Biomedical Engineering Laboratory, Biomedical Engineering Department, Abou Bekr Belkaid University, Tlemcen 13000, Algeria.
Laboratory of the IEMN, Opto-Acousto-Electronic Department, University of Valenciennes and Hainaut-Cambrésis, Valenciennes 59313, France.
Rev Sci Instrum. 2020 Mar 1;91(3):035110. doi: 10.1063/1.5098308.
Nowadays, surveillance systems have evolved significantly; hence, in order to meet the specific needs of the health sector and to monitor the patients' health conditions, intelligent systems have been proposed. These innovations represent a primordial role in road safety, which reduce the risk of traffic accidents. This paper describes an intelligent system design for remote monitoring (tele-monitoring) of a driver's health condition in real time. The measurement using new hardware and software devices is made possible through the contact between the driver contact and an intelligent steering wheel, which is coupled either to an integrated monitor or to a bluetooth link with a local Android smartphone. The driver's heart rate is calculated through the continuous collection of the electrocardiographic signal as well as the blood oxygen saturation SpO by using the photoplethysmographic technique. Consequently, it is necessary to monitor the two vital functions of the driver, cardiac and respiratory activity. This information is transmitted to a remote tele-vigilance center in the case of abnormalities in these functions under the transmission control protocol/internet protocol involving a 4G/3G connection. The application is associated with the system that triggers high and low alarms locally and remotely in the events of tachycardia, bradycardia, or cardiac arrhythmia. Furthermore, another alarm is also triggered in the event of respiratory decompensation.
如今,监控系统有了显著的发展;因此,为了满足卫生部门的特定需求并监测患者的健康状况,已经提出了智能系统。这些创新在道路安全方面发挥着重要作用,可以降低交通事故的风险。本文介绍了一种用于远程监控(远程监控)驾驶员健康状况的智能系统设计。通过驾驶员接触和智能方向盘之间的接触,可以使用新的硬件和软件设备进行测量,智能方向盘与集成显示器或与本地 Android 智能手机的蓝牙链接相连接。通过连续采集心电图信号以及使用光电容积描记术测量血氧饱和度 SpO2,可以计算驾驶员的心率。因此,有必要监测驾驶员的两个重要功能,即心脏和呼吸活动。在出现功能异常的情况下,通过涉及 4G/3G 连接的传输控制协议/互联网协议,将这些信息传输到远程远程监控中心。该应用程序与系统相关联,在发生心动过速、心动过缓或心律失常时,本地和远程触发高低报警。此外,在呼吸代偿失调的情况下也会触发另一个警报。