We built an integrated smart-home energy management system designed to monitor, control & optimize household energy consumption. The system uses an smart energy meter to measure real-time electrical parameters, energy consumption & estimated electricity cost. A web-based interface enables remote monitoring & appliance control. The platform further integrates Solar PV, Battery, and Grid as available energy sources and uses an ML-based approach to select suitable energy sources based on system conditions. It also incorporates priority-based load management to optimize energy usage while maintaining critical loads.
We represented the University of Chittagong as part of one of five university teams at the Bangladesh Innovation Fair 2026.
Github link: AI-Powered-Energy-Optimization-Platform
As a part of our 5th semester course, I have presented a Raspberry Pi-based surveillance robot with my team designed to detect human presence, recognize authorized individuals & alert users in case of intrusions.
Utilizing the Raspberry Pi 4, the system integrates Pi camera, PIR motion sensor and python-based face recognition technology to enable real-time monitoring while mounted on my existing soccer robot platform. Upon detecting an unknown person, the system automatically captures an image and sends email alert to the user.
Github link: raspberry pi based surveillance robot
Led Team Zero-G in developing an interactive web and mobile application "Zero-G Explorer" for NASA International Space App Challenge 2025. The platform features physics based Neutral Buoyancy Lab training, rocket launch, onboarding tasks and cupola Earth view experience. We Integrated real NASA data including live ISS tracking and educational resources for the educator to create an authentic educational experience.
The experience of conceptualizing, building and submitting the project for a NASA challenge was invaluable.
Project Github link: Zero-G Explorer
30 seconds video: 30 Seconds of Glory | Team Zero-G
My 6th semester project IoT-Based Smart Energy Meter, developed as part of the Measurement & Instrumentation course.
This project focuses on developing a real-time energy monitoring system using an ESP32, current sensor, voltage sensor and Blynk IoT platform. It measures voltage, current, power and energy consumption while displaying readings on an LCD and sending data to the Blynk app for remote monitoring. This system aims to provide a cost effective and efficient solution for smart home energy monitoring and management.
Project Github link: IoT based smart energy meter
This project was submitted in my first semester which is the Arduino based system measures vehicle speed and detects over-speeding in restricted areas, providing a simple yet effective approach to traffic monitoring and safety.
Developed in my first semester, this prototype is a remote/voice-controlled serving robot designed for restaurant automation. Built using Arduino uno, Bluetooth module. it demonstrates efficient food delivery with minimal human intervention.