Comparative analysis of propagation models for communications in underwater acoustic environments

Authors

  • Stalin Bolivar Molina Molina Escuela Superior Politécnica de Chimborazo
  • Erika Viviana Ñaupa Shagñay

DOI:

https://doi.org/10.47187/perspectivas.6.1.201

Keywords:

Models, Distance, Losses, Depth, Propagation, Lightning

Abstract

This paper presents a comparative analysis of the propagation modes with respect to the importance of the shape of the sound velocity profile, and also to determine the transmission loss of the acoustic field generated by an acoustic wave propagating in water.
These modes are used to obtain the graphical representation of the transmission loss depending on distance and depth. The
respective graphs are obtained as a result of their simulation taking into account the propagated mode and the lateral contribution of the wave, thus with the parameters that are exposed can determine the most efficient model when used in acoustic propagation. The comparative lies in seeing the details of each model and in such a way to observe, to be able to take into account in addition to the efficiency the errors that can also exist, in addition to it in conjunction with tiny details subscribed, to learn several theories to arrive at a propitious result

Métricas

References

P. C. Etter, «Setting,» de Underwater acoustic modeling, Boca raton, Taylor & Francis Group, 2018, pp. 1-2.

A. R. Pau, «defensa,» 21 03 2022. [En línea]. Available:

https://www.defensa.com/defensa-naval/sistema-comunicacionacustica-submarina-permite-conexion-entre.

S. e. práctico, 2019. [En línea]. Available:

https://www.saberespractico.com/curiosidades/que-es-la-velocidaddel-sonido/. [Último acceso: 28 06 2023].

Peralta Rodolfo y Piccolini Carlos, «Graduation Final Project to obtain the degree of Electronic Engineer.,» RINFI, Mar de Plata, 2022.

F. Zapata, «Velocidad de sonido,» 26 octubre 2019. [En línea]. Available: https://www.lifeder.com/velocidad-del-sonido/. [Último acceso: 24 5 2023].

S. J. L. J. S. William Moebs, «Velocidad del sonido,» de Física universitaria volumen 1 , R. UNIVERSITY, Ed., Houston, Texas 77005, OpenStax, 2021, pp. 866-868.

X. Lurton, «An introduction to underwater acoustics,» 2010, p. Capitulo 2.

M. S. Arnedo, Velocidad del sonido, Universidad Carlos III de Madrid: MindTouch®.

J. M. Fiore, «Manual de Laboratorio - La Ciencia del Sonido,»

California.

Á. G. y. R. Domínguez, 2013. [En línea]. Available:

https://www.ugm.org.mx/publicaciones/geos/pdf/geos13-2/ecuaciones33-2.pdf.

C. a. M. equation, «conectronica,» 09 06 2010. [En línea]. Available:

https://www.conectronica.com/tecnologia/investigacion/modelos-depropagacion-de-senales-acusticas-en-entornos-subacuaticos-i.

P. R. a. P. Carlos, «Generic speed profile,» Mar de Plata, 2022.

T. S. y. T. T. M. Suzuki, Digital Acoustic Image Transmission System for Deep-Sea Research Submersible, M. t. O. Through, Ed., Newport: OCEANS' 92, 1992.

S. S. a. M. Zuffo, «La reflexión de la luz: especular y difusa,» QUEHACER EDUCATIVO, p. 44, 2017.

J. Aparicio, « Study of channel models for underwater communications,» Alcalá, Madrid.

A. K. y. S. Yauchi, «Sistema de comunicación acústica para robots submarinos,» OCEANS' 89, 1989, pp. 765-770.

C. R. Guerra, «digital,» [En línea]. Available: https://digital.csic.es/bitstream/10261/4865/1/Ranz_RA.pdf. [Último

acceso: 29 05 2023].

M. S. y. J. Mercer, Colossus Revisited: A Review and Extension of the Marsh-Schulkin Shallow Water Transmission Loss Model, University of Washington: APL-UW 8508, 1985.

A. D. D. y. A. H. Y. Fabiola. [En línea]. Available: http://sappi.ipn.mx/cgpi/archivos_anexo/20070053_4488.pdf.

P. E. E. C. SUPERFICIAL, «tesis.ipn,» [En línea]. Available: http://tesis.ipn.mx/handle/123456789/17751.

C. D. González, «Nuevos horizontes en la Detección Acústica Submarina,» EJÉRCITOS, pp. 3-5, 2022.

Published

2024-02-21

How to Cite

[1]
S. B. Molina Molina and E. V. Ñaupa Shagñay, “Comparative analysis of propagation models for communications in underwater acoustic environments”, Perspectivas, vol. 6, no. 1, Feb. 2024.

Issue

Section

Artículos arbitrados