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Development of an IoT-Powered Educational Robotics Application for Inclusive STEM Learning
  1. case
  2. Development of an IoT-Powered Educational Robotics Application for Inclusive STEM Learning

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Development of an IoT-Powered Educational Robotics Application for Inclusive STEM Learning

supercharge.io
Education
Non-profit
Information technology

Challenges in Accessible STEM Education and Robotics Accessibility

High costs of robotic kits limit accessibility for underprivileged children, lack of offline functionality restricts usage in low-resource environments, and complex user interfaces hinder engagement for young or non-reading users. Additionally, there is a need to foster creativity through hackable hardware/software while ensuring energy efficiency and compatibility with low-end devices.

About the Client

A non-profit organization dedicated to making robotics and STEM education inclusive and accessible for children globally, regardless of financial, geographical, or gender barriers.

Objectives for the IoT Robotics Application Development

  • Democratize access to robotics education for children across socioeconomic backgrounds
  • Create an intuitive, fun, and universally accessible app interface for children of all reading levels
  • Enable offline functionality via Bluetooth Low Energy (BLE) for low-power environments
  • Support limitless customization through hackable hardware/software integrations
  • Build a global community through local robotics challenges and collaborative learning

Core Functionalities and Key Features

  • Intuitive, icon-driven user interface with no text dependencies
  • Bluetooth Low Energy (BLE) connectivity for offline robot control
  • Integration with Raspberry Pi for hardware/software customization
  • Open-source platform for user-driven modifications and experiments
  • Community challenge tracking and collaboration features

Technology Stack Requirements

React Native
Raspberry Pi
Bluetooth Low Energy (BLE)
Open-source frameworks

System Integrations

  • Hardware sensor/actuator ports
  • Cloud-based challenge database
  • User-generated content repository

Non-Functional Requirements

  • Energy-efficient operation for low-power environments
  • Optimized performance on low-end mobile devices
  • Robust security for user data and community interactions
  • Scalable architecture for global user base growth

Expected Social and Educational Impact

Democratization of robotics education through cost-effective, offline-capable solutions will empower underprivileged children globally. The inclusive design and hackable platform will foster STEM skill development, creativity, and collaborative problem-solving while building a diverse, interconnected community of young innovators.

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