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Diffusion-Based Sound Source Localization Using a Distributed Network of Microphone Arrays
Davide Albertini1, Alberto Bernardini1, Gioele Greco1
1Dipartimento di Elettronica, Informazione e Bioingegneria, Politecnico di Milano, 20133 Milan, Italy.
Sensors (Basel, Switzerland)
|April 12, 2025
Summary
This study introduces a distributed optimization approach for 3D sound source localization (SSL) using microphone arrays. The proposed method enhances accuracy and stability, even in sparsely connected networks, by adaptively penalizing underperforming arrays.
Area of Science:
- Acoustics and Signal Processing
- Distributed Systems
- Optimization Theory
Background:
- Traditional microphone array networks for 3D sound source localization (SSL) often depend on centralized data processing, posing challenges to scalability and robustness.
- Existing methods may struggle with network connectivity and varying acoustic conditions like reverberation and signal-to-noise ratio (SNR).
Purpose of the Study:
- To reformulate 3D sound source localization (SSL) as a distributed optimization problem for enhanced network performance.
- To introduce and evaluate a computationally distributed Adapt-Then-Combine (ATC) strategy for microphone array networks.
- To develop adaptive cooperation strategies that improve localization accuracy by penalizing underperforming arrays.
Main Methods:
- Recasting 3D SSL with microphone array networks as a distributed optimization problem.
- Implementing a computationally distributed Adapt-Then-Combine (ATC) diffusion strategy.
- Developing adaptive cooperation strategies using error-based and distance-based penalties for array performance.
- Evaluating performance in simulated acoustic environments with varying reverberation and SNR levels.
Main Results:
- The proposed distributed ATC approach achieves high localization accuracy and stability.
- Adaptive cooperation strategies effectively penalize detrimental array contributions, improving overall performance.
- The method demonstrates robustness even in sparsely connected networks.
Conclusions:
- A distributed optimization framework offers a scalable and robust solution for 3D sound source localization.
- Adaptive cooperation strategies are crucial for optimizing performance in decentralized microphone array systems.
- The presented approach maintains accuracy and stability across diverse acoustic conditions and network topologies.

