Real-time sound synthesis of pass-by noise: comparison of spherical harmonics and time-varying filters

Author:

Alkmim Mansour,Vandernoot GuillaumeORCID,Cuenca JacquesORCID,Janssens Karl,Desmet Wim,De Ryck LaurentORCID

Abstract

This paper proposes and compares two sound synthesis techniques to render a moving source for a fixed receiver position based on indoor pass-by noise measurements. The approaches are based on the time-varying infinite impulse response (IIR) filtering and spherical harmonics (SH) representation. The central contribution of the work is a framework for realistic moving source sound synthesis based on transfer functions measured using static far-field microphone arrays. While the SHs require a circular microphone array and a free-field propagation (delay, geometric spread), the IIR filtering relies on far-field microphones that correspond to the propagation path of the moving source. Both frameworks aim to provide accurate sound pressure levels in the far-field that comply with standards. Moreover, the frameworks can be extended to additional sources and filters (e.g. sound barriers) to create different moving source scenarios by removing the room size constraint. The results of the two sound synthesis approaches are preliminary evaluated and compared on a vehicle pass-by noise dataset and it is shown that both approaches are capable of accurately and efficiently synthesize a moving source.

Funder

H2020 Marie Skłodowska-Curie Actions

Publisher

EDP Sciences

Subject

Electrical and Electronic Engineering,Speech and Hearing,Computer Science Applications,Acoustics and Ultrasonics

Reference46 articles.

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3. ISO 362–3: Measurement of noise emitted by accelerating road vehicles — engineering method — Part 3: Indoor testing M and N categories. Technical Report. 2016.

4. Janssens K., Bianciardi F., Britte L., Van de Ponseele P.: Pass-by noise engineering: A review of different transfer path analysis techniques, ISMA. 2014, p. 18.

5. Corbeels P.: Using component test bench measurements to predict pass-by noise contributions for trucks virtually, in: Aachen Acoustics Colloquium – AAC, 27–29 November 2017, Aachen. 2017.

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