Crafting intelligent systems through hardware, software, and pure curiosity
⚡ Powered by coffee, circuits, and curiosity ⚡
I'm passionate about exploring the frontiers of mathematics, physics, and electronic systems. My journey is driven by a deep curiosity for how things work at the fundamental level, from circuit design to computational problem-solving.
Currently, I'm focused on strengthening my expertise in hardware architecture, embedded systems, and AI/ML applications in real-world scenarios. I believe the future lies at the intersection of hardware and software innovation.
Beyond engineering, I'm an avid photographer who captures moments that tell unique stories. Photography is my creative outlet for connecting with the world.
Designing and analyzing electronic circuits
Mathematical foundations for systems
Building intelligent robotic systems
Computational problem-solving with AI
An innovative robotic arm system controlled through hand gestures and computer vision, demonstrating real-time signal processing and robotics integration.
View on GitHubMachine learning system for automated classification and sorting of electronic components, combining computer vision with embedded systems.
View on GitHubDesign and implementation of a high-efficiency four-switch bidirectional DC-DC converter enabling controlled power flow between a solar PV source and battery storage. The project includes MPPT-based energy optimization, and detailed Simulink modeling for performance validation under dynamic load conditions.
View Research RepoMachine learning-based intrusion detection system for automotive CAN networks, developed during the IEEE EV Hackathon. Integrates deep learning techniques like Graph Neural Networks, Transformers, and traditional ML models, with a Streamlit dashboard for real-time anomaly monitoring. Currently a work in progress with models being tested.
View Research RepoA structured, comprehensive reference and hands-on development guide for advanced digital power control using the STM32 NUCLEO-G474RE platform. Explores control algorithms on STM32 using high-resolution timers and ADC-based sensing for power electronics applications. Currently a work in progress.
View on GitHubInterested in collaborating on projects or just want to chat about electronics and robotics? Feel free to reach out!