Live Stream Interaction Layout for Phase-Adaptive User Actions
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Solution Overview
Problem
Existing live stream applications suffer from low operation efficiency and poor interaction effects due to fixedly arranged interaction components that do not adapt to the varying needs of users during different phases of a live stream event.
Innovation Solution
A method and apparatus that dynamically display target interaction components in a live stream page based on the content of the live stream video, allowing for adaptive interaction component display and function execution in response to user triggers.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Ease of operation
If interaction components are fixedly arranged in the function area, then the layout is simple and stable, but the operation efficiency and interaction effect are low
Solution Approach 1:
The patent applies the dynamics principle by making the interaction components movable rather than fixed. The components can be dynamically adjusted to different positions on the screen based on user interaction and system logic, allowing the interface to adapt its layout during operation. This resolves the contradiction by enabling efficient access to interaction components without requiring a complex predetermined layout structure.
Solution Approach 2:
The patent implements universality by creating a unified function area that can serve multiple purposes. The same screen region dynamically displays different interaction components (comments, gifts, sharing, etc.) based on the current live streaming context, eliminating the need for separate fixed areas for each function and simplifying the overall structure while improving accessibility.
2Adaptability or versatility
If interaction components are fixedly arranged, then the system structure is simple, but the adaptability to different live stream phases is poor
Solution Approach 1:
The system dynamically adjusts which interaction components are displayed and their positions based on the current phase of the live stream. Different phases (e.g., game start, intense moments, conclusion) trigger different component configurations, enabling the interface to adapt to varying user needs throughout the streaming event without requiring multiple fixed layouts.
Solution Approach 2:
The system incorporates feedback mechanisms that monitor the live stream content and user behavior to automatically adjust the display of interaction components. This feedback loop enables the system to adapt to different live stream phases by detecting contextual cues and responding with appropriate component configurations, reducing the need for manual intervention while improving adaptability.
3Ease of operation
If all interaction components are displayed simultaneously, then all functions are accessible, but the user concentration and interaction effect are reduced
Solution Approach 1:
The patent extracts only the most relevant interaction components from the full set of available functions and displays them prominently in the function area. Less critical components are either hidden or made accessible through secondary means, allowing users to focus on the most important interactions during each phase of the live stream while still maintaining access to other functions when needed.
Solution Approach 2:
The system applies local quality by giving different display priorities to different interaction components based on their relevance to the current context. Critical components receive prominent positioning and larger display areas, while less critical ones are minimized or relocated, creating a non-uniform but context-optimized layout that enhances user concentration on essential interactions.
Data Source
AI summary
The embodiments of the disclosure provide a method, apparatus, electronic device and storage medium for displaying a live stream page. The method includes; displaying a live stream page, the live stream page comprising a first area and a second area, wherein the first area is configured to display a live stream video; displaying a target interaction component in the second area based on content of the live stream video displayed in the first area; and in response to a triggering operation for the target interaction component, performing a component function corresponding to the target interaction component. So that the interaction efficiency when the user triggers the corresponding interaction component in different phases of the live stream is improved, the concentration degree of the interaction component triggered by the user in the live streaming is higher, and the direct interaction effect of the user in the live streaming is improved.


