International Conference on Aeronautical, Robotics & Manufacturing Engineering on April 12-14, 2027 in Paris, France - Conference Index

International Conference on Aeronautical, Robotics & Manufacturing Engineering on April 12-14, 2027 in Paris, France

International Conference on Aeronautical, Robotics & Manufacturing Engineering April 12, 2027 - Paris, France

PARIS 7th International Conference on Aeronautical, Robotics & Manufacturing Engineering (PARME-27) scheduled on April 12-14, 2027 Paris (France) is for the engineers, practitioners, scientists, researchers, scholars, and students from all around the world and it also includes the industry people to present ongoing research activities, and hence to foster research relations between Academia and industry. The conference is being organized by Emirates Research Publication (ERPUB) operting under Pilares D Elegancia LDA (Portugal). This conference provides opportunities for the delegates to share new ideas and application experiences face to face, to establish business or research relations and to find global partners for future collaboration. All the submitted conference papers will be peer reviewed by the program/technical committees of the Conference. 

Call for papers/Topics

All Abstracts, Reviews, short articles, Full articles, Posters are welcomed related with any of the following research fields:

Part 1: Core Independent Topics

These are the core pillars that belong uniquely to each distinct field.

1. Aeronautical Engineering

Focuses on the design, development, and science of aircraft operating within the Earth's atmosphere.

Aerodynamics and Fluid Mechanics

Incompressible and compressible flow

Boundary layer theory and wing theory

Shockwaves and supersonic/hypersonic flow

Aircraft Structures and Materials

Structural analysis of fuselages and wings

Fatigue, fracture mechanics, and aeroelasticity

High-strength, lightweight aerospace composites

Flight Dynamics, Stability, and Control

Static and dynamic longitudinal/lateral stability

Aircraft performance metrics (range, endurance, take-off)

Flight control laws and handling qualities

Aerospace Propulsion Systems

Gas turbine engines (turbojets, turbofans, turboprops)

Combustion and rocket propulsion basics

Propeller theory and rotorcraft aerodynamics

2. Robotics Engineering

Focuses on the design, construction, operation, and application of robots, blending mechanical, electrical, and computer engineering.

Kinematics, Dynamics, and Mechanisms

Forward and inverse kinematics (Denavit-Hartenberg parameters)

Rigid body dynamics and Lagrangian mechanics

End-effector design and Actuator technologies

Robot Perception and Computer Vision

Sensors (LiDAR, SONAR, IMUs, Depth cameras)

Image processing, object detection, and tracking

Simultaneous Localization and Mapping (SLAM)

Control Systems and Motion Planning

Feedback control systems (PID, Adaptive, Model Predictive Control)

Trajectory generation and obstacle avoidance

Pathfinding algorithms ($A^*$, RRT, Dijkstra)

Artificial Intelligence and Machine Learning in Robotics

Reinforcement learning for behavioral control

Deep learning for semantic segmentation

Swarm intelligence and multi-robot coordination

3. Manufacturing Engineering

Focuses on the transformation of raw materials into finished goods through various processes, machinery, and systems optimization.

Primary Subtractive and Deformative Processes

Advanced machining (CNC milling, turning, EDM, laser cutting)

Metal forming (forging, rolling, extrusion, drawing)

Casting and molding technologies

Additive Manufacturing (3D Printing)

Powder bed fusion (DMLS, SLS) and Directed Energy Deposition (DED)

Stereolithography (SLA) and Fused Deposition Modeling (FDM)

Post-processing and surface finishing techniques

Metrology and Quality Control

Coordinate Measuring Machines (CMM) and non-destructive testing (NDT)

Geometric Dimensioning and Tolerancing (GD&T)

Statistical Process Control (SPC) and Six Sigma methodologies

Production Systems and Operations

Lean manufacturing and Just-In-Time (JIT) production

Supply chain logistics and facility layout optimization

Cellular manufacturing and assembly line balancing

Part 2: Interrelated Topics and Subtopics

This is where the three fields merge, creating highly advanced technological ecosystems.

1. Aerospace Manufacturing Automation (Aeronautical + Manufacturing + Robotics)

The integration of robotic precision into the strict quality constraints of aircraft assembly.

Automated Aeroframework Assembly

Robotic riveting, drilling, and countersinking of airframes

Automated Fiber Placement (AFP) for composite wings and fuselages

Robotic sealant application and precision painting

Tooling and Fixturing

Flexible, reconfigurable robotic fixtures for large aerospace parts

End-effectors specifically tailored for fragile or curved aerospace components

Digital Twin Technology

Virtual replication of robotic aerospace assembly lines

Real-time data synchronization between physical manufacturing cells and digital models

2. Autonomous Aerial Systems & UAVs (Aeronautical + Robotics)

Applying robotic "brains" (autonomy, sensing, control) to aeronautical bodies.

Unmanned Aerial Vehicle (UAV) Design

Fixed-wing, multi-rotor, and VTOL (Vertical Take-Off and Landing) architectures

Micro Aerial Vehicles (MAVs) and biomimetic flight

Autonomous Flight Control and Navigation

GPS-denied navigation and optical flow tracking

Autonomous collision avoidance and geofencing

Robotic payload integration (gimbals, thermal sensors, delivery mechanisms)

3. Intelligent Production and Smart Factories (Robotics + Manufacturing)

The foundation of Industry 4.0, focusing on automating the factory floor.

Industrial Manipulators and Cobots

Collaborative robots (Cobots) designed for safe human-machine interaction

High-payload articulated arms for heavy material handling

Autonomous Mobile Robots (AMRs)

Automated Guided Vehicles (AGVs) for factory logistics

Warehouse automation and fleet management systems

Smart Maintenance and Inspection

Robotic non-destructive inspection of manufactured parts using ultrasound or X-ray

Predictive maintenance of manufacturing machines using robotic sensor data

Name: EARET
Website: http://earet.org

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