Augment Glass Tracking for Real-Time 3D Overlay Alignment
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Solution Overview
Problem
Conventional augmented reality systems struggle with seamlessly integrating digital content with the physical environment, often disrupting user immersion and limiting interaction due to the need for handheld devices or head-mounted displays, and lack sophisticated real-time user tracking for a convincing 3D experience.
Innovation Solution
An augment glass system utilizing active transparent displays, computer vision sensors, and bespoke perspective tracking software to dynamically adjust digital content based on user movements and gaze, allowing for immersive and interactive 3D holograms that overlay physical objects in real-time.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Ease of operation
If conventional AR systems use handheld devices or head-mounted displays to project digital overlays, then digital content can be displayed, but user immersion is disrupted and interaction is restricted
Solution Approach 1:
The patent extracts the display function from traditional handheld devices or head-mounted displays and integrates it into the environment itself through transparent displays. This allows digital content to be projected onto transparent surfaces (windows, glass panels) that users can see through, eliminating the need for separate AR devices and maintaining natural visibility of the physical world.
Solution Approach 2:
The patent introduces transparent displays as an intermediary between the physical environment and digital content. These transparent displays act as a mediator that allows both physical objects and digital overlays to coexist in the same visual space, enabling seamless integration without requiring users to wear special equipment.
2Ease of operation
If transparent displays are used to project digital content, then user immersion is improved, but real-time user tracking capability is insufficient for convincing 3D AR experience
Solution Approach 1:
The patent implements a feedback loop where sensors continuously track user position, gaze direction, and head orientation in real-time. This feedback information is processed to dynamically adjust the position, orientation, and content of digital overlays, ensuring they remain accurately aligned with the user's line of sight and maintain immersive 3D experience as the user moves.
Solution Approach 2:
The patent makes the digital content display dynamic by continuously adjusting its position and orientation based on real-time user movement data. The system adapts to user actions, gaze direction, and head orientation, transforming static transparent displays into dynamic interfaces that respond to user interactions in real-time.
3Adaptability or versatility
If digital content is displayed on transparent displays, then integration with physical environment is improved, but real-time adjustment to user movements is insufficient
Solution Approach 1:
The patent ensures continuous adjustment of digital content by maintaining constant sensor input processing and real-time rendering updates. The system continuously tracks user position and gaze, and continuously adjusts the displayed content to match user movements, creating an uninterrupted flow of adaptive visual information.
Solution Approach 2:
The system performs preliminary calculations and preparations for content adjustment based on predicted user movements and gaze patterns. By anticipating user actions and pre-positioning digital content accordingly, the system reduces latency and improves the responsiveness of real-time adjustments.
Data Source
AI summary
An augment glass system to display a digital content that adjusts dynamically in real-time on an active transparent display in communication with a custom sensor housing. Furthermore, the custom sensor housing includes a user sensor to capture a sensor data of a user and an object sensor to capture a sensor data of an object. Further, the augment glass system is configured to process data obtained from the user sensor and the object sensor, determining user coordinates and object coordinates via one or more processing units, and displaying the digital content on the active transparent display. The augment glass system further includes the ability to average the input data of multiple users to optimize the digital content displayed on the active transparent display. The augment glass system also includes integrating a plurality of augment glass systems via a processing circuitry and a cloud network.


