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Autonomous delivery vehicle concept

Bringing automation to last-mile logistics, this project developed an autonomous delivery vehicle concept that prioritizes efficiency and sustainability. The innovative design integrated advanced navigation systems with eco-friendly engineering.

Task

Design an autonomous vehicle capable of efficient and reliable last-mile deliveries. design the tubular chassis run mechanical simulations for crashworthiness

  • Client

    Urban logistics startup.

01 // Project Overview

What value
did i add ?

I focused on the vehicle’s architecture, ensuring it could support autonomous systems, battery integration, and modular storage while remaining compact and efficient.

The goal wasn’t just to create another concept—it was about designing something that could actually work in a real city without major infrastructure changes.

02 // Challenges

The Problem
I was solving.

  • -Last-mile delivery is inefficient and costly.
  • -Urban congestion demands compact, smart vehicles.
  • -Existing solutions either lack automation or sustainability
  •  
  • This project tackled all three, creating a feasible alternative that’s both autonomous and energy-efficient..
03 // Approach

Efficiency
in design.

visual selectionf
04 // Statistics

Business
impact.

0%

Smaller footprint

Compared to existing electric delivery vans.

0+

Storage compartments

Modular storage for scalable delivery solutions.

0%

Cost reduction

Last-mile delivery costs. Making it more resilient.

0%

Electric

Eliminating emissions.

05 // Honors

Closing
note.

“This project made me rethink how cities will handle logistics in the future. The challenge wasn’t just autonomy, but making it work in the real world.”
— Personal Reflection

06 // How i did it

Skills put
in action.

oh demo3 14 min

Project & Process
Management.

Autonomous Vehicle Concept Development
Sustainable Product Architecture
Urban Mobility Research
Modular System Planning

oh demo3 16 min

Design &
Development.

Vehicle Architecture Design
Storage Optimization for Logistics
Battery & Power System Planning
Ergonomics & Safety Considerations

oh demo3 15 min

Communication
& Collaboration.

Cross-Team Coordination with AI Engineers
Presenting Feasibility Studies
Documentation for Future Prototyping
Integrating Stakeholder Requirements

oh demo3 17 min

Technical
Expertise.

Autonomous Navigation System Research
Energy-Efficient Vehicle Design
AI-Ready Sensor Integration
Lightweight Structural Engineering

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