possible to continuously monitor the sensor outputs on the device's display or the connected mobile phone or laptop. The threshold values could be adjusted based on biometric parameters such as swimming conditions (swimming pool, beach, depth, etc.) and swimmers health and conditions. The functionality of the proposed device was thoroughly tested over a wide range of parameters and under different conditions, both in air and underwater. It was demonstrated that the device could detect a range of potentially hazardous aquatic situations. This work will pave the way for developing an effective drowning sensing system that could save tens of thousands of lives across the globe every year.
根据世界卫生组织(WHO)的数据,溺水被认为是导致非故意伤害死亡的十大原因之一。因此,需要开发能够预防和检测溺水事件的防溺水系统。本文提出了一种基于传感器的鲁棒防水设备,可以检测不同水深和不同类型水环境中游泳者的溺水情况。该设备由四个主要部分组成,包括心率、血氧水平、运动和深度传感器。虽然这些传感器旨在协同工作以提高系统作为防溺水设备的能力,但每个传感器都可以独立运行。传感器能够以 1 次/分钟(BPM)的精度测量心率,1%的 SpO,加速度的可调灵敏度为±2g、±4g、±8g 和±16g,深度可达 12.8m。传感器获取的数据被发送到微控制器,微控制器将输入数据与可调阈值进行比较,以检测危险情况。处于危险情况超过特定时间会激活报警系统。根据程序中的比较,并测量淹没时间,一条指示溺水或安全的消息被发送给救生员,通过 Wi-Fi 持续监控游泳者的状态,可通过移动电话或笔记本电脑访问 IP 地址。也可以在设备显示屏或连接的移动电话或笔记本电脑上持续监控传感器输出。阈值可以根据生物特征参数(如游泳条件(游泳池、海滩、深度等)和游泳者的健康状况)进行调整。该设备的功能在广泛的参数范围内和不同条件下(包括空气和水下)进行了全面测试。结果表明,该设备可以检测到一系列潜在的危险水生情况。这项工作将为开发一种有效的溺水感应系统铺平道路,每年可以挽救全球数以万计的生命。