Smart Power Alerts and Duration Logging Integration of IoT Based Real Time Monitoring
Dr Kamalakannan S1, Sriranjani P2, Varsha D S3, Pavilash S R4, Sharmila S5
1Associate Professor, Dept. of ECE, KGiSL Institute of Technology Coimbatore, TN, India kamalsphd@gmail.com
2UG Student, Dept. of ECE, KGiSL Institute of Technology Coimbatore, TN, India sriranjanipadmanaban@gmail.com
3UG Student, Dept. of ECE, KGiSL Institute of Technology Coimbatore, TN, India saravananpavi9177@gmail.com
4UG Student, Dept. of ECE, KGiSL Institute of Technology Coimbatore, TN, India varshasuresh0708@gmail.com
5UG Student, Dept. of ECE, KGiSL Institute of Technology Coimbatore, TN, India
sharmisingu23@gmail.com
ABSTRACT
Power Pulse is an advanced smart power monitoring system designed to track and log power supply status in real-time. It leverages an 8051 microcontroller to detect power ON and OFF events, recording their timestamps through a real-time clock (RTC). Additionally, the system measures current and voltage levels via dedicated sensors to ensure accurate monitoring. To enhance user awareness, Power Pulse integrates GSM-based SMS notifications and IoT-enabled email alerts, which provide instant updates on power state changes. These alerts include timestamps of power ON/OFF events, duration of each state, and cumulative outage or uptime records, making it an effective solution for power reliability analysis. The hardware design, including PCB schematic and layout, is developed using OrCAD and Allegro, ensuring seamless hardware integration. This system is particularly beneficial for multi-floor apartments, industrial facilities, and backup power management, allowing users to remotely monitor power conditions efficiently. By combining real-time logging, wireless notifications, and IoT connectivity, Power Pulse offers a comprehensive and reliable power monitoring solution suitable for both residential and industrial applications.
Keywords - Real-Time Clock (RTC), SM-Based SMS Notifications, IoT-Enabled Email Alerts, OrCAD & Allegro PCB Design