Estimation Method of an Electrical Equivalent Circuit for Sonar Transducer Impedance Characteristic of Multiple Resonance

Author:

Jang Jejin1ORCID,Choi Jaehyuk1,Lee Donghun2,Mok Hyungsoo3ORCID

Affiliation:

1. Research and Development Division, Tin Technology Co., Ltd., Seongnam 13212, Republic of Korea

2. Agency for Defense Development, Changwon 51678, Republic of Korea

3. Department of Electrical Engineering, Konkuk University, Seoul 05029, Republic of Korea

Abstract

Improving the operational efficiency and optimizing the design of sound navigation and ranging (sonar) systems require accurate electrical equivalent models within the operating frequency range. The power conversion system within the sonar system increases power efficiency through impedance-matching circuits. Impedance matching is used to enhance the power transmission efficiency of the sonar system. Therefore, to increase the efficiency of the sonar system, an electrical-matching circuit is employed, and this necessitates an accurate equivalent circuit for the sonar transducer within the operating frequency range. In conventional equivalent circuit derivation methods, errors occur because they utilize the same number of RLC branches as the resonant frequency of the sonar transducer, based on its physical properties. Hence, this paper proposes an algorithm for deriving an equivalent circuit independent of resonance by employing multiple electrical components and particle swarm optimization (PSO). A comparative verification was also performed between the proposed and existing approaches using the Butterworth–van Dyke (BVD) model, which is a method for deriving electrical equivalent circuits.

Funder

Agency for Defense Development

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Biochemistry,Instrumentation,Atomic and Molecular Physics, and Optics,Analytical Chemistry

Reference19 articles.

1. Choi, J.H., and Mok, H.S. (2019). Simultaneous Design of Low-Pass Filter with Impedance Matching Transformer for SONAR Transducer Using Particle Swarm Optimization. Energies, 12.

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3. Discontinuous PWM Techniques of Three-Leg Two-Phase Voltage Source Inverter for Sonar System;Choi;IEEE Access,2020

4. Trends and Applications on Multi-beam Side Scan Sonar Sensor Technology;Kye;Electron. Telecommun. Trends,2013

5. Oh, Y.-S. (2012). Development of High Resolution Side Scan Sonar System Using Multi Beam Array Porcessing. [Ph.D. Thesis, Department of Ocean Engineering, Graduate School of Korea Maritime University].

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