Dynamic Interactive Component Generation in Virtual Conferences
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Solution Overview
Problem
Existing virtual conferencing systems require manual setup of interactive components, leading to delays and interruptions in meeting flow when they are generated during a session.
Innovation Solution
A computing system dynamically generates interactive components on demand during a virtual conference by receiving start and end signals from the host device, using preset interaction options and speech recognition to extract topics, allowing for automatic creation and display of UI elements without manual intervention.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Ease of operation
If manual creation of interactive components is used, then customization and control are improved, but meeting flow and efficiency deteriorate due to delays and interruptions
Solution Approach 1:
The system pre-generates multiple types of interactive components (polls, quizzes, discussions, surveys) with customizable templates before the meeting starts. When the host needs an interactive component during the meeting, the system instantly deploys a pre-configured component without requiring manual creation, thus eliminating setup delays while maintaining customization through pre-selected templates.
Solution Approach 2:
The system automatically generates and deploys interactive components based on host triggers without requiring manual intervention. The AI-powered system self-manages component creation, customization, and deployment, freeing the host from manual setup tasks while maintaining full control through programmable triggers and templates.
2Adaptability or versatility
If interactive components are generated during the meeting, then real-time interaction is improved, but setup time and complexity increase due to manual creation requirements
Solution Approach 1:
Multiple interactive component templates are pre-configured with various interaction types, questions, and settings before the meeting. When real-time interaction is needed, the host simply triggers the appropriate pre-configured component, enabling immediate real-time interaction without complex setup procedures.
Solution Approach 2:
The system provides a universal set of pre-configured interactive component templates that can serve multiple meeting scenarios (polls, quizzes, discussions, surveys). These multi-functional templates can be adapted to different meeting needs through simple trigger selection, reducing complexity while maintaining versatility for real-time interaction.
3Manufacturing precision
If manual creation of interactive components is required, then customization precision is improved, but productivity and efficiency deteriorate
Solution Approach 1:
Interactive components are pre-customized with specific settings, questions, and configurations before the meeting. This preliminary customization ensures precision and attention to detail while the actual deployment during the meeting is instantaneous, achieving both high customization precision and high productivity.
Solution Approach 2:
The system uses pre-configured templates as master copies that can be instantly replicated and deployed. These templates contain all necessary customization details, allowing the system to produce identical or slightly modified versions of interactive components rapidly without sacrificing customization precision.
Data Source
AI summary
In some examples, a virtual conferencing platform establishes a virtual conference among a host client and multiple devices. During the virtual conference, the virtual conferencing platform receives a start-triggering signal from the host device to start an interactive session and generates an interactive component for the interactive session in response to receiving the start-triggering signal. The interactive component comprises a UI element presenting a combination of interaction options, and multiple responses. The virtual conferencing platform causes the UI element presenting the combination of interaction options to be displayed in respective participant UIs of the virtual conference on the multiple devices and receives the multiple responses from the multiple devices. The virtual conferencing platform then receives an end-triggering signal and deactivates the interactive component in the respective UIs of the virtual conference on the multiple devices in response to receiving the end-triggering signal.


