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Pervasive underwater passive target tracking for the computation of standard deviation solution in a 3D environment

M. Kavitha Lakshmi (Computer Science and Engineering, Koneru Lakshmaiah Education Foundation, Guntur, India)
S. Koteswara Rao (Electronics and Communications Engineering, Koneru Lakshmaiah Education Foundation, Guntur, India)
Kodukula Subrahmanyam (Computer Science and Engineering, Koneru Lakshmaiah Education Foundation, Guntur, India)

International Journal of Intelligent Computing and Cybernetics

ISSN: 1756-378X

Article publication date: 13 August 2021

Issue publication date: 4 October 2021

60

Abstract

Purpose

Nowadays advancement in acoustic technology can be explored with marine assets. The purpose of the paper is pervasive computing underwater target tracking has aroused military and civilian interest as a key component of ocean exploration. While many pervasive techniques are currently found in the literature, there is little published research on the effectiveness of these paradigms in the target tracking context.

Design/methodology/approach

The unscented Kalman filter (UKF) provides good results for bearing and elevation angles only tracking. Detailed methodology and mathematical modeling are carried out and used to analyze the performance of the filter based on the Monte Carlo simulation.

Findings

Due to the intricacy of maritime surroundings, tracking underwater targets using acoustic signals, without knowing the range parameter is difficult. The intention is to find out the solution in terms of standard deviation in a three-dimensional (3D) space.

Originality/value

A new method is found for the acceptance criteria for range, course, speed and pitch based on the standard deviation for bearing and elevation 3D target tracking using the unscented Kalman filter covariance matrix. In the Monte Carlo simulation, several scenarios are used and the results are shown.

Keywords

Citation

Kavitha Lakshmi, M., Koteswara Rao, S. and Subrahmanyam, K. (2021), "Pervasive underwater passive target tracking for the computation of standard deviation solution in a 3D environment", International Journal of Intelligent Computing and Cybernetics, Vol. 14 No. 4, pp. 580-597. https://doi.org/10.1108/IJICC-06-2021-0104

Publisher

:

Emerald Publishing Limited

Copyright © 2021, Emerald Publishing Limited

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