7/20/2026
In this project, I use the target lock program I developed some months earlier on a drone prototype. This will allow the user to select a target from the drone's video feed for it to lock onto and autonomously follow. This project involved simplifying and making the program lighter for use with edge computing on an onboard Raspberry Pi aswell as developing a method for the drone to autonomously follow the selected target.
5/9/2026
ME 164 centered on mastering CAD modeling techniques within Siemens NX to create 3D models as well as implementing advanced GD&T principles, tolerancing, and manufacturing methods to create professional engineering drawings.
12/20/2025
This project uses a YOLO object detection model with a manual targeting box to let a user acquire, lock, and track objects in live or recorded video
6/22/2025
I built my FPV drone through a hands-on, iterative process of selecting compatible components, assembling and soldering the electronics, and configuring the flight controller. I tested and refined the system by troubleshooting issues and tuning performance, which strengthened my understanding of electronics integration and system-level problem solving.
12/12/2024
In this project, I built a compact stock ticker using an ESP32 and a small I2C OLED display to show real-time stock prices. I designed and programmed the system to continuously fetch and display market data while keeping the electronics small and efficient. The whole project was packaged inside a Tic Tac box, giving it the name “Tic Tac Ticker.”
10/5/2024
Here, I assembled and configured an FPV fixed-wing aircraft, working through the mechanical assembly, electronics, motor, ESC, servos, and flight controller setup. I learned how to properly integrate and troubleshoot the different systems while balancing the aircraft and preparing it for flight. The project gave me hands-on experience with aircraft construction, wiring, configuration, and systematic troubleshooting.