Virtual Reality Authentication via Signal Detection and Object Identification
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Solution Overview
Problem
Current electronic devices lack an efficient method to securely authenticate users and release access restrictions in virtual reality environments, particularly in scenarios where security-related content is displayed on devices like smartphones and head-mounted devices.
Innovation Solution
An electronic device is configured to detect signals generated during the display of predetermined content, identify security-related objects, compare this information with specified security settings, and release access restrictions based on the comparison outcome, allowing secure execution of resources.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If traditional authentication methods are used in virtual reality environments, then device complexity is reduced, but user security and authentication reliability are insufficient
Solution Approach 1:
The authentication system is segmented into multiple independent components: signal detection module, security object identification module, comparison module, and restriction release module. Each component performs a specific function, allowing the system to achieve high reliability through modular design while maintaining manageable complexity.
Solution Approach 2:
Security-related objects and authentication criteria are pre-configured and stored in the electronic device before authentication occurs. When a user attempts to access virtual reality content, the device detects signals, identifies security objects, and compares them against pre-stored security settings, enabling rapid and reliable authentication without complex real-time processing.
2Reliability
If security authentication is implemented in virtual reality content access, then user security is improved, but ease of operation deteriorates due to additional authentication steps
Solution Approach 1:
The electronic device performs authentication automatically by detecting signals from the user's interaction with virtual reality content and comparing them against stored security settings. The system serves itself by autonomously verifying user identity and releasing restrictions without requiring manual intervention, thereby maintaining ease of operation while ensuring security.
Solution Approach 2:
The system continuously monitors user interactions with virtual reality content, detects relevant signals, and provides immediate feedback by either granting or denying access based on authentication results. This real-time feedback mechanism ensures security while maintaining operational convenience through automated decision-making.
3Measurement precision
If signal detection and security object identification are performed in real-time, then authentication precision is improved, but processing time increases
Solution Approach 1:
Security object data and authentication criteria are pre-loaded and stored in the electronic device's memory before authentication is needed. When authentication occurs, the system compares detected signals against these pre-prepared security settings, achieving high precision without the time penalty of real-time analysis or external queries.
Data Source
AI summary
A method is provided including: detecting, by an electronic device, at least one signal that is generated while a predetermined content is displayed on a display; identifying a security-related object associated with the content based on the signal; comparing, by the electronic device, information relating to the object with specified security setting information; and releasing a restriction on access to a resource based on an outcome of the comparison.


