Live Stream Interface Loading Sequence Optimization
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Solution Overview
Problem
The existing live stream interface loading methods result in long waiting times for users as all interaction controls must be loaded before interaction areas can be displayed, affecting interaction efficiency.
Innovation Solution
A live stream interface loading method and apparatus that acquire live stream interaction area loading sequence information, detect a trigger instruction, and load and display interaction areas according to the sequence information, allowing for prioritization based on usage frequency and product promotion strategies.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Ease of operation
If all interaction controls are loaded sequentially from left to right and top to bottom, then the loading order is simple and easy to implement, but the waiting time is prolonged and interaction efficiency is reduced
Solution Approach 1:
The patent applies preliminary action by pre-loading interaction controls that are likely to be used soon, based on usage frequency analysis and prediction algorithms. Frequently accessed controls are loaded in advance before the user actually needs them, reducing waiting time while maintaining a manageable loading process through prioritized queues.
Solution Approach 2:
The system implements feedback mechanisms by continuously monitoring user interaction patterns and adjusting the loading sequence dynamically. Usage frequency data is collected and fed back into the loading algorithm, which then optimizes the preload sequence based on actual user behavior, creating a closed-loop system that improves efficiency over time.
2Stability of the object's composition
If interaction areas are displayed only after all interaction controls are loaded, then the interface structure is simple and consistent, but user interaction is delayed and efficiency is reduced
Solution Approach 1:
The patent segments the interaction controls into multiple priority groups based on usage frequency and importance. Instead of treating all controls as a single batch, the system divides them into segments that can be loaded and displayed in stages, allowing the interface to become partially interactive before all controls are fully loaded.
Solution Approach 2:
The system introduces dynamics by making the interface progressively interactive rather than statically waiting for complete loading. Interaction areas can be displayed and become functional as controls are loaded in priority order, transforming the rigid all-or-nothing approach into a flexible, progressive disclosure model that adapts to user needs.
3Device complexity
If the loading sequence follows a fixed left-to-right, top-to-bottom pattern, then the loading logic is simple and deterministic, but frequently used interaction areas may not be loaded first
Solution Approach 1:
The patent changes the loading parameters from fixed spatial coordinates (left-to-right, top-to-bottom) to dynamic priority values based on usage frequency. The system assigns priority parameters to different controls and reorders the loading sequence according to these parameters, allowing frequently used controls to be loaded first while maintaining a manageable complexity through algorithmic prioritization.
Data Source
AI summary
Provided are a live stream interface loading method and apparatus, a terminal, a server and a storage medium. The live stream interface loading method includes: acquiring live stream interaction area loading sequence information; detecting a trigger instruction, wherein the trigger instruction is used for indicating display of a live stream interface; and loading and displaying a plurality of interaction areas in the live stream interface according to the live stream interaction area loading sequence information.


