Educational Program "Autonomous Navigation and Adaptive Control Systems of Aircraft" focuses on creating a "digital pilot" that knows neither fear nor fatigue. Today, such a specialist is an Autonomous Systems Architect and Control Theory Master. You are the one who writes algorithms that allow a drone to navigate through a forest without GPS, and a missile to adapt to wind changes in milliseconds. Your activity targets will be inertial sensors, computer vision systems, and neural control networks that turn ordinary hardware into a smart autonomous machine.
The goal of study is to turn you into a "conductor of autonomy" capable of teaching a vehicle to make decisions in conditions of total uncertainty. We will teach you mathematical flight modeling, synthesis of adaptive regulators, and sensor fusion (Sensor Fusion). This is the epicenter of Robotics & AI, where complex mathematics becomes an elegant flight trajectory. You will learn to create systems that independently find the way to the goal, bypass obstacles, and ignore interference, becoming an architect of a future where the sky belongs to autonomous machines.
Your superpower: In a world dominated by speed and electronic warfare, you will possess Algorithmic Resilience and Navigational Precision — skills to build vehicles that "think" faster than humans. Your professional arsenal will include:
- Inertial & Satellite Navigation: combining data from gyroscopes, accelerometers, and GPS for perfect positioning.
- Adaptive & Robust Control: developing self-tuning control systems during damage or load changes.
- Computer Vision for UAVs: teaching drones to "see" and recognize objects using cameras and lidars.
- Embedded Flight Software: writing high-efficiency C++ and Python code for flight controllers.
Our graduates are chief autopilot developers in Brave1 startups, navigation engineers at aerospace corporations, control systems architects for robotics, and Guidance, Navigation, and Control (GNC) specialists, where the ability to create error-free algorithms is valued.
Objects of professional activity for bachelor's graduates are onboard control systems; navigation complexes; software for autonomous missions; as well as intelligent tools for measuring motion parameters.
Field of study: G Engineering, Manufacturing and Construction
Specialty: G5 Electronics, Electronic Communications, Instrumentation and Radio Engineering
Educational Program: Autonomous Navigation and Adaptive Control Systems of Aircraft
Competitive offer: Autonomous Navigation and Adaptive Control Systems of Aircraft
Accreditation Certificate: №14760, issued on June 19, 2025, valid until July 01, 2029.
Faculty: Faculty of Intelligent Control Systems
Graduating Department: Department of Aircraft Control Systems (301)
Part-time study form available: yes
Training of foreign citizens available: yes