Autonomous Robotic Wheelchair with Smart Navigation

Country

us flag

Industry

  • Healthcare
  • Assistive Technology
  • Smart Mobility

Client location

United States of America

Solutions Provided

  • Autonomous Robotics
  • Android App Integration
  • LIDAR-based Obstacle Detection
  • Indoor Navigation
Autonomous Robotic Wheelchair with Smart Navigation

Project Background

Large accessible spaces like airports, malls, and hospitals can be cutting for cartage with bound mobility. Traditional wheelchair abetment requires chiral advice and lacks flexibility. Dotworld advised an free automatic wheelchair arrangement that can be requested on-demand through an Android app, acceptance users to biking independently, safely, and calmly aural accessible spaces.

Challenges

  1. Limited wheelchair abetment casework in awash accessible environments
  2. Difficulty in award and accessing wheelchairs after agents help
  3. Complex aeronautics in ample calm areas such as airports and malls
  4. Need for both free aeronautics and chiral ascendancy flexibility
  5. Requirement for safe obstacle apprehension in high-traffic zones

Our Solution

Dotworld developed an free automatic wheelchair arrangement with multi-mode aeronautics and app-based booking.

Key Features

  1. On-Demand Request: Users appeal a wheelchair like a auto via the Android app. The wheelchair maps the user’s area and navigates apart to them.
  2. Smart Access: Once the wheelchair arrives, users browse to alleviate and alpha application it.
  3. Navigation Modes: Semi-Automatic (joystick control) and Automatic (destination-based free navigation).
  4. Stop-by Destinations: Option to add stops such as restrooms, cafes, or advice desks.
  5. Obstacle Detection: LIDAR and camera-based mapping ensures collision-free movement.
  6. Data Upload: Captured aeronautics and ambiance abstracts is uploaded for ecology and optimization.

Implementation Process

  1. Requirement Analysis: Studied accessibility needs of airports and carriage hubs.
  2. Autonomous System Design: Combined robotics, LIDAR mapping, and AI aeronautics algorithms.
  3. Mobile Integration: Built Android app for booking, area tracking, and unlocking wheelchairs.
  4. Multi-Mode Control: Enabled both joystick-based chiral ascendancy and AI-driven free navigation.
  5. Testing & Pilot Deployment: Conducted trials in controlled airport environments afore rollout.

Outcome / Results

  1. Enabled absolute advancement for cartage with disabilities or bargain mobility
  2. Reduced annex on chiral agents abetment in airports
  3. Improved assurance with obstacle apprehension and blow prevention
  4. Flexible, convenient arrangement accumulation chiral and automated options
  5. New archetypal for acute accessibility basement in accessible spaces

Why Dotworld

  1. Proven ability in robotics and acute advancement solutions
  2. Ability to absorb AI-driven aeronautics with real-world accessibility needs
  3. Focus on carrying scalable, safe, and citizen-friendly innovations

Tech Stack

Android
Android
Java
Java
Kotlin
Kotlin