Useful Links
Computer Science
Extended Reality
Augmented Reality
1. Introduction to Augmented Reality
2. Hardware Technologies and Components
3. Software Technologies and Algorithms
4. Development Platforms and Tools
5. AR Application Development Process
6. Industry Applications and Use Cases
7. Technical Challenges and Limitations
8. Emerging Technologies and Future Directions
Hardware Technologies and Components
Display Systems
Optical See-Through Displays
Combiner Optics
Waveguide Technology
Holographic Optical Elements
Smart Glasses Implementation
Video See-Through Displays
Camera-Display Systems
Mobile Device Screens
Tablet Integration
Latency Management
Head-Mounted Display Systems
Tethered HMD Architecture
Standalone HMD Design
Wireless Communication
Power Distribution
Projection-Based AR
Spatial Augmented Reality
Projection Mapping Techniques
Interactive Surface Creation
Multi-Projector Systems
Retinal Display Technology
Direct Retinal Projection
Laser-Based Systems
Safety Considerations
Sensing and Tracking Hardware
Inertial Measurement Systems
Accelerometer Technology
Gyroscope Principles
Magnetometer Function
Sensor Fusion Techniques
Visual Sensors
RGB Camera Systems
Stereo Camera Configurations
Depth Camera Technology
Time-of-Flight Sensors
Environmental Sensors
LiDAR Technology
Ultrasonic Sensors
Infrared Sensors
Ambient Light Detection
Position Tracking Systems
GPS Integration
Indoor Positioning Systems
Beacon-Based Tracking
Ultra-Wideband Technology
Processing Architecture
Central Processing Units
ARM Architecture
x86 Architecture
Power Efficiency Considerations
Graphics Processing Units
Mobile GPU Architecture
Dedicated Graphics Cards
Parallel Processing Capabilities
Specialized Processors
Neural Processing Units
Digital Signal Processors
Computer Vision Accelerators
Memory and Storage
RAM Requirements
Storage Considerations
Data Transfer Rates
Cache Optimization
Previous
1. Introduction to Augmented Reality
Go to top
Next
3. Software Technologies and Algorithms