Augmented Reality Seminar System for Private Data Display
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Solution Overview
Problem
Current seminar technologies cannot effectively display private information to users in a public setting without compromising the privacy of such information, requiring offline consultations for sensitive details.
Innovation Solution
A system that uses computer systems to analyze user information, select relevant private data, and generate images for display devices, allowing users to view private information securely during live presentations, while maintaining a public information feed.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Adaptability or versatility
If generic public information is displayed to all users during a public seminar, then the seminar can be conducted in a public setting with universal accessibility, but private information cannot be displayed to individual users without compromising privacy
Solution Approach 1:
The presentation is divided into public components visible to all attendees and private components visible only to authenticated users. The system segments the information display into a public feed shown on main displays and private information delivered through authenticated user devices, allowing both public accessibility and private confidentiality to coexist.
Solution Approach 2:
Different quality levels of information are provided to different users. Authenticated users receive enhanced private information tailored to their needs, while non-authenticated users receive only public information. This local differentiation allows private information to be displayed to specific users without compromising the privacy of others.
2Object-affected harmful factors
If users engage in offline consultations to view private information, then privacy can be maintained, but time is lost and productivity decreases
Solution Approach 1:
Users are authenticated and their private information is prepared in advance before the seminar begins. During the seminar, when relevant content is presented, the system automatically retrieves and displays the pre-prepared private information to authenticated users, eliminating the need for time-consuming offline consultations while maintaining privacy.
Solution Approach 2:
The system enables continuous access to private information throughout the seminar without interrupting the public presentation. Authenticated users can view their private information in real-time as the presentation progresses, eliminating the discontinuous nature of offline consultations and maximizing productivity.
3Loss of information
If private information is displayed to all users during the seminar, then complete information is provided, but security and privacy are compromised
Solution Approach 1:
An authentication mechanism serves as an intermediary between the private information and the users. The system determines whether a user is authenticated based on their credentials, and only authenticated users receive access to private information. This intermediary layer ensures information completeness for authorized users while maintaining security for unauthorized users.
4Object-affected harmful factors
If a one-to-one consultation system is used for private information, then privacy is maintained, but device complexity and operational difficulty increase
Solution Approach 1:
The system enables users to authenticate themselves and access their own private information automatically without requiring manual intervention from seminar organizers or financial services representatives. Users simply provide their credentials, and the system autonomously retrieves and displays their private information, reducing operational complexity while maintaining privacy.
Data Source
AI summary
Described are computer implemented augmented reality techniques for public and private seminars that includes receive an indication of a start of a segment of a live presentation, the live presentation comprising at least one segment, with the at least one segment having at least one presentation component; receive information related to a plurality of users, receive rules to analyze the information and select from the information, private information pertaining to a particular user, with the selected information being relevant to the at least one presentation component of the at least one segment of the live presentation, generate an image that when rendered on a display device renders the private information pertaining to the particular user for that presentation component, and send the image of the private information to a device associated with the particular user.


