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Published on: April 28, 2022
Directional coherence loss coefficients for characterizing scattering distributions in enclosures
Dingding Xie1, Wouter Wittebol1, Maarten Hornikx1
1Department of the Built Environment, Eindhoven University of Technology, Eindhoven, 5600 MB, the Netherlands.
This study introduces directional coherence loss coefficients (DCLCs) to quantify sound field scattering. DCLCs help model sound propagation in rooms by distinguishing between direct sound and scattered sound components.
Area of Science:
- Acoustics
- Signal Processing
Background:
- Sound fields in enclosures are complex, influenced by reflections and scattering from interior elements.
- Quantifying coherence loss is crucial for accurate acoustic modeling, especially in furnished rooms.
Purpose of the Study:
- To introduce directional coherence loss coefficients (DCLCs) for quantifying angular sound field coherence loss.
- To develop a hybrid model for sound field reconstruction using DCLCs.
Main Methods:
- Sampling sound fields with a spherical receiver and decomposing into plane waves using spherical harmonics expansion.
- Analyzing time-dependent coherence coefficients between directional impulse responses (IRs) in furnished and empty rooms.
- Deriving DCLCs from coherence coefficients to differentiate coherent (specular) and incoherent (scattering) sound components.
Main Results:
- DCLCs were extracted from simulations and measurements in rooms with varying element distributions and transducer positions.
- A hybrid model using DCLCs accurately reconstructed sound fields, showing agreement with ground truth metrics.
- The study verified DCLCs' ability to characterize localized scattering distributions.
Conclusions:
- Directional coherence loss coefficients (DCLCs) provide a novel method for quantifying sound field scattering.
- The proposed hybrid model, guided by DCLCs, offers improved sound field reconstruction in complex acoustic environments.
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