Snap Inc. (20240248531). REDUCING STARTUP TIME OF AUGMENTED REALITY EXPERIENCE simplified abstract

From WikiPatents
Jump to navigation Jump to search

REDUCING STARTUP TIME OF AUGMENTED REALITY EXPERIENCE

Organization Name

Snap Inc.

Inventor(s)

Jeroen Diederik Hol of Hengelo (NL)

Matthias Kalkgruber of Vienna (AT)

Erick Mendez Mendez of Vienna (AT)

Niall Murphy of Dublin (IE)

Gerald Nilles of Culver City CA (US)

Mathieu Emmanuel Vignau of Los Angeles CA (US)

REDUCING STARTUP TIME OF AUGMENTED REALITY EXPERIENCE - A simplified explanation of the abstract

This abstract first appeared for US patent application 20240248531 titled 'REDUCING STARTUP TIME OF AUGMENTED REALITY EXPERIENCE

Simplified Explanation:

This patent application describes a method to improve the startup time of a six-degrees of freedom tracking system in an augmented reality environment. The system activates sensors in response to initialization and tracking data requests, updating the display of augmented reality content items based on the sensor data.

  • Key Features and Innovation:
   - Method to improve startup time of a tracking system in augmented reality.
   - Activation of sensors in response to initialization and tracking data requests.
   - Real-time updating of augmented reality content items based on sensor data.
  • Potential Applications:
   - Augmented reality gaming.
   - Industrial training simulations.
   - Medical training applications.
   - Architectural visualization tools.
  • Problems Solved:
   - Slow startup time of tracking systems.
   - Delay in updating augmented reality content.
   - Lack of real-time sensor activation.
  • Benefits:
   - Faster system initialization.
   - Real-time tracking data updates.
   - Enhanced user experience in augmented reality environments.
  • Commercial Applications:
   - Augmented reality gaming industry.
   - Training and simulation software development.
   - Architectural and design visualization tools market.
  • Prior Art:
   - Prior research on improving tracking system startup times.
   - Existing methods for updating augmented reality content based on sensor data.
  • Frequently Updated Research:
   - Ongoing advancements in sensor technology for augmented reality systems.
   - Research on optimizing tracking algorithms for real-time updates.

Questions about six-degrees of freedom tracking system startup time: 1. How does the method described in the patent application differ from existing approaches to improving tracking system startup time? 2. What are the potential limitations of using this method in different augmented reality applications?

2. How does the method described in the patent application differ from existing approaches to improving tracking system startup time? - The method described in the patent application focuses on activating sensors in response to specific requests, allowing for faster initialization and real-time updates of augmented reality content. This differs from traditional methods that may have a more static approach to sensor activation and data processing.

3. What are the potential limitations of using this method in different augmented reality applications? - Some potential limitations of this method could include compatibility issues with certain sensor types or configurations, as well as the need for precise calibration and synchronization of multiple sensors. Additionally, the effectiveness of the method may vary depending on the complexity of the augmented reality content being displayed.


Original Abstract Submitted

a method for improving the startup time of a six-degrees of freedom tracking system is described. an augmented reality system receives a device initialization request and activates a first set of sensors in response to the device initialization request. the augmented reality system receives first tracking data from the first set of sensors. the augmented reality system receives an augmented reality experience request and in response to the augmented reality request, causes display of a set of augmented reality content items based on the first tracking data and simultaneously activates a second set of sensors. the augmented reality system receives second tracking data from the activated second set of sensors. the augmented reality system updates the display of the set of augmented reality content items based on the second tracking data.