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Development of Educational Robotics Mobile Application
  1. case
  2. Development of Educational Robotics Mobile Application

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Development of Educational Robotics Mobile Application

supercharge.io
Education

Challenge

Limited access to educational robotics kits due to high cost restricts STEM learning opportunities for children, particularly those from lower-income backgrounds. Existing educational robotics solutions often lack intuitive user interfaces and fail to adequately foster creative problem-solving skills.

About the Client

Non-profit organization focused on increasing access to STEM education through robotics, particularly for underserved communities.

Objectives

  • Develop a user-friendly and engaging mobile application for controlling and programming Revolution Robotics' educational robot.
  • Ensure the application promotes creative problem-solving and experimentation through hackability and customization.
  • Facilitate offline operation and Bluetooth Low Energy (BLE) communication for accessibility in various environments.
  • Design an inclusive user experience suitable for children with varying levels of technical proficiency and reading abilities.
  • Create a scalable and energy-efficient application that can run on lower-end mobile devices.

Functional Requirements

  • Robot control via mobile device (iOS and Android).
  • Offline operation capability.
  • Bluetooth Low Energy (BLE) communication with the robot.
  • Intuitive user interface with visual cues and minimal text.
  • Customization options for robot configuration and programming.
  • Support for a wide range of robot sensors and ports.
  • Open-source architecture for community contributions and experimentation.

Preferred Technologies

React Native
Raspberry Pi (for hardware interaction)
Bluetooth Low Energy (BLE)
Mobile Development (iOS & Android)

Non-Functional Requirements

  • Energy Efficiency
  • Scalability (to accommodate future robot features and user growth)
  • Performance (responsive and smooth user experience)
  • Security (protecting user data and robot control)
  • Accessibility (inclusive design catering to diverse user needs)

Expected Impact

This project will democratize access to STEM education by providing an affordable and engaging robotics platform for children worldwide. The intuitive design and open-source nature will foster creativity, problem-solving skills, and a deeper understanding of technology, particularly among underrepresented groups. The offline functionality will broaden access to learning environments.

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