Smart Health Monitoring with Power-Aware IoT Using a Wireless Body Area Network

Mr. Saurabh R. Chaudhari, Prof. Gajanan D. Nagoshe
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Abstract

Smart health monitoring systems have become increasingly popular in recent years due to the growth of the Internet of Things (IoT) technology and its applications in healthcare. This project proposes an IoT-based smart health monitoring system that utilises an ESP32 Microcontroller, MAX30100 Pulse Oximeter Heart Rate Sensor Module, MLX90614 ESF Non-Contact Human Body Infrared Temperature Measurement Module, LCD 16*2, 3.7v 2000mAh Lithium Battery, TP4056 1A Li-Ion Lithium Battery charging Module, and some buttons. The system is designed to monitor the user's heart rate, blood oxygen level, and body temperature in real-time and display the readings on an LCD screen as well as an IoT web page. The project aims to provide an affordable, portable, and user-friendly smart health monitoring solution that can be used at home, in hospitals, or other healthcare settings. The project methodology involved a combination of hardware and software components, including circuit design and programming using the Arduino IDE. The system was tested and evaluated for its performance, accuracy, and usability using a sample population. The results showed that the system was effective in monitoring the user's vital signs and displaying the readings in real-time. The system was found to be accurate and reliable, with a high level of user satisfaction and ease of use. Overall, the IoT-based smart health monitoring system proposed in this project has significant implications for healthcare, particularly in terms of remote monitoring, telemedicine, and personalised healthcare. The system has the potential to improve patient outcomes, reduce healthcare costs, and increase access to healthcare services. The project also highlights the potential of IoT technology in healthcare and the need for further research and development in this area
利用无线体域网络的功率感知物联网进行智能健康监测
近年来,随着物联网(IoT)技术的发展及其在医疗保健领域的应用,智能健康监测系统越来越受欢迎。本项目提出了一种基于物联网的智能健康监测系统,该系统采用了 ESP32 微控制器、MAX30100 脉搏血氧仪心率传感器模块、MLX90614 ESF 非接触式人体红外温度测量模块、16*2 LCD、3.7v 2000mAh 锂电池、TP4056 1A 锂电池充电模块和一些按钮。该系统旨在实时监测用户的心率、血氧水平和体温,并将读数显示在液晶屏和物联网网页上。该项目旨在提供一种经济实惠、便携、用户友好的智能健康监测解决方案,可用于家庭、医院或其他医疗机构。项目方法涉及硬件和软件组件的组合,包括电路设计和使用 Arduino IDE 进行编程。该系统的性能、准确性和可用性通过样本人群进行了测试和评估。结果表明,该系统能有效监测用户的生命体征并实时显示读数。总体而言,本项目提出的基于物联网的智能健康监测系统对医疗保健具有重大意义,尤其是在远程监测、远程医疗和个性化医疗保健方面。该系统有可能改善患者的治疗效果,降低医疗成本,增加医疗服务的可及性。该项目还凸显了物联网技术在医疗保健领域的潜力,以及在该领域进一步研究和开发的必要性。
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