DIY: a multirotor remote-piloted aircraft

Course authors and lecturers

Rostislav Aleksandrovich Nechaev

Moscow State Aviation Technological University - Tsiolkovskiy Russian State Technological University. Engineer of the Education Engineering Support Center of MSATU.

Anton Vadimovich Perepelitsin

Moscow State Aviation Technological University - Tsiolkovskiy Russian State Technological University. Engineer of the Education Engineering Support Center of MSATU.

Aleksandra Pavlovla Samartseva

Moscow State Aviation Technological University - Tsiolkovskiy Russian State Technological University. Assistant at the Education Engineering Support Center of MSATU.

Andrey Viktorovich Shvedov

Moscow State Aviation Technological University - Tsiolkovskiy Russian State Technological University. Engineer of the Education Engineering Support Center of MSATU.

About the course

The course is designed to introduce the participants to technologies for creating multirotor (quadrocopter) remotely piloted aircrafts from maintenance requirements for remotely piloted aircrafts in certain fields of the national economy to obtaining practical knowledge and recommendations for developing, designing and flying remotely piloted aircrafts.

Course structure

1. Choosing the type of remotely piloted aircraft for designing (7 lectures).

2. Major stages of designing a multirotor (8 lectures).

3. Stage-by-stage assembly of a remotely piloted aircraft prototype after a draft (6 lectures).

4. Pre-flight preparation of the multirotor and recommendations on its operation (8 lectures).

Purpose of the course

The course is designed to introduce the participants to technologies for creating multirotor (quadrocopter) remotely piloted aircrafts.

Required qualifications

Learning the "Do It Yourself: Multirotor Remotely Piloted Aircraft" requires the participants to have a basic knowledge of physics, mechanics and informatics, obtained at secondary general school.

Course results

You will know:
- types of remotely piloted aircrafts;
- basic operational principles of machinery with NC and a laser assembly; main principles of multirotor systems and generation of digital signals;
- principles for developing aircraft.

You will learn:
- basic practical knowledge for working in a 2D and 3D system of automated design, as well as editing 3D graphics and animation, developed by Autodesk (AutoCAD);
- fundamentals of technological processes for assembling and installing radioelectronic equipment (soldering, welding etc.);
- fundamental settings of remotely piloted aircraft.

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