App Interface
Developed a smart chick brooder using an ESP32 Wi-Fi module for remote monitoring of temperature and humidity. Automated lighting, heating, and airflow systems based on sensor data, with the option for manual remote control via a mobile app to ensure chicks can eat, drink, and grow in a healthy environment.
Designed and developed a fire-fighting robot with two operational modes: Automatic and Manual. In Automatic Mode, the robot uses onboard fire sensors to detect and respond to fire without human intervention. In Manual Mode, the robot receives real-time instructions via a Bluetooth module, allowing remote control for fire extinguishing tasks.
Designed a robot that uses IR sensors to follow a path and deliver medication to patients based on predefined instructions.
Click here to see the demonstration
Constructed a digital stopwatch using decade counters, display units, and multiple 74-series ICs, eliminating the need for microcontrollers. This device was intended for basic time-tracking applications, such as sports events.
Click here to see the project demonstration video
Developed a speech-based system that takes item and quantity inputs via voice commands. Used MFCC for feature extraction and DTW for pattern matching to identify user intent. Enabled hands-free ordering with moderate accuracy.
Implemented a PSO-based AGC system for a two-area power network, achieving faster frequency recovery and better dynamic performance than conventional PID/PI controllers. Evaluated recovery times and frequency deviations for system stability.
Disassembled a three-phase induction motor, removed the existing windings, and manually rewound the stator coils to restore its functionality.