Cancer Detection in Pets
ML-based early detection of cancer cells in pets using CNN and OpenCV
From embedded systems to AI, from satellites to medical devices — we don't build exercises. We train the next generation of engineers on projects that change industries.
Embedded, IoT, cloud, and ML development for the world's leading companies. Engineering teams that own the project from concept to production.
All servicesIndustrial solutions tailored to real challenges — defense, medical, energy, automotive. Engineering architecture built to survive mass production.
All solutionsOur own products, in production, around the world. From cancer cell detection to SDR for defense applications — products that left the lab and meet the market.
All productsReal Time Group was founded to address a growing need — a shortage of experts in technology. And this is where you come in.
We invite you to become the next generation of engineers and developers in the industry — to intern with us in our development division, working on real-world projects, and to be part of a team building technology that changes lives.
Satellites in orbit. AI systems that detect cancer in pets. RF solutions for advanced communications. Safety systems for lithium batteries. At our college, you learn on real projects with real impact.
Not exercises. Not demos. Real projects our student teams are working on right now — with measurable results and real customers.
ML-based early detection of cancer cells in pets using CNN and OpenCV
An advanced project combining satellite communications, real-time signal processing, and autonomous control systems. Students working on this project face the high reliability demands of space systems and operate against real operational requirements — from concept to launch.
An intelligent fire prevention system for lithium batteries — relevant for electric vehicles, buses, and energy storage systems. Combines advanced sensors, AI anomaly detection algorithms, and an early warning system based on machine learning to identify failure patterns before they become disasters.
Read the case studyA software-defined radio (SDR) system based on Xilinx's Zynq RFSoC. Combines processing system, programmable logic, and RF data converters for ultra-high frequencies. The project's core — FPGA design and real-time signal processing for defense and advanced communications.
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