Emergent Garden
I like cellular automata because a few simple rules can produce patterns that are hard to predict. This page collects my experiments with them, along with Voronoi diagrams and a few 3D simulations.
Things I have worked on at university, with E-Traxx and O'Bosso, and at home.
I like cellular automata because a few simple rules can produce patterns that are hard to predict. This page collects my experiments with them, along with Voronoi diagrams and a few 3D simulations.
I build front-stack software for E-Traxx: telemetry, driver display, and the shared CAN contracts that tie the car together.
Pit-side PySide6 receiver for the 2026 car: Daphnis P2P radio over USB serial, live panels, and session logging to NDJSON and MF4.
I design a manual clay brick press for O'Bosso's work in Cameroon. In Onshape, I create the 3D models and manufacturing drawings for its metal parts.
I made a 3D-printable housing for a device that continuously measures the diameter of recycled filament. It took several versions to get right.
My home network connects personal cloud storage, compute services, and smart-home devices through Tailscale. This lets me reach them remotely without exposing their ports to the internet.
Saraswati turns voice memos into searchable notes on my own server. It transcribes audio locally, stores the results in SQLite, and can run configurable LLM steps for summaries or structured JSON.
During my dual-study program at Siemens Healthineers, I built a prototype that sent measurement data from a medical device to a server. I used C++, Arduino, Wi-Fi, and NFC.