Design of a Broadband Array Pattern of Underwater Cymbal Transducers

Cymbal transducers are frequently used as an array rather than a single element because of their high quality factor and low energy conversion efficiency. When used as an array, cymbal transducers are likely to have a big change in their frequency characteristics due to the interaction with neighbor...

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Main Authors: Donghyun Kim, Hayeong Shim, Changmin Oh, Kyungseop Kim, Heeseon Seo, Yongrae Roh
Format: Article
Language:English
Published: MDPI AG 2021-09-01
Series:Sensors
Subjects:
Online Access:https://www.mdpi.com/1424-8220/21/18/6119
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spelling doaj-f0816f654e0743708ed6269a72dd82432021-09-26T01:22:46ZengMDPI AGSensors1424-82202021-09-01216119611910.3390/s21186119Design of a Broadband Array Pattern of Underwater Cymbal TransducersDonghyun Kim0Hayeong Shim1Changmin Oh2Kyungseop Kim3Heeseon Seo4Yongrae Roh5School of Mechanical Engineering, Kyungpook National University, Daegu 41566, KoreaSchool of Mechanical Engineering, Kyungpook National University, Daegu 41566, KoreaSchool of Mechanical Engineering, Kyungpook National University, Daegu 41566, KoreaAgency for Defense Development, Changwon 51678, KoreaAgency for Defense Development, Changwon 51678, KoreaSchool of Mechanical Engineering, Kyungpook National University, Daegu 41566, KoreaCymbal transducers are frequently used as an array rather than a single element because of their high quality factor and low energy conversion efficiency. When used as an array, cymbal transducers are likely to have a big change in their frequency characteristics due to the interaction with neighboring elements. In this study, we designed an array pattern of cymbal transducers to achieve a wide frequency bandwidth using this property. First, cymbal transducers with specific center frequencies were designed. Next, a 2 × 2 planar array was constructed with the designed transducers, where dielectric polarity directions of the transducers were divided into two cases (i.e., same and different). For the array, the effect of the difference in the center frequencies and the spacing between the transducers on the acoustic characteristics of the entire array was analyzed. Based on the results, the structural pattern of the array was optimized to have the maximum fractional bandwidth while maintaining the transmitting voltage response over a given requirement. The design validity was verified by making cymbal array prototypes, followed by measuring their performances and comparing them with that of the design.https://www.mdpi.com/1424-8220/21/18/6119cymbal transducerarray patternoptimal designbroadband
collection DOAJ
language English
format Article
sources DOAJ
author Donghyun Kim
Hayeong Shim
Changmin Oh
Kyungseop Kim
Heeseon Seo
Yongrae Roh
spellingShingle Donghyun Kim
Hayeong Shim
Changmin Oh
Kyungseop Kim
Heeseon Seo
Yongrae Roh
Design of a Broadband Array Pattern of Underwater Cymbal Transducers
Sensors
cymbal transducer
array pattern
optimal design
broadband
author_facet Donghyun Kim
Hayeong Shim
Changmin Oh
Kyungseop Kim
Heeseon Seo
Yongrae Roh
author_sort Donghyun Kim
title Design of a Broadband Array Pattern of Underwater Cymbal Transducers
title_short Design of a Broadband Array Pattern of Underwater Cymbal Transducers
title_full Design of a Broadband Array Pattern of Underwater Cymbal Transducers
title_fullStr Design of a Broadband Array Pattern of Underwater Cymbal Transducers
title_full_unstemmed Design of a Broadband Array Pattern of Underwater Cymbal Transducers
title_sort design of a broadband array pattern of underwater cymbal transducers
publisher MDPI AG
series Sensors
issn 1424-8220
publishDate 2021-09-01
description Cymbal transducers are frequently used as an array rather than a single element because of their high quality factor and low energy conversion efficiency. When used as an array, cymbal transducers are likely to have a big change in their frequency characteristics due to the interaction with neighboring elements. In this study, we designed an array pattern of cymbal transducers to achieve a wide frequency bandwidth using this property. First, cymbal transducers with specific center frequencies were designed. Next, a 2 × 2 planar array was constructed with the designed transducers, where dielectric polarity directions of the transducers were divided into two cases (i.e., same and different). For the array, the effect of the difference in the center frequencies and the spacing between the transducers on the acoustic characteristics of the entire array was analyzed. Based on the results, the structural pattern of the array was optimized to have the maximum fractional bandwidth while maintaining the transmitting voltage response over a given requirement. The design validity was verified by making cymbal array prototypes, followed by measuring their performances and comparing them with that of the design.
topic cymbal transducer
array pattern
optimal design
broadband
url https://www.mdpi.com/1424-8220/21/18/6119
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AT kyungseopkim designofabroadbandarraypatternofunderwatercymbaltransducers
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