English

Acoustic Source Localization with the Angular Spectrum Approach in Continuously Stratified Media

Signal Processing 2020-12-02 v3

Abstract

The angular spectrum approach (ASA)---a fast, frequency domain method for calculation of the acoustic field---enables passive source localization and modeling forward propagation in homogeneous media with high computational efficiency. Here we show that, if the medium is continuously stratified, a first-order analytical solution may be obtained for the field at arbitrary depth. Our simulations show that the stratified ASA solution enables accurate source localization as compared to the uncorrected ASA (error from 1.2±\pm0.3 to 0.49±\pm0.3 wavelengths) at scalings relevant to biomedical (kLkL \sim 500, where LL is the length of the measurement aperture), underwater (kLkL \sim 800), and atmospheric (kLkL \sim 10) acoustic applications. Overall the total computation was on the order milliseconds on standard hardware (225±\pm84 ms, compared with 78±6378\pm63 ms for the homogeneous ASA formulation over all cases). Collectively, the results suggest the proposed ASA phase correction enables efficient and accurate method for source localization in continuously stratified environments.

Keywords

Cite

@article{arxiv.2007.01133,
  title  = {Acoustic Source Localization with the Angular Spectrum Approach in Continuously Stratified Media},
  author = {Scott Schoen and Costas D. Arvanitis},
  journal= {arXiv preprint arXiv:2007.01133},
  year   = {2020}
}

Comments

arXiv admin note: text overlap with arXiv:1906.08156

R2 v1 2026-06-23T16:48:08.899Z