Aerospace & Aeronautical Engineering Symposium 2027

September 08, 2027 | Dubai, UAE

Overview

Welcome to the Aerospace & Aeronautical Engineering Symposium 2027 (AAES2027), scheduled from September 08-09, 2027, an elite international summit set in the visionary city of Dubai, UAE. This symposium brings together aerospace engineers, aviation industry leaders, and space technology researchers to chart the exciting future of flight and space exploration.

AAES2027 focuses on a forward-looking theme encompassing unmanned aerial vehicles (UAVs), spacecraft avionics, advanced aerodynamic design, and satellite systems engineering. The conference highlights the critical innovations required for sustainable aviation, advanced propulsion systems, and the mitigation of orbital space debris.

Providing an unparalleled networking environment, the symposium features high-level panels, technical presentations, and interactive discussions. Join the global aerospace community in Dubai to share pioneering research and drive the technological evolution of the aeronautical sector.

Organizing Committee

Member

Prof. Raul Duarte Salgueiral Gomes Campilho

Instituto Superior de Engenharia do Porto
Italy

Member

Prof. Dr. Emin Taner Elmas

Igdir University
Turkey

Member

Prof. Dinesh Kumar

Dayalbagh Educational Institute
India

Member

Dr. Boris Andrievsky

Russian Academy of Sciences
Russia

Invited Speakers

Speaker

Prof. Dinesh Kumar

Dayalbagh Educational Institute
India

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Speaker

Prof. Dinesh Kumar

Dayalbagh Educational Institute
India

Dr. Dinesh Kumar is a Mechanical Engineer and Materials Scientist specializing in advanced materials, shape memory alloys (SMAs), composites, mechanical metallurgy, thermo-mechanical processing, and intelligent/adaptive materials. He holds a Ph.D. in Physical Metallurgy of Steels from IIT Kharagpur, an M.Tech. in Materials Science from IIT Roorkee, and a B.Tech. in Mechanical Engineering.
His research focuses on the design, processing, characterization, and engineering applications of advanced functional materials, with particular emphasis on shape memory alloys, martensitic transformation, high-manganese steels, composites, and smart materials for enhanced structural performance. His work also explores intelligent materials design, AI-assisted materials engineering, and advanced lightweight structural concepts.

Dr. Kumar has published research in international journals and contributed to scientific conferences, book chapters, and intellectual-property activities. His interdisciplinary research interests closely align with the development of lightweight, adaptive, resilient, and high-performance materials and structures for next-generation engineering and aerospace applications. At AEROVEX 2026, he will discuss “Intelligent Lightweight Aerospace Structures: Advanced Shape Memory Alloys, Composites, and Adaptive Materials,” highlighting opportunities for advanced materials to enable lightweighting, structural adaptability, and intelligent aerospace systems.

Scientific Tracks

1 Advanced Composite Materials for Lightweight Aerospace Structures
2 Aeroelasticity and Flutter Analysis in Flexible Aircraft Wings
3 AI in Air Traffic Control and Flight Trajectory Optimization
4 AI-Driven Predictive Maintenance in Commercial Aircraft Fleets
5 Autonomous Unmanned Aerial Vehicles (UAVs) in Urban Air Mobility (UAM)
6 Avionics Cybersecurity and Resilient Navigation Systems
7 Bio-inspired Aerodynamics and Morphing Wing Technologies
8 Electric and Hybrid-Electric Propulsion for Commercial Aviation
9 Hydrogen Fuel Cell Integration in Next-Gen Aviation
10 Hypersonic Flight Aerodynamics and Thermal Management Systems
11 Lunar Base Construction and Extraterrestrial Habitat Engineering
12 Micro-Gravity Manufacturing and Space-Based Pharmaceuticals
13 Next-Generation Satellite Constellations and IoT Connectivity
14 Noise Reduction Technologies for Supersonic Transport (SST)
15 Quantum Sensors for High-Precision Aerospace Navigation
16 Reusable Launch Vehicle Technologies and Economics
17 Space Traffic Management and Orbital Debris Mitigation Strategies
18 Sustainable Aviation Fuels (SAF): Lifecycle and Engine Compatibility
19 Swarm Robotics for Planetary Surface Exploration
20 Thermal Protection Systems for Atmospheric Re-entry Vehicles
21 Electric Vertical Take-Off and Landing (eVTOL)
22 Environmental impact of aviation and aerospace