• Title/Summary/Keyword: 음향 인텐시티 기술

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The Envelope Intensity for the Analysis of a Burst Signal (충격성 신호 해석을 위한 포락선 인텐시티)

  • ;Hideo Suzuki
    • The Journal of the Acoustical Society of Korea
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    • v.12 no.3
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    • pp.68-75
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    • 1993
  • 포락선 인텐시티는 신호의 진폭 변화에 비해 상대적으로 천천히 벼놔한다. 본 논문에서는 이러한 성질을 이용하여 종래의 순시 음향 인덴시티법을 수정한 새로운 포락선 인텐시티법을 제안하여 비정상 신호 해석에 이 기술을 적용하였다. 이 기술의 유효성은 반사체가 있는 무향실 내의 충격성 음원에 대해 수치계산 결과와 실험결과의 비교로부터 검증되었고 또한, 이 기술은 무향실 및 잔향실 내의 평판 타음 음원의 지향특성 해석에 응용되었다. 수치계산 결과 및 측정결과는 일치하였고, 제안된 방법은 종래의 순시 인텐시티법보다 특히 과도특성을 갖는 충격성 음원 분석에 보다 유효함이 확인되었다.

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Application of deep learning for accurate source localization using sound intensity vector (음향인텐시티 벡터를 통해 정확한 음원 위치 추정을 위한 딥러닝 적용)

  • Iljoo Jeong;In-Jee Jung;Seungchul Lee
    • The Journal of the Acoustical Society of Korea
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    • v.43 no.1
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    • pp.72-77
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    • 2024
  • Recently, the necessity for sound source localization has grown significantly across various industrial sectors. Among the sound source localization methods, sound intensimetry has the advantage of having high accuracy even with a small microphone array. However, the increase in localization error at high Helmholtz numbers have been pointed out as a limitation of this method. The study proposes a method to compensate for the bias error of the measured sound intensity vector according to the Helmholtz numbers by applying deep learning. The method makes it possible to estimate the accurate direction of arrival of the source by applying a dense layer-based deep learning model that derives compensated sound intensity vectors when inputting the sound intensity vectors measured by a tetrahedral microphone array for the Helmholtz numbers. The model is verified based on simulation data for all sound source directions with 0.1 < kd < 3.0. One can find that the deep learning-based approach expands the measurement frequency range when implementing the sound intensimetry-based sound source localization method, also one can make it applicable to various microphone array sizes.

An Experimental Study of the Application of the Sound-Intensity Technique on the Detection of Defect in Rolling Bearings (굴림 베어링 요소의 결함 검출시 음향 인텐시티기술적용에 관한 실험적 연구)

  • 차경옥
    • Journal of Advanced Marine Engineering and Technology
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    • v.23 no.4
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    • pp.473-479
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    • 1999
  • The two-microphone sound-intensity technique has been used for the detection of defects in ra-ally loaded ball bearings. The difference in the sound-intensity levels measured for bearings with no defect and for those with intentionally introduced defects of different sizes n heir elements under various operating conditions of loads and speeds is demonstrated. The results show that of an inner-race or ball defect. It is difficult to detect defects at lower speeds. Sound-pressure measurements were also performed for comparison and it shown that the detectability of defects by sound-intensity measurements is better than that by sound-pressure measurements.

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Comparison of the sound source localization methods appropriate for a compact microphone array (소형 마이크로폰 배열에 적용 가능한 음원 위치 추정법 비교)

  • Jung, In-Jee;Ih, Jeong-Guon
    • The Journal of the Acoustical Society of Korea
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    • v.39 no.1
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    • pp.47-56
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    • 2020
  • The sound source localization technique has various application fields in the era of internet-of-things, for which the probe size becomes critical. The localization methods using the acoustic intensity vector has an advantage of downsizing the layout of the array owing to a small finite-difference error for the short distance between adjacent microphones. In this paper, the acoustic intensity vector and the Time Difference of Arrival (TDoA) method are compared in the viewpoint of the localization error in the far-field. The comparison is made according to the change of spacing between adjacent microphones of the three-dimensional microphone array arranged in a tetrahedral shape. An additional test is conducted in the reverberant field by varying the reverberation time to verify the effectiveness of the methods applied to the actual environments. For estimating the TDoA, the Generalized Cross Correlation-Phase transform (GCC-PHAT) algorithm is adopted in the computation. It is found that the mean localization error of the acoustic intensimetry is 2.9° and that of the GCC-PHAT is 7.3° for T60 = 0.4 s, while the error increases as 9.9°, 13.0° for T60 = 1.0 s, respectively. The data supports that a compact array employing the acoustic intensimetry can localize of the sound source in the actual environment with the moderate reflection conditions.

음향 에너지, 파워, 인텐시티의 능동소음제어 방법론

  • 김양한;강성우
    • 전기의세계
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    • v.44 no.10
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    • pp.40-46
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    • 1995
  • 소음을 줄이고자 하는 위치 혹은 공간의 선정문제, 또한 제어용 음파가 원래 제어하고자 하는 음파와 함께 섞인 상태에서 관찰하게 됨으로서 발생하는 문제, 제어용 음원의 위치 선정에 관련된 사항 등 가관측성 및 가제어성으로 대별될 수 있는 부분과 제어대상 물리량, 즉 제어대상 가격함수 선정의 물리적 적합성 등이 있을 수 있다. 전술한 가관측성 및 가제어성 관련 사항은 참고문허[3]에 비교적 상세히 기술되어 있으므로 본 고에서는 제어대상 가격함수의 선정과 관련된 음향학적 사실들을 중점적으로 다루도록 한다.

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A study on the identification of dynamic characteristics of tennis racket by acoustic intensity method (음향 인텐시터법을 이용한 테니스 라켓의 동특성에 관한 연구)

  • 오재응;이유엽;염성하
    • Transactions of the Korean Society of Mechanical Engineers
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    • v.10 no.5
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    • pp.601-610
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    • 1986
  • The acoustic intensity in the very near field of a vibrating surface reveals information about the location of sound sources and sinks. A system model of tennis racket was developed from simultaneous measurement of excitation force, surface vibration and the near field sound pressure. The characteristics of structural dynamics were obtained by standard experimental modal analysis techniques while the sound radiation characteristics were determined by estimating the acoustic intensity. In this paper, the information about vibration behviour was obtained by acoustic intensity method and some, experiments for verification were carried out. Close correlation was found between experimentally determined acoustic intensity and vibration mode patterns of the tennis racket.

Modeling of ambient noise in ocean environment using coupled mode (연성모드법을 이용한 해양 배경소음 모델링)

  • Park, Jungyong;Kwon, Hyuckjong
    • The Journal of the Acoustical Society of Korea
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    • v.41 no.4
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    • pp.397-409
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    • 2022
  • A model is developed for the calculation of sea surface generated ambient noise in the range dependent ocean environment. The sources are located in the horizontal plane all around and their depths are at the near-surface. The receiver array is located in the range dependent ocean waveguide. One-way coupled mode method is used to model the acoustic propagation between the sources and receiver in the range dependent waveguide, and the cross spectral density matrix of noise is derived. In simulation, noise intensity, beamforming result and coherence function are calculated from the cross spectral density matrix. These results are compared with those in the range independent environment. The modeling result shows the effect of the vertical directionality and asymmetry characteristics of the horizontal plane.