Evaluating efficiency of replacing metallic alloys with the composite materials in manufacture of the aerospace engineering parts
Authors: Kononova D.V., Saburov F.A. | Published: 24.07.2023 |
Published in issue: #7(84)/2023 | |
DOI: DOI: 10.18698/2541-8009-2023-7-916 | |
Category: Aviation and Rocket-Space Engineering | Chapter: Innovation Technologies of Aerospace Engineering | |
Keywords: сomposite materials, carbon fiber, fiberglass, aerospace systems, rocket and space systems, aircraft industry, product strength |
Neural network learning to determine the maximum filling coefficient of the model energy condensed system polymer base with the powder components
Authors: Sharov G.S. | Published: 30.08.2023 |
Published in issue: #8(85)/2023 | |
DOI: DOI: 10.18698/2541-8009-2023-8-927 | |
Category: Aviation and Rocket-Space Engineering | Chapter: Aircrafts Development, Design and Manufacture | |
Keywords: neural networks, perceptron, artificial intelligence, Python, Keras, granulometric composition optimization, limiting volumetric filling with dispersed particles, model energy condensed system |
Numerical simulation of the oxygen-methane mixture combustion products supersonic jet outflow from the low-thrust rocket engine nozzle taking into account variability in their thermal physical properties
Authors: Taran K.A. | Published: 10.12.2023 |
Published in issue: #10(87)/2023 | |
DOI: DOI: 10.18698/2541-8009-2023-10-946 | |
Category: Aviation and Rocket-Space Engineering | Chapter: Aircrafts Development, Design and Manufacture | |
Keywords: numerical simulation, low-thrust rocket engine, combustion products, oxygen, methane, computational hydraulic gas dynamics, supersonic flow |
Specifics in the positioning systems development for the space technology products
Authors: Danshin D.A. | Published: 25.01.2024 |
Published in issue: #12(89)/2023 | |
DOI: DOI: 10.18698/2541-8009-2023-12-958 | |
Category: Aviation and Rocket-Space Engineering | Chapter: Aircraft Dynamics, Ballistics, Motion Control | |
Keywords: space technology, positioning system, coordinates, accuracy, actuator, roller mechanism, shell, backlash-free mechanism |
Methods in the forecasting models construction based on the evolutionary algorithms
Authors: Grigoryev L.V., Stepchenko E.I. | Published: 25.01.2024 |
Published in issue: #12(89)/2023 | |
DOI: DOI: 10.18698/2541-8009-2023-12-959 | |
Category: Aviation and Rocket-Space Engineering | Chapter: Aircraft Dynamics, Ballistics, Motion Control | |
Keywords: inertial navigation system, navigation system, self-organization algorithm, gyro-stabilized platform deflection angle, short-term forecast, unmanned aerial vehicle, inertial navigation system errors, correction |
Advantages and risks of using unmanned systems in the modern world
Authors: Panteleev S.P. | Published: 02.05.2024 |
Published in issue: #2(91)/2024 | |
DOI: DOI: | |
Category: Aviation and Rocket-Space Engineering | Chapter: Aircrafts Development, Design and Manufacture | |
Keywords: automation, unmanned automatic systems, unmanned aerial vehicle, unmanned vehicle, drone, innovation, economics |
Methods of the space debris observation and detection and structural analysis of the required system therefor
Authors: Barbashin D.S. | Published: 16.09.2024 |
Published in issue: #4(93)/2024 | |
DOI: DOI: | |
Category: Aviation and Rocket-Space Engineering | Chapter: Innovation Technologies of Aerospace Engineering | |
Keywords: rocket and space industry, spacecraft, space debris, geostationary orbit, man-made space objects, system engineering, functional and technical requirements, structural analysis |
Methods of the space debris disposal
Authors: Milekhina E.A. | Published: 18.11.2024 |
Published in issue: #5(94)/2024 | |
DOI: DOI: | |
Category: Aviation and Rocket-Space Engineering | Chapter: Innovation Technologies of Aerospace Engineering | |
Keywords: space, space research, space debris, satellites, space debris disposal |