Software Solution - Last Mile Delivery
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Project scope
Categories
Mechanical engineering Robotics Software development Artificial intelligenceSkills
software architecture battery management urban transportation collision avoidance systems blueprintingThe primary objective of this 80-hour project is to pave the foundational groundwork for a robotic delivery network. Emphasis is placed on the conceptualization, design, and development of a functional demo for individual working robots. The project aims to tackle core components, from formulating a robust software architecture to fine-tuning basic movement commands and safety measures like collision avoidance and battery management.
By the culmination of the 80-hour time frame, students should manifest:
- An exhaustive and in-depth understanding of prevalent urban transportation solutions, giving weight to robotic interventions and how they shape the current market.
- Successfully architected a comprehensive software blueprint tailored for the delivery robot, ensuring flexibility and scalability.
- Proficiency in implementing elemental movement logic and a robust remote control mechanism that aligns with real-world scenarios.
- Seamless integration of safety protocols, prominently including a collision avoidance system and a meticulous battery monitoring setup.
- Diligent documentation and rigorous testing affirming the reliability and functionality of the assembled system.
I am a product developer with 15 years of experience in automotive and will train, guide and mentor the intern to achieve the goal.
Supported causes
The global challenges this project addresses, aligning with the United Nations Sustainable Development Goals (SDGs). Learn more about all 17 SDGs here.
About the company
With a foundation in micromobility and the auto industry, we're revolutionizing deliveries with our network of automated robots. A fresh, scalable approach to logistics.