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Erschienen in: Measurement Techniques 7/2021

01.12.2021 | ACOUSTIC MEASUREMENTS

Determination of the Hydrophone Phase-Frequency Response by its Amplitude-Frequency Response

verfasst von: A. E. Isaev, B. I. Khatamtaev

Erschienen in: Measurement Techniques | Ausgabe 7/2021

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Abstract

Investigating the reliability of the hydrophone model proposed in VNIIFTRI, consisting of an advance line and a minimum-phase part, including sound diffraction effect and resonance properties of the active element, is one of the COOMET 786/RU/19 pilot comparisons' responsibilities. This model allows for inverse operation, and the employment of the Hilbert transform to generate a phase-frequency response from the amplitude-frequency response. This study presents experimental results from the facilities of the State Primary Standard of units of acoustic pressure and vibrational velocity in an aqueous medium GET 55-2017. Obtaining the phase-frequency response for an acoustic center of the receiver is not essential for numerous practical applications. Therefore it is sufficient to determine the shape of the phase-frequency response using far less laborious methods.

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Literatur
1.
Zurück zum Zitat G. Hayman and S. Robinson, "Phase calibration of hydrophones by the free-field reciprocity method," Proc. 11th Europ. Conf. on Underwater Acoustics, Edinburgh (2012), pp. 1437–1444. G. Hayman and S. Robinson, "Phase calibration of hydrophones by the free-field reciprocity method," Proc. 11th Europ. Conf. on Underwater Acoustics, Edinburgh (2012), pp. 1437–1444.
2.
Zurück zum Zitat G. Hayman, Y. Wang, and S. P. Robinson, “A comparison of two methods for phase response calibration of hydrophones in the frequency range 10–400 kHz,” J. Acoust. Soc. Am., 133, No. 2, 750–759 (2013).CrossRefADS G. Hayman, Y. Wang, and S. P. Robinson, “A comparison of two methods for phase response calibration of hydrophones in the frequency range 10–400 kHz,” J. Acoust. Soc. Am., 133, No. 2, 750–759 (2013).CrossRefADS
3.
Zurück zum Zitat A. E. Isaev, A. N. Matveev, A. M. Polikarpov, and N. G Shcherblyuk, “Measurement of the phase-frequency response of the hydrophone sensitivity by the field by the reciprocity method,” Izmer. Tekhn., No. 6, 56–58 (2013). A. E. Isaev, A. N. Matveev, A. M. Polikarpov, and N. G Shcherblyuk, “Measurement of the phase-frequency response of the hydrophone sensitivity by the field by the reciprocity method,” Izmer. Tekhn., No. 6, 56–58 (2013).
4.
Zurück zum Zitat A. E. Kolesnikov (ed.), Handbook of Hydroacoustics, Sudostroenie, Leningrad (1988), 2nd ed. A. E. Kolesnikov (ed.), Handbook of Hydroacoustics, Sudostroenie, Leningrad (1988), 2nd ed.
5.
Zurück zum Zitat L. F. Lependin, Acoustics: Manual for Graduate Students, Vysshaya Shkola, Moscow (1978). L. F. Lependin, Acoustics: Manual for Graduate Students, Vysshaya Shkola, Moscow (1978).
6.
Zurück zum Zitat L. A. Bessonov, Theoretical Foundations of Electrical Engineering. Electrical Circuits: Textbook, Yurayt, Moscow (2014), 12th ed. L. A. Bessonov, Theoretical Foundations of Electrical Engineering. Electrical Circuits: Textbook, Yurayt, Moscow (2014), 12th ed.
7.
Zurück zum Zitat A. E. Isaev and A. N. Matveev, “Two approaches to the calibration of a hydrophone by the field with continuous radiation in a not drowned-out basin,” Izmer. Tekhn., No. 12, 47–51 (2008) A. E. Isaev and A. N. Matveev, “Two approaches to the calibration of a hydrophone by the field with continuous radiation in a not drowned-out basin,” Izmer. Tekhn., No. 12, 47–51 (2008)
8.
Zurück zum Zitat G. R. Harris, “Time-delay spectrometry measurement of magnitude and phase of hydrophone response,” IEEE T. Ultrason. Ferroelectr. Freq. Control, 58, No. 11, 2325–2333 (2011).CrossRef G. R. Harris, “Time-delay spectrometry measurement of magnitude and phase of hydrophone response,” IEEE T. Ultrason. Ferroelectr. Freq. Control, 58, No. 11, 2325–2333 (2011).CrossRef
9.
Zurück zum Zitat M. P. Cooling and V.F. Humphrey, “A Nonlinear Propagation Model-Based Phase Calibration Technique for Membrane Hydrophones,” IEEE T. Ultrason. Ferroelectr. Freq. Control, 55, 84–93 (2008).CrossRef M. P. Cooling and V.F. Humphrey, “A Nonlinear Propagation Model-Based Phase Calibration Technique for Membrane Hydrophones,” IEEE T. Ultrason. Ferroelectr. Freq. Control, 55, 84–93 (2008).CrossRef
10.
Zurück zum Zitat S. Umchid, R. Gopinath, K. Srinivasan, et al., “Development of Calibration Techniques for Ultrasonic Hydrophone Probes in the Frequency Range from 1 to 100 MHz,” Ultrasonics, 49, 306–311 (2009).CrossRef S. Umchid, R. Gopinath, K. Srinivasan, et al., “Development of Calibration Techniques for Ultrasonic Hydrophone Probes in the Frequency Range from 1 to 100 MHz,” Ultrasonics, 49, 306–311 (2009).CrossRef
Metadaten
Titel
Determination of the Hydrophone Phase-Frequency Response by its Amplitude-Frequency Response
verfasst von
A. E. Isaev
B. I. Khatamtaev
Publikationsdatum
01.12.2021
Verlag
Springer US
Erschienen in
Measurement Techniques / Ausgabe 7/2021
Print ISSN: 0543-1972
Elektronische ISSN: 1573-8906
DOI
https://doi.org/10.1007/s11018-021-01974-6

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