Music-Responsive Video Generation for Diverse Karaoke Gameplay
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Solution Overview
Problem
Current karaoke recording functions are relatively simple and lack diversity, failing to enrich the gameplay and enhance user experience.
Innovation Solution
A video generation method that displays atmosphere effects based on music characteristics, generates result videos with audio from the music, and incorporates features like co-capturing, evaluation props, and video editing, enhancing the gameplay and user experience.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Adaptability or versatility
If traditional karaoke recording function is used, then the function is simple and easy to operate, but the gameplay is not enriched and user experience is not enhanced
Solution Approach 1:
The video capturing function is designed to serve multiple purposes: traditional karaoke recording, snapshot capturing, and video generation with atmosphere effects. By making the system multi-functional, it enriches gameplay diversity while maintaining a unified interface that doesn't significantly increase operational complexity for the user.
Solution Approach 2:
The capturing function is segmented into different modes (snapshot mode and video mode) with further subdivisions (karaoke recording, atmosphere effect video). Each mode can be independently activated through the same capturing control, allowing gameplay diversity without requiring separate complex controls for each function.
2Ease of operation
If atmosphere effects are integrated into video capturing, then user experience is enhanced, but the system complexity increases
Solution Approach 1:
The atmosphere effect generation function is merged with the video capturing function. The same capturing control that triggers video recording also triggers the atmosphere effect generation based on music characteristics, eliminating the need for separate controls and reducing system complexity while enhancing user experience.
Solution Approach 2:
The atmosphere effect is generated automatically based on the music characteristics without requiring manual user input or configuration. The system self-services by analyzing the music and generating appropriate atmosphere effects, enhancing user experience while avoiding the complexity of manual effect selection and adjustment interfaces.
3Adaptability or versatility
If co-capturing function is added, then gameplay is enriched, but the device complexity increases
Solution Approach 1:
The capturing control is designed as a universal control that works across multiple capturing modes including traditional video recording and new co-capturing mode. This multi-functionality approach enriches gameplay by allowing users to capture both front and rear camera views simultaneously without requiring separate complex controls for each mode.
Solution Approach 2:
The co-capturing function is segmented as an optional feature that can be activated independently through the same capturing control. The system segments the capturing functionality into different view modes (front camera, rear camera, combined) that are all accessible through the unified capturing interface, enriching gameplay without significantly increasing operational complexity.
Data Source
AI summary
The present disclosure provides a video generation method, an apparatus, a device and a storage medium. The method includes: firstly, when a selection operation for a target music is received, an atmosphere effect corresponding to the target music is displayed on a capturing page, and when a trigger operation for a capturing control on the capturing page is received, a target result video is generated based on the displayed atmosphere effect, where the audio in the target result video is obtained based on the target music, and the atmosphere effect corresponding to the target music is determined based on characteristics of the target music.


