Peloton Interactive, Inc. (20240264264). ULTRA-WIDEBAND POSITIONING SYSTEM FOR WEARABLE AUGMENTED REALITY APPARATUS simplified abstract

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ULTRA-WIDEBAND POSITIONING SYSTEM FOR WEARABLE AUGMENTED REALITY APPARATUS

Organization Name

Peloton Interactive, Inc.

Inventor(s)

AbdurRahman Bin Shahzad Bhatti of Clyde Hill WA (US)

Jensen Rarig Steven Turner of Everett WA (US)

ULTRA-WIDEBAND POSITIONING SYSTEM FOR WEARABLE AUGMENTED REALITY APPARATUS - A simplified explanation of the abstract

This abstract first appeared for US patent application 20240264264 titled 'ULTRA-WIDEBAND POSITIONING SYSTEM FOR WEARABLE AUGMENTED REALITY APPARATUS

Simplified Explanation

Embodiments of a patent application describe methods and apparatuses for an augmented reality positioning system using ultra-wideband beacons to estimate the position of an augmented reality device and adjust virtual elements accordingly.

  • Augmented reality device connects with a constellation of beacons with ultra-wideband modules.
  • Position and attitude of the device are estimated to modify virtual elements in space.
  • Various devices can connect and exchange data.
  • Different beacon constellation arrangements are possible.
  • Trilateration methods interpret data from beacons.

Key Features and Innovation

  • Utilizes ultra-wideband beacons for augmented reality positioning.
  • Estimates position and attitude of the device for accurate virtual element placement.
  • Allows for data exchange between devices.
  • Offers flexibility in beacon constellation arrangements.
  • Implements trilateration for data interpretation.

Potential Applications

The technology can be used in:

  • Augmented reality gaming.
  • Navigation systems.
  • Industrial applications for precise positioning.
  • Virtual reality experiences.
  • Location-based services.

Problems Solved

  • Improves accuracy of virtual element placement in augmented reality.
  • Enhances user experience by providing accurate positioning data.
  • Enables seamless data exchange between devices.
  • Facilitates precise location tracking in various applications.
  • Enhances the overall performance of augmented reality systems.

Benefits

  • Enhanced user experience.
  • Improved accuracy in virtual element placement.
  • Increased efficiency in data exchange.
  • Precise positioning for various applications.
  • Overall performance enhancement in augmented reality systems.

Commercial Applications

  • "Ultra-Wideband Augmented Reality Positioning System for Enhanced Gaming Experiences"
  • This technology can be utilized in gaming industries to provide a more immersive and accurate gaming experience.
  • Market Implications: The technology can attract gamers looking for advanced augmented reality features and enhance the competitiveness of gaming companies in the market.

Questions about Augmented Reality Positioning System

How does the use of ultra-wideband beacons improve the accuracy of augmented reality positioning?

The ultra-wideband beacons provide precise location data, allowing for accurate estimation of the device's position and attitude, leading to improved placement of virtual elements in space.

What are the potential industrial applications of this augmented reality positioning system?

The technology can be applied in industries requiring precise positioning, such as manufacturing, logistics, and construction, to enhance operational efficiency and accuracy in various processes.


Original Abstract Submitted

described herein are embodiments of methods and apparatuses for an augmented reality positioning system wherein an augmented reality device may directly (or indirectly through a separate smart device) connect with a constellation of beacons with ultra-wideband (uwb) modules to estimate a position and overall attitude for the augmented reality device and modify the perceived position of a virtual elements in space accordingly. the embodiments may include configurations for how various devices may connect and send data between one another. the embodiments may further include various constellation arrangements for beacons as well as embodiments of methods of trilateration that may be used to interpret data from various beacons.