Virtual Hologram Verification for Dynamic Website Authenticity
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Solution Overview
Problem
Existing methods lack effective means to dynamically verify the authenticity of websites and web assets, particularly in ensuring the integrity and legitimacy of websites accessed through virtual environments.
Innovation Solution
A virtual machine service provider generates a virtual hologram that encodes time-based codes and parameters, which is dynamically updated, to authenticate websites by encoding web assets into a graphical facsimile, preventing DOM inspection and ensuring authenticity through real-time verification.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Ease of operation
If a website is made accessible through virtual environments, then user convenience and accessibility are improved, but the risk of unauthorized access and authenticity verification becomes more difficult
Solution Approach 1:
The patent introduces a virtual hologram as an intermediary verification element that bridges the gap between virtual website accessibility and authenticity verification. The hologram serves as a mediator that users can scan to confirm the legitimacy of the virtual website without compromising either accessibility or security
2Device complexity
If traditional authentication methods are used for websites, then verification processes are simple, but they cannot dynamically verify the authenticity of websites in real-time
Solution Approach 1:
The patent implements dynamic verification by generating time-based codes that are continuously updated and embedded in the virtual hologram. This dynamic element ensures that the authentication process remains current and accurate in real-time, preventing static authentication methods from being bypassed
Solution Approach 2:
The system performs preliminary authentication by generating the virtual hologram with embedded verification codes before the user accesses the website. This pre-verification ensures that only authenticated websites are made accessible, preventing unauthorized access before it can occur
3Ease of operation
If web assets are made easily accessible in virtual environments, then user convenience is improved, but the ability to detect and measure authenticity becomes more difficult
Solution Approach 1:
The patent utilizes visual encoding in the virtual hologram that can be easily scanned and detected. The hologram incorporates visual elements that change or encode information about the website's authenticity, making detection straightforward through scanning while maintaining ease of access
Data Source
AI summary
Disclosed embodiments provide a framework for dynamically generating virtual holograms usable to verify the authenticity of a website or other web assets. In response to a request to access a website, a virtual machine service provider authenticates the website and generates a virtual hologram that can be used to verify the authenticity of the website. The virtual hologram encodes a time-based code that is updated at each timestep. The virtual hologram is provided in conjunction with the website to allow for scanning of the virtual hologram to verify the validity of the website.


