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KazMBS

6

Programming drones using artificial intelligence

400 000 ₸
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Allocated 13 Quotas

About course

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In today’s era of technological advancement, drones have become essential tools in various fields such as agriculture, security, and emergency monitoring. The ability to effectively operate, program, and integrate artificial intelligence with drones is a crucial skill for future professionals. The course "Drone Programming with Artificial Intelligence" introduces students to the fundamentals of Python, drone control via SDKs, video stream processing using OpenCV, and object recognition. Students develop an intelligent drone control system through practical projects. This course aims to enhance both the technical and creative skills of learners. Project-based tasks help students adapt to solving complex problems and develop teamwork capabilities. The course is designed in accordance with the legal requirements of the Republic of Kazakhstan. The academic program consists of 144 hours, including 54 hours of theoretical instruction, 90 hours of practical work, and 36 hours of independent study. Completion of the course includes the development of a creative project and a final examination.

Special condition

Guarantee fee in the amount of 50,000 tenge. Under the conditions, if the student completes the training, successfully passes the final test and defends the final project, then the guarantee fee is returned to the student in full.

Course details

level

For beginner

Study format

Hybrid

Start

August

Entrance exams

No

Duration, in weeks

26

Duration in academic hours

144

Education language

Kazakh

Classes days_of_week

Mon-Sun

Teaching methodology

There are more practices than theories

Qualifications

Junior Developer of Intelligent Software for Drone Control

Classes format

Offline lessons 2 time a week for 2 hours, Online lessons 1 times a week for 2 hours

Skills


general scientific and technical terminology, theoretical foundations of drone and payload system design; the component base required for assembling the device; principles of interaction between the mechanical components of the drone and its electronic and optical systems; the procedure for designing and writing the drone’s operation algorithm; key aspects of drone programming in a computer environment; fundamental algorithmic structures (loops, conditions, functions, arrays, recursion); principles of constructing flowcharts and their use in algorithmic modeling; basics of structured programming in the Python language; safety regulations for working with tools and electrical devices; rules for the use of the airspace of the Republic of Kazakhstan and current legislation regarding drone operation

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