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MARSE

UGC–AICTE Guideline Based | NEP 2020 Framework Aligned

Unmanned Aerial Vehicle Design Internship

UAV- Simulate ! Analyze ! Innovate

Learn Industry-Oriented Unmanned Aerial Vehicle (UAV) Design Skills with Hands-on Training in CAD, Aerodynamics, Flight Performance Analysis, and Real-World Aerospace Projects

About Program

Unmanned Aerial Vehicle with Industry-Oriented Training

Build industry-ready Unmanned Aerial Vehicle (UAV) design skills through UGC-AICTE Credit-Based Skill Development Training and hands-on aerospace engineering projects.

Develop industry-ready UAV Design skills through practical, project-based learning and real-world aerospace engineering applications. Gain hands-on experience in drone conceptual design, aerodynamic analysis, wing and airframe design, propulsion systems, structural fundamentals, flight performance, stability and control, payload integration, mission planning, and CAD-based engineering, preparing you for rewarding careers in the aerospace, defense, and drone technology sectors.

What You Will Learn

Transform Theory into Engineering Excellence

Learn Industry-Oriented Unmanned Aerial Vehicle (UAV) Design with CAD Tools and Real-World Aerospace Engineering Applications.

Acquire practical Unmanned Aerial Vehicle (UAV) Design skills through hands-on training, real-world aerospace projects, and industry-oriented learning. Explore every stage of the UAV design process—from conceptual design and airframe development to aerodynamics, structural fundamentals, propulsion systems, flight dynamics, stability and control, payload integration, mission planning, and performance analysis—while preparing for rewarding careers in the aerospace, drone, and defense industries.

Software Tools

Note: Solidworks / Catia V5 / Anssys Software available

What you will Get

Build Strong Industry-Ready UAV Design Skills with Hands-on Experience

Learn Industry-Oriented Solidworks with Mission Planner and Real-World Engineering Applications

With expert mentorship and guided learning, you will understand the complete UAV design workflow—from conceptual design and airframe development to aerodynamics, propulsion, flight dynamics, structural analysis, and performance evaluation. This program helps you develop problem-solving abilities and industry-ready engineering skills required for careers in the aerospace, drone, and defense industries

How to Apply

UAV Design Internship

Who Can Apply?

Register open to Diploma, B.E./B.Tech, M.E./M.Tech, B.Sc., M.Sc., undergraduate, postgraduate students, recent graduates, research scholars, and working professionals who are interested in UAV  Design(ADI) and engineering simulation. Students from Aerospace, Mechanical, Automobile, Energy, Production, Manufacturing, Civil, Marine, Mechatronics, Robotics, and other related

Internship Start Date :1 Aug 2026

Last Date of Registration :30 July 2026

Registration Fees: 2750 Rs nclude GST18 % GST (Indian students)

international students -Apply online through our Global Internship Portal

Quick Enquiry – Get Instant Support

Registration Form 2026

Our Accreditation & Standards

1 Months

  • Overview of UAV types, applications, and industry trends
  • Introduction to aerospace engineering principles relevant to UAV design
  • Safety protocols and regulations for UAV operations

 

  • Basic principles of aerodynamics for UAVs
  • Forces and moments acting on UAVs
  • Wing and airfoil design considerations
  • Types of UAV propulsion systems (electric, combustion, hybrid)
  • Selection criteria for UAV propulsion systems
  • Power management and efficiency considerations

 

  • Structural design considerations for UAVs
  • Material selection and properties for UAV structures
  • Structural analysis and optimization techniques

 

  • Introduction to UAV avionics systems (sensors, GPS, communication)
  • Principles of UAV control systems and flight stability
  • Basics of autopilot systems and flight control algorithms
  • Navigation systems for UAVs (GPS, inertial sensors)
  • Guidance and trajectory planning for UAV missions
  • Control strategies for UAV flight stability and maneuverability

 

  • Types of payloads and sensors used in UAVs (EO/IR, LiDAR, etc.)
  • Integration considerations and payload weight distribution
  • Data acquisition and processing techniques for UAV payloads

 

  • Overview of SolidWorks interface and workspace
  • Understanding the SolidWorks environment (menus, toolbars, feature manager, etc.)
  • Creating sketches: lines, circles, arcs, rectangles, etc.
  • Applying constraints and dimensions
  • Using sketch tools: trim, extend, mirror, offset, etc
  • Extruding, revolving, sweeping sketches to create 3D features
  • Adding fillets, chamfers, and other features
  • Using reference geometry: planes, axes, and points
  • Inserting components into assemblies
  • Applying mates: coincident, concentric, distance, angle, etc.
  • Exploding and collapsing assemblies
  • Creating 2D drawings from 3D models
  • Adding dimensions, annotations, and views (orthographic, isometric, section views)
  • Generating bill of materials (BOM) and other annotations
  • Advanced features: sweeps, lofts, patterns
  • Configurations and design tables
  • Sheet metal design basics

Need to Submit 

Need to submit

NO

3 Months

  • Overview of UAV types, applications, and industry trends
  • Introduction to aerospace engineering principles relevant to UAV design
  • Safety protocols and regulations for UAV operations

 

  • Basic principles of aerodynamics for UAVs
  • Forces and moments acting on UAVs
  • Wing and airfoil design considerations
  • Types of UAV propulsion systems (electric, combustion, hybrid)
  • Selection criteria for UAV propulsion systems
  • Power management and efficiency considerations

 

  • Structural design considerations for UAVs
  • Material selection and properties for UAV structures
  • Structural analysis and optimization techniques

 

  • Introduction to UAV avionics systems (sensors, GPS, communication)
  • Principles of UAV control systems and flight stability
  • Basics of autopilot systems and flight control algorithms
  • Navigation systems for UAVs (GPS, inertial sensors)
  • Guidance and trajectory planning for UAV missions
  • Control strategies for UAV flight stability and maneuverability

 

  • Types of payloads and sensors used in UAVs (EO/IR, LiDAR, etc.)
  • Integration considerations and payload weight distribution
  • Data acquisition and processing techniques for UAV payloads

 

  • Project planning and management for UAV design projects
  • Team collaboration and communication skills
  • Risk management and mitigation strategies in UAV projects

 

  • Design optimization techniques for UAV performance enhancement
  • Prototyping and testing methodologies
  • UAV performance evaluation and validation

 

  • Application of learned concepts in a hands-on UAV design project
  • Project scope, timeline, and deliverables
  • Regular progress reviews and feedback sessions

 

  • Final presentation of UAV design project
  • Evaluation based on project outcomes, presentation skills, and overall performance
  • Reflection on internship experience and future learning goals
  • Overview of SolidWorks interface and workspace
  • Understanding the SolidWorks environment (menus, toolbars, feature manager, etc.)
  • Creating sketches: lines, circles, arcs, rectangles, etc.
  • Applying constraints and dimensions
  • Using sketch tools: trim, extend, mirror, offset, etc
  • Extruding, revolving, sweeping sketches to create 3D features
  • Adding fillets, chamfers, and other features
  • Using reference geometry: planes, axes, and points
  • Inserting components into assemblies
  • Applying mates: coincident, concentric, distance, angle, etc.
  • Exploding and collapsing assemblies
  • Creating 2D drawings from 3D models
  • Adding dimensions, annotations, and views (orthographic, isometric, section views)
  • Generating bill of materials (BOM) and other annotations
  • Advanced features: sweeps, lofts, patterns
  • Configurations and design tables
  • Sheet metal design basics
  • Creating and editing surfaces
  • Using surface tools: knit, fill, trim, extend
  • Top-down design approaches
  • Assembly features: smart components, sub-assemblies
  • Customizing drawing templates and sheet formats
  • Using annotations: balloons, notes, symbols
  • GD&T (Geometric Dimensioning and Tolerancing)
  • Introduction to SolidWorks Simulation (FEA)
  • Basic analysis: stress analysis, thermal analysis
  • Interpreting simulation results

Need to submit

Need to Submit

Performance Based 

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Welcome to MARS Exploration, the top aerospace startup in India, offering a cutting-edge online internship program for engineering students.

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