Audio Collider Conversion for Zero-Latency Trisonic Playback
Find Innovative SolutionsGenerate Solutions
Solution Overview
Problem
Existing audio processing technologies introduce latency when converting stereophonic audio to trisonic audio, leading to undesirable delays in live events and discomfort for performers and audiences.
Innovation Solution
A system utilizing magnetic and/or electrical collisions to convert stereophonic audio into trisonic audio with zero latency, employing coil subsystems to generate and process audio signals through magnetic and electrical collisions without digital signal processing delays.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Adaptability or versatility
If digital signal processing is used to convert stereophonic audio to trisonic audio, then audio conversion functionality is achieved, but latency is introduced causing delay
Solution Approach 1:
The patent replaces digital signal processing (electronic/mechanical system) with magnetic field collision (physical field system). The colliders use magnetic fields to directly interact with audio signals, transforming stereophonic audio to trisonic audio through magnetic collision rather than digital computation, thereby eliminating processing latency while maintaining conversion functionality.
2Productivity
If digital processors are used for real-time audio processing, then audio signal transformation is achieved, but time delay occurs between input and output
Solution Approach 1:
The invention substitutes digital processor-based audio transformation with magnetic field-based transformation. The colliders process audio signals through magnetic collision in real-time without the computational delays inherent in digital processors, achieving both real-time processing capability and zero latency simultaneously.
3Adaptability or versatility
If conventional audio processing systems are used, then audio conversion is performed, but latency causes discomfort for performers and audiences
Solution Approach 1:
The patent replaces conventional digital audio processing systems with magnetic collider-based systems. This substitution eliminates the latency that causes discomfort for performers and audiences, while preserving the audio format conversion capability from stereophonic to trisonic audio through magnetic field interaction.
Applied Scientific Principles
This section explains which scientific principles are used to turn an abstract innovation direction into a practical engineering solution.
Function Achieved in This Case
Achieves instantaneous conversion of stereophonic audio to trisonic audio, eliminating latency and ensuring real-time signal processing and perception, enhancing performance and audience experience in live events.
Implementation Method 1
a system of colliders based on magnetic collisions and/or electrical collisions for the generation and playback of channels or signals of a trisonic audio with zero latency
Implementation Method 2
a system of colliders based on magnetic collisions and/or electrical collisions for the generation and playback of channels or signals of a trisonic audio with zero latency
Data Source
AI summary
A system of colliders is based on magnetic and/or electrical collisions for the generation and reproduction of channels/signals of a trisonic audio from stereophonic audio or any pair of input audio signals, with zero latency. The system is configured to collide the panning point value information corresponding to the audio signals entering the system, where such collision generates a new pan point value information that corresponds to the new signal of a resulting trisonic audio. The system is configured to collaborate directly or indirectly with an audio playback system configured to emit, reproduce and/or transmit such signals from a trisonic audio, i.e., the system is configured so that such signals from a trisonic audio are immediately reproduced through a trisonic audio playback system. This process of generating and reproducing signals from a trisonic audio is carried out with zero latency.


