AR-Based Outdoor Navigation System Development -- 5
Budget: ₹1,500 – ₹12,500 INR
Project Overview
We are looking for an experienced Unity developer to build an Augmented Reality (AR) Outdoor Navigation System for SRM Kattankulathur campus. The system will provide real-time, AR-guided navigation to help students and visitors find their way around the campus using a mobile application. The AR-based system should work seamlessly in outdoor environments without relying on GPS alone, ensuring precise location tracking.
Project Objectives
Develop an AR-based outdoor navigation system that overlays digital navigation paths onto real-world views.
Enable real-time user positioning and pathfinding using AI, AR, and advanced tracking techniques.
Provide an interactive and user-friendly navigation experience for students and visitors.
Ensure compatibility with AR-supported Android devices .
Key Features & Requirements
1. Augmented Reality (AR) Integration
Use Unity Engine with AR Foundation for AR-based visualization.
Implement ARCore (Android) for real-time tracking.
GPS and Computer Vision-based Positioning to detect user location accurately.
Real-time Target Detection: Identify key landmarks, buildings, and paths using virtual markers.
2. Outdoor Mapping & Pathfinding
Create a digital 3D map of SRM Kattankulathur campus using Unity.
Pathfinding Algorithm: Implement AI-based NAVMESH or SLAM for real-time route guidance.
Highlight walkable paths and restricted areas dynamically.
Implement AR-based navigation lines to guide users in real-world space.
3. User Interface (UI/UX)
Destination Selection: Allow users to select buildings, departments, or points of interest via a dropdown menu or search bar.
Mini-map Integration: Display real-time user position and suggested route.
Toggle ON/OFF AR Navigation Lines for flexibility.
Navigation: Users can adjust path height, view, and display options for better visibility.
Voice-Assisted Navigation (Optional) for hands-free guidance.
4. Performance & Device Compatibility
Optimize the system for smooth AR rendering on Android .
Ensure low-latency real-time tracking for accurate navigation.
Minimal dependency on external hardware like RFID, Bluetooth beacons, or expensive sensors.
5. Implementation & Development
Use C# programming in Unity for smooth integration.
Integrate GPS and AR-based positioning for precise outdoor navigation.
Use AI-driven path optimization to provide the shortest and safest routes.
Ensure stable tracking and minimal AR drift in outdoor conditions (varying light, weather, and obstacles).
Project Deliverables
A fully functional Unity project with AR-based outdoor navigation for SRM Kattankulathur.
APK builds for testing.
Source code and documentation for deployment and future improvements.
A user guide for easy onboarding and maintenance.
Required Skills & Expertise
Unity Engine & C# Programming
Augmented Reality Development (AR Foundation, ARCore, ARKit)
AI-based Pathfinding (NAVMESH, SLAM, GPS Optimization)
UI/UX Design for AR Applications
Mobile App Optimization for Outdoor AR Performance
We are looking for an experienced Unity developer to build an Augmented Reality (AR) Outdoor Navigation System for SRM Kattankulathur campus. The system will provide real-time, AR-guided navigation to help students and visitors find their way around the campus using a mobile application. The AR-based system should work seamlessly in outdoor environments without relying on GPS alone, ensuring precise location tracking.
Project Objectives
Develop an AR-based outdoor navigation system that overlays digital navigation paths onto real-world views.
Enable real-time user positioning and pathfinding using AI, AR, and advanced tracking techniques.
Provide an interactive and user-friendly navigation experience for students and visitors.
Ensure compatibility with AR-supported Android devices .
Key Features & Requirements
1. Augmented Reality (AR) Integration
Use Unity Engine with AR Foundation for AR-based visualization.
Implement ARCore (Android) for real-time tracking.
GPS and Computer Vision-based Positioning to detect user location accurately.
Real-time Target Detection: Identify key landmarks, buildings, and paths using virtual markers.
2. Outdoor Mapping & Pathfinding
Create a digital 3D map of SRM Kattankulathur campus using Unity.
Pathfinding Algorithm: Implement AI-based NAVMESH or SLAM for real-time route guidance.
Highlight walkable paths and restricted areas dynamically.
Implement AR-based navigation lines to guide users in real-world space.
3. User Interface (UI/UX)
Destination Selection: Allow users to select buildings, departments, or points of interest via a dropdown menu or search bar.
Mini-map Integration: Display real-time user position and suggested route.
Toggle ON/OFF AR Navigation Lines for flexibility.
Navigation: Users can adjust path height, view, and display options for better visibility.
Voice-Assisted Navigation (Optional) for hands-free guidance.
4. Performance & Device Compatibility
Optimize the system for smooth AR rendering on Android .
Ensure low-latency real-time tracking for accurate navigation.
Minimal dependency on external hardware like RFID, Bluetooth beacons, or expensive sensors.
5. Implementation & Development
Use C# programming in Unity for smooth integration.
Integrate GPS and AR-based positioning for precise outdoor navigation.
Use AI-driven path optimization to provide the shortest and safest routes.
Ensure stable tracking and minimal AR drift in outdoor conditions (varying light, weather, and obstacles).
Project Deliverables
A fully functional Unity project with AR-based outdoor navigation for SRM Kattankulathur.
APK builds for testing.
Source code and documentation for deployment and future improvements.
A user guide for easy onboarding and maintenance.
Required Skills & Expertise
Unity Engine & C# Programming
Augmented Reality Development (AR Foundation, ARCore, ARKit)
AI-based Pathfinding (NAVMESH, SLAM, GPS Optimization)
UI/UX Design for AR Applications
Mobile App Optimization for Outdoor AR Performance