Contact-Free Remote Work Through Cross-Platform UI Sharing
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Solution Overview
Problem
Existing technologies face challenges in efficiently supporting non-face-to-face remote work processes due to the need for separate applications for different operating systems and the lack of effective user interface sharing solutions, which hinders collaboration and work efficiency.
Innovation Solution
A system and method for non-face-to-face remote work processing through user interface sharing, enabling the sharing of all user interface blocks between terminals, with features like history logging, replay functions, and authentication using cameras and microphones, and a work support server managing connections and access.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Adaptability or versatility
If separate applications are developed for different operating systems, then platform compatibility is improved, but development complexity and time cost increase
Solution Approach 1:
The patent applies universality by developing a single hybrid application that can run on multiple operating systems (iOS, Android, Windows) through a unified codebase. The application uses web technologies (HTML5, CSS3, JavaScript) that are platform-independent, allowing the same app to function across different devices without requiring separate native applications for each platform.
Solution Approach 2:
The patent uses an intermediary approach by implementing a hybrid architecture that bridges native operating systems and web technologies. The application employs WebView components that act as intermediaries, allowing web-based interfaces to run within native operating systems, thus achieving cross-platform compatibility without direct conflict between different system architectures.
2Productivity
If user interface sharing is implemented for remote work, then work efficiency is improved, but security risks increase
Solution Approach 1:
The patent implements feedback mechanisms through real-time monitoring of user actions during screen sharing sessions. The system tracks mouse movements, clicks, and other user interactions, providing feedback to both the sharing and viewing parties. This feedback loop enables authentication verification and anomaly detection, ensuring that only authorized actions are performed during remote work sessions.
Solution Approach 2:
The patent applies preliminary action by performing authentication and authorization checks before allowing screen sharing to begin. The system verifies user identities, validates sharing permissions, and establishes secure communication channels in advance. Camera and microphone authentication are performed beforehand to confirm user presence and intent, preventing unauthorized access before it can occur.
3Reliability
If history logging and replay functions are added, then accountability is improved, but storage requirements and system complexity increase
Solution Approach 1:
The patent extracts essential information from complex user interactions by selectively logging only critical events and actions during screen sharing sessions. Instead of recording every pixel and action in detail, the system extracts key metadata such as user actions, timestamps, and outcome events. This extraction approach maintains accountability while significantly reducing storage requirements and system complexity.
Solution Approach 2:
The patent applies partial action by implementing selective history logging that captures only the necessary information for accountability purposes. The system logs user actions, authentication events, and session outcomes, but omits redundant detailed information. This partial logging approach provides sufficient accountability without the overhead of complete recording systems.
Data Source
AI summary
Disclosed is a contact-free remote work processing system and method through user interface sharing. A contact-free remote work processing system through user interface sharing, according to one embodiment of the present invention, comprises: a first user terminal in which a service application is installed and executed; a second user terminal which shares and displays a user interface according to execution of the service application; and a work support server which communicates with the first user terminal and the second user terminal, and sets the user interface of the first user terminal to be shareable with the second user terminal under specified conditions so as to enable contact-free remote work processing, wherein at least one of the first user terminal and the second user terminal may comprise a user interface sharing module which performs history logging about user interface sharing.


