20240046643. Augmented Reality, Computer Vision, and Digital Ticketing Systems simplified abstract (eBay Inc.)

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Augmented Reality, Computer Vision, and Digital Ticketing Systems

Organization Name

eBay Inc.

Inventor(s)

Steven Robert Neumann of Orinda CA (US)

Marcus Walter Shelksohn of San Francisco CA (US)

Khashayar Dehdashtinejad of Walnut Creek CA (US)

Jonathan Xiaohang Zhang of Castro Valley CA (US)

Edward Tang of Alameda CA (US)

Garrett Canan Reeb of San Francisco CA (US)

Ninglin Li of Foster City CA (US)

Augmented Reality, Computer Vision, and Digital Ticketing Systems - A simplified explanation of the abstract

This abstract first appeared for US patent application 20240046643 titled 'Augmented Reality, Computer Vision, and Digital Ticketing Systems

Simplified Explanation

The patent application describes techniques that use a location determination system in combination with augmented reality, computer vision, and digital ticketing systems. In one example, the location determination system receives a live camera feed and identifies objects in the digital images using object recognition. It then determines the location of the objects in relation to a digital map of the physical environment. Augmented reality digital content is generated to indicate the determined location in relation to the digital map, and this content is rendered as part of the live camera feed for display on a display device.

  • The patent application describes a system that combines location determination, augmented reality, computer vision, and digital ticketing.
  • The system uses a live camera feed to capture digital images.
  • Object recognition is used to identify objects in the digital images.
  • The system determines the location of the objects in relation to a digital map of the physical environment.
  • Augmented reality digital content is generated to indicate the determined location in relation to the digital map.
  • The augmented reality digital content is rendered as part of the live camera feed for display on a display device.

Potential applications of this technology:

  • Navigation and wayfinding: Users can use the system to navigate and find their way in unfamiliar environments by following the augmented reality digital content indicating their location on a digital map.
  • Tourist information: The system can provide users with relevant information and points of interest as they explore a new location, enhancing their tourist experience.
  • Gaming and entertainment: The technology can be used to create interactive and immersive gaming experiences, where virtual objects and characters are overlaid onto the real-world environment.
  • Advertising and marketing: Companies can use the system to deliver targeted and personalized advertisements and promotions based on the user's location and interests.

Problems solved by this technology:

  • Difficulty in navigating and finding specific locations in unfamiliar environments.
  • Lack of contextual information and guidance in new locations.
  • Limited interactivity and immersion in gaming and entertainment experiences.
  • Inefficient and non-targeted advertising and marketing strategies.

Benefits of this technology:

  • Enhanced navigation and wayfinding capabilities, leading to improved efficiency and convenience.
  • Access to relevant and contextual information in real-time, enhancing user experiences.
  • Interactive and immersive gaming and entertainment experiences, increasing user engagement and enjoyment.
  • Targeted and personalized advertising and marketing, resulting in more effective and efficient campaigns.


Original Abstract Submitted

augmented reality, computer vision, and digital ticketing system techniques are described that employ a location determination system. in one example, the location determination system is configured to receiving at least one digital image as part of a live camera feed, identify an object included in the at least one digital image using object recognition, determine a location of the object in relation to a digital map of a physical environment, generate augmented reality digital content indicating the determined location in relation to the digital map, and render the augmented reality digital content as part of the live camera feed for display by a display device.