Loudspeaker Sound Effect Adjustment via Spatial Distribution Detection
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Solution Overview
Problem
Traditional sound equipment lacks diversity in sound effects, leading to auditory fatigue due to monotonous sound experiences.
Innovation Solution
A method and apparatus that adjust sound effects based on the spatial distribution state of multiple loudspeaker units, determining a corresponding sound effect mode and adjusting the sound equipment accordingly, using modules for state determination, mode determination, and adjustment.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Adaptability or versatility
If traditional sound equipment uses fixed sound effect modes, then the device complexity is reduced and ease of operation is improved, but the adaptability and sound effect diversity deteriorate
Solution Approach 1:
The sound equipment automatically detects the spatial distribution state of loudspeaker units and autonomously determines and switches to the appropriate sound effect mode without requiring manual user intervention. The system serves itself by using its own spatial configuration data to make intelligent sound effect selections, thereby achieving adaptability without increasing operational complexity.
Solution Approach 2:
The system changes the sound effect parameters dynamically based on the spatial distribution parameters of the loudspeaker units. By detecting changes in spatial arrangement and correspondingly adjusting sound effect modes, the system achieves adaptability while maintaining simple operation through automatic parameter transformation.
2Adaptability or versatility
If sound equipment provides multiple sound effect modes, then the adaptability and user experience are improved, but the device complexity increases
Solution Approach 1:
The system automatically selects appropriate sound effect modes based on detected spatial distribution states, eliminating the need for users to manually choose from multiple sound effect options. This self-service approach provides sound effect variety while maintaining operational simplicity by removing the selection burden from the user.
Solution Approach 2:
The system establishes a feedback loop where the spatial distribution state of loudspeaker units is continuously detected and used to automatically adjust sound effect modes. This closed-loop control provides adaptability through multiple sound effect options while maintaining ease of operation by using automatic feedback-driven adjustments rather than manual user input.
Data Source
AI summary
The present application relates to the technical field of loudspeakers. Disclosed are a loudspeaker device, a method, apparatus and device for adjusting the sound effect thereof, and a medium. The method is used for increasing the diversity of the sound effect of the loudspeaker device, and comprises: determining the spatial distribution state of multiple loudspeaker units in the loudspeaker device; determining a sound effect mode corresponding to the spatial distribution state; and adjusting the sound effect of the loudspeaker device according to the sound effect mode. According to the present application, the sound effect mode is accordingly adjusted according to the spatial distribution state of multiple loudspeaker units in the loudspeaker device. In this way, when the spatial distribution state changes, the sound effect mode of the loudspeaker device also changes, thereby overcoming the defect of the single sound effect of the loudspeaker device, i.e., according to the present application, the diversity of the sound effect of the loudspeaker device can be increased efficiently.


