arXiv · 2508.12469
Mechanical Automation with Vision: A Design for Rubik's Cube Solver
Abstract
The core mechanical system is built around three stepper motors for physical manipulation, a microcontroller for hardware control, a camera and YOLO detection model for real-time cube state detection. A significant software component is the development of a user-friendly graphical user interface (GUI) designed in Unity. The initial state after detection from real-time YOLOv8 model (Precision 0.98443, Recall 0.98419, Box Loss 0.42051, Class Loss 0.2611) is virtualized on GUI. To get the solution, the system employs the Kociemba's algorithm while physical manipulation with a single degree of freedom is done by combination of stepper motors' interaction with the cube achieving the average solving time of ~2.2 minutes.
Explore related subjects
Keep this discovery
Abhinav Chalise, Nimesh Gopal Pradhan, Nishan Khanal, Prashant Raj Bista, Dinesh Baniya Kshatri. 2025-08-17. Mechanical Automation with Vision: A Design for Rubik's Cube Solver. https://arxiv.org/abs/2508.12469
Cite the original work for its findings. Save a collection to share your selection of sources.