GPU EM Solver
GPU-accelerated FDTD solver matching CST/MATLAB accuracy. Reduced simulation time of a 4x4 array from 222h (CPU) to 6.8h (GPU).
GPU-accelerated FDTD solver matching CST/MATLAB accuracy. Reduced simulation time of a 4x4 array from 222h (CPU) to 6.8h (GPU).
Led design of 39 PCBs for UTAT including flight computers and RF. Mentored 60+ students and flew hardware to 10k ft.
2.0-2.4GHz FMCW radar on a 6-layer GCPW PCB with tuned Yagi antennas. Validated RF performance using a spectrum analyzer and VNA.
Vision system that projects placement markers onto PCBs. Built 8.5k lines of C++ then ported to 2k lines of Python, adding auto-calibration.
Solo-built C++ engine with FastAPI backend. Achieved 59k users and 6M+ hours played with a functional marketplace economy.
Real-time 2D incompressible fluid solver on Android/PC. Uses OpenMP and Gauss-Seidel relaxation for high-performance CFD.
Custom 1.1m fixed-wing UAV with bespoke avionics and LoRa telemetry. Modeled in CAD and flight-controlled via C++ backend.
2-axis platform using sensor fusion (GPS/IMU) to point lasers at celestial targets. Custom PCB driven by Python.
GPU-accelerated FDTD solver matching CST/MATLAB accuracy. Reduced simulation time of a 4x4 array from 222h (CPU) to 6.8h (GPU).
Led design of 39 PCBs for UTAT including flight computers and RF. Mentored 60+ students and flew hardware to 10k ft.
2.0-2.4GHz FMCW radar on a 6-layer GCPW PCB with tuned Yagi antennas. Validated RF performance using a spectrum analyzer and VNA.
Vision system that projects placement markers onto PCBs. Built 8.5k lines of C++ then ported to 2k lines of Python, adding auto-calibration.
Solo-built C++ engine with FastAPI backend. Achieved 59k users and 6M+ hours played with a functional marketplace economy.
Real-time 2D incompressible fluid solver on Android/PC. Uses OpenMP and Gauss-Seidel relaxation for high-performance CFD.
Custom 1.1m fixed-wing UAV with bespoke avionics and LoRa telemetry. Modeled in CAD and flight-controlled via C++ backend.
2-axis platform using sensor fusion (GPS/IMU) to point lasers at celestial targets. Custom PCB driven by Python.
Completed 3rd year; expected to graduate in 2027. Strong foundation across materials, fluids, controls, electronics, design, simulation, and scientific computing.
Led 60+ students to deliver 39 custom PCBs (26 personal designs). Established Altium standards, mentored engineers, and spearheaded RF, power, and thermal validation.
Validated interfaces and analyzed EMI/EMC for Bell V-280 landing gear. Managed component qualification using IBM DOORS and Excel.
Published on quantum computing for biological regulatory networks, now authoring work on ML transformers accelerating vaccine development in rapid-response contexts.
Completed 3rd year; expected to graduate in 2027. Strong foundation across materials, fluids, controls, electronics, design, simulation, and scientific computing.
Led 60+ students to deliver 39 custom PCBs (26 personal designs). Established Altium standards, mentored engineers, and spearheaded RF, power, and thermal validation.
Validated interfaces and analyzed EMI/EMC for Bell V-280 landing gear. Managed component qualification using IBM DOORS and Excel.
Published on quantum computing for biological regulatory networks, now authoring work on ML transformers accelerating vaccine development in rapid-response contexts.
Get in touch
For internships, research collaborations, or engineering work, reach out by email. I'm especially interested in avionics, electronics, simulation, and building real systems.