Industry 5.0 Safety and Health Employee Surveillance

Author:

Chandra B Ravi1,Indu P2,Hemalatha G2,Lakshmi P Jhansi2

Affiliation:

1. G.Pullaiah College of Engineering and Technology

2. G. Pullaiah College Of Engineering and Technology

Abstract

Abstract

Using NodeMCU ESP8266, a device called Heart Pulse and Temperature of the Body Monitoring can measure both heartbeat and body temperature. On the LCD that is attached to the sensor, the measurements in BPM (Beats Per Minute) will be shown. Along with BPM values, the body temperate will be shown on the serial monitor. With the advancement of technology, this project makes use of the NodeMCU ESP8266 can digitally detect both heart rate and body temperature. The key benefit of using NodeMCU ESP8266 is that it can affect the environment by driving electric motors, light bulbs, and other actuators while also detecting itself by gathering data from a variety of sensors. The board's microcontroller is programmed using the NodeMCU ESP8266 programming language. Body temperature is measured using the LM35. Body temperature is a crucial parameter for assessing and diagnosing human health. A heartbeat sensor was used to calculate the heart rate. One can test their mean arterial pressure (MAP) using this program and the Android will display their accurate body temperature. The device may measure physiological parameters, including heart rate.

Publisher

Springer Science and Business Media LLC

Reference13 articles.

1. by Modern Heath surveillance systems using the Internet of Things and Raspberry Pi (IJRITCC-, Bhawarkar, N.B., Amaale, P.A.: and S.R. Chourey. (2017)

2. Real-time ECG surveillance system based on the Internet of Things (IOT) by Mehak Chhabra and Manik Kalsi (IJSR-2017)

3. Siddharth Tripathi, S., Madakam: and R. Ramaswamy The article INTERNET OF Things (IOT): A LITERATURE REVIEW (JCC-2015)

4. IOT BASED GARBEGE MONITORING SYSTEM by Dr:. K. Alice Mary and Monika Perreddy (IJSER- (2017)

5. IOT Based: -smart the Wheel Chair With a health surveillance system (IJRIER-1017) by Shubham, Saqar Nayak, Upsana, Prateek Gupta, and Atul B. Wani

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