Simultaneous Estimation of Direction of Arrival and Sound Speed Using a Non-Uniform Sensor Array
Ryouichi Nishimura, Kenichi Takizawa
Abstract
Direction of arrival (DOA) estimation is a crucially important task of signal processing for audio applications. Infrasound might form Lamb or acoustic gravity waves and accordingly propagate at a speed that is different from the general speed. Therefore, conventional DOA methods that require a presumed sound speed are not applicable. As described herein, a newly proposed algorithm can estimate DOA and sound speed simultaneously. The algorithm, which is based on arrival time differences measured using a non-uniform sensor array, obtains estimates by nonlinear optimization with a constraint. Comparisons with conventional methods through computer simulations showed superior performance of the proposed algorithm in some conditions, such as a case where sound speeds differ from the assumed ones.
BibTeX
@inproceedings{icassp2023_simultaneousesti,
title = {Simultaneous Estimation of Direction of Arrival and Sound Speed Using a Non-Uniform Sensor Array},
author = {Ryouichi Nishimura and Kenichi Takizawa},
booktitle = {ICASSP 2023},
year = {2023}
}