• 제목/요약/키워드: Acoustic Target Strength

검색결과 91건 처리시간 0.028초

담수역 징거미 새우(Macrobrachium koreana)의 음향 반사 강도 특성 (Acoustic target strength measurements on immobile riverine shrimp, oriental river prawn(Macrobrachium koreana), in freshwater)

  • 황보규;신현옥;조성호;이대재;강돈혁
    • 수산해양기술연구
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    • 제44권1호
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    • pp.37-45
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    • 2008
  • Assessment and management of fisheries abundance in fresh water like a river or a lake is very important to maintain fisheries itself as well as tourist industry even if their scale is not much large. The species for catch in fresh water are mainly a mandarin fish, a carp, an eel, and others. Because oriental river prawn is a main prey of these species and the change in its abundance is directly related to their abundance change in fresh water, information on the abundance and distribution of the species are necessary. Hydroacoustic survey is known to one of the efficient method among several methodology. Information on acoustic target strength is key parameter to estimate abundance for acoustic survey. In this study, measurements on oriental river prawn, Macrobrachium koreana, were conducted for two high frequencies(200kHz and 420kHz) with tilt angle using automatic rotating system. The results of acoustic target strength obtained from the experiment were compared with those of acoustic scattering model, Distorted Wave Born Approximation(DWBA) model. For 200kHz, the result of acoustic target strength experiments was expressed in terms of the averaged target strength dependence on the body langth(BL, cm) as a following relationship; < $TS_{200kHz}$ > = 45.9log(BL) - 107.4. These results provide basic information for studying acoustic target strength and conducting acoustic survey of oriental river prawn.

어류 체장의 자동 식별을 위한 어종별, 체장별 및 주파수별 음향 반사 강도의 데이터 뱅크 구축 (Construction of a Data Bank for Acoustic Target Strength with Fish Species, Length and Acoustic Frequency for Measuring Fish Size Distribution)

  • 이대재;신형일
    • 한국수산과학회지
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    • 제38권4호
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    • pp.265-275
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    • 2005
  • A prerequisite for deriving the abundance estimates from acoustic surveys for commercially important fish species is the identification of target strength measurements for selected fish species. In relation to these needs, the goal of this study was to construct a data bank for converting the acoustic measurements of target strength to biological estimates of fish length and to simultaneously obtain the target strength-fish length relationship. Laboratory measurements of target strength on 15 commercially important fish species were carried out at five frequencies of 50, 70, 75, 120 and 200 kHz by single and split beam methods under the controlled conditions of the fresh and the sea water tanks with the 389 samples of dead and live fishes. The target strength pattern on individual fish of each species was measured as a function of tilt angle, ranging from $-45^{\circ}$ (head down aspect) to $+45^{\circ}$ (head up aspect) in $0.2^{\circ}$ intervals, and the averaged target strength was estimated by assuming the tilt angle distribution as N $(-5.0^{\circ},\;15.0^{\circ})$. The TS to fish length relationship for each species was independently derived by a least-squares fitting procedure. Also, a linear regression analysis for all species was performed to reduce the data to a set of empirical equations showing the variation of target strength to a fish length, wavelength and fish species. For four of the frequencies (50, 75, 120 and 200 kHz), an empirical model for fish target strength (TS, dB) averaged over the dorsal sapect of 602 fishes of 10 species and which spans the fish length (L, m) to wavelength (\Lambda,\;m)$ ratio between 5 and 73 was derived: $TS=19.44\;Log(L)+0.56\;Log(\Lambda)-30.9,\;(r^2=0.53)$.

펄스 타입의 음향신호를 고려한 음향표적강도 이론식 개발 (Derivation of Acoustic Target Strength Equation Considering Pulse Type of Acoustic Signal)

  • 김기준;홍석윤;권현웅
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2007년도 추계학술대회논문집
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    • pp.812-819
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    • 2007
  • Acoustic Target Strength (TS) is a major parameter of the active sonar equation, which indicates the ratio of the radiated intensity from the source to the re-radiated intensity by a target. This research provides the time pattern of TS in time domain, which is applicable to pulse modulated acoustic pressure field. If the time pattern of TS is predicted by using TS equation in frequency domain, it takes long time and difficult since time function pulsed acoustic wave may be decomposed into their frequency domain components. But TS equation in time domain has a convenience. If the expression for pulsed acoustic field has been obtained, the problem can be solved. Furthermore this paper introduces about mathematical equivalence quantities between EM wave and Acoustic Wave.

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부세에 대한 음향반사강도의 체장 의존성 (Fish length dependance of acoustic target strength for large yellow croaker)

  • 강희영;이대재
    • 수산해양기술연구
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    • 제39권3호
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    • pp.239-248
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    • 2003
  • 우리나라 주변해역에 서식하는 주요 어종의 체장식별에 필요한 음향반사강도의 data bank를 구축하기 위한 연구의 일환으로 대형음향수조에서 부세의 체장에 따른 음향반사강도를 측정하고, 그 반사강도의 체장 의존성 및 KRM 산란모텔에 의한 이론 반사강도와 측정치를 비교, 분석한 결과를 요약하면 다음과 같다. 1. 체장의 범위가 21.0-32.5 cm인, 총 13마리의 부세를 대상으로 구한 평균반사강도패턴에서 최대 반사강도는 tilt angle이 -13.35$^{\circ}$ 인 입사방향에서 나타났고, 이 때의 반사강도는 -35.13 ㏈ 이었다. 2. 부세의 체장 (fork length, cm)과 평균반사강도의 사이에는 다음의 회귀직선식이 성립하였다. TS=23. 76log(L) -73.45(r=0.47) TS=20log(L) -67.35이 결과로부터 부세의 반사강도는 체장의 2.376승에 비례하는 경향을 나타내었고, 체장변환계수는 체장의 2승에 근사시켜 구한 값 보다 6.1 ㏈ 더 낮게 나타났다. 이들의 결과는 향후 체장어군탐지기의 체장변환계수의 값으로서 활용될 것으로 판단된다. 3. 평균체장은 25.59 cm인 총 13마리의 부세에 대한 반사강도의 빈도분포로부터 구한 반사강도는 -41.23 ㏈이었고, 이 값으로부터 구한 체장변환계수는 -69.72 ㏈이었다. 4. KRM model에 의한 부세의 이론반사강도는 L/λ 비가 15보다 작은 영역에서는 파동상의 변화를 나타내면서 증가하는 경향을 나타내었고, 15보다 큰 영역에서는 매우 완만하게 증가하는 경향을 나타내었다. 5. 부세의 평균반사강도의 측정치는 KRM 산란모델에 의한 예측치보다 전반적으로 낮은 경향을 나타내었고, 보다 정량적인 분석을 위해서는 광범위한 주파수 범위에 대한 실험이 필요하다고 판단된다.

수중표적에 대한 고주파수 음향산란 해석 (High Frequency Acoustic Scattering Analysis of Underwater Target)

  • 김국현;조대승;김종철
    • 대한조선학회논문집
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    • 제42권5호
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    • pp.528-533
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    • 2005
  • A mono-static high frequency acoustic target strength analysis scheme was developed for underwater targets, based on the far-field Kirchhoff approximation. Au adaptive triangular beam method and a concept of virtual surface were adopted for considering the effect of hidden surfaces and multiple reflections of an underwater target, respectively. A test of a simple target showed that the suggested hidden surface removal scheme is valid. Then some numerical analyses, for several underwater targets, were carried out; (1) for several simple underwater targets, like sphere, square plate, cylinder, trihedral corner reflector, and (2) for a generic submarine model, The former was exactly coincident with the theoretical results including beam patterns versus azimuth angles, and the latter suggested that multiple reflections have to be considered to estimate more accurate target strength of underwater targets.

근접장 구면파 소스의 다중 반사 효과를 고려한 수중함의 음향표적강도 해석 (Acoustic Target Strength Analysis for Underwater Vehicles Covering Near Field Spherical Wave Source Originated Multiple Bounce Effects)

  • 조병구;홍석윤;권현웅
    • 대한조선학회논문집
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    • 제47권2호
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    • pp.196-209
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    • 2010
  • For the analysis of Acoustic Target Strength(TS) that indicates the scattered acoustic intensity from the underwater vehicles, an analysis program that is applicable to scatterers insonified by spherical wave source in near field is developed. In this program, the Physical Optics(PO) method is embedded as a base component. To increase the accuracy of the program, multiple bounce effects based on Geometrical Optics(GO) method are applied. To implement multiple bounce effects, GO method is used together with PO method. In detail, GO method has a concern in the evaluation of the effective area, and PO method is involved in the calculation of Acoustic Target Strength for the final effective area that is evaluated by GO method. For the embodiment of near field spherical wave source originated multiple bounce effects, image source concept is implemented additively to the existing multiple bounce algorithm which assumes plane wave insonification. Various types of models are tested to evaluate the reliability of the developed program and finally, a submarine is analyzed as an arbitrary scatterer.

북서 태평양 멸치(Japanese anchovy)에 대한 측면 음향 반사강도 특성 (In situ side-aspect target strength of Japanese anchovy (Engraulis japonicus) in northwestern Pacific Ocean)

  • 이형빈;강돈혁
    • 수산해양기술연구
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    • 제46권3호
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    • pp.248-256
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    • 2010
  • Acoustic side-aspect target strength (TS) of living Japanese anchovy (Engraulis japonicus) was measured at 120kHz during in situ experiments. The data were collected by lowering and horizontally projecting the splitbeam transducer into the anchovy school. For analysis and interpretation of the side-aspect TS data, acoustic theoretical model, based on the fish morphology, and dorsal-aspect TS data were used. Total length of the anchovy ranged from 6.6 to 12.8cm (mean length 9.3cm). The side-aspect TS distributed between -40 and -55dB, has an obvious length dependency. The mean side-aspect TS of the anchovy was -47.8dB, and the TS was about 2dB higher than mean TS generated from dorsal-aspect measurements. With reference to maximum TS, the results of the side-aspect TS were distributed within the range of the theoretical and dorsal-aspect TS. Apparently these tendency indicates that side-aspect TS measured from the study is useful data. These in situ measurements of side-aspect TS can be applied to improve acoustic detection and estimates of the anchovy, and is necessary to measure with a various frequency and length for making enhance data.

감성돔(Acanthopagrus schlegeli)의 유영자세각과 체장에 따른 200 kHz대역 음향산란강도 (Target Strength According to Tilt Angle and Length of Black Seabream Acanthopagrus schlegeli at 200 kHz-frequency)

  • 최정화;오우석;윤은아;임양재;이경훈
    • 한국수산과학회지
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    • 제51권5호
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    • pp.566-570
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    • 2018
  • This study determined the acoustic target strength (TS; dB) of black seabream Acanthopagrus schlegeli off the southern coast of Korea. For the ex-situ measurements, 200 kHz split beam transducers were used, and a Kirchhoff-ray mode (KRM) model acoustic model was used for the calculation. The fork length and total weight of the black seabream ranged from 6.4 to 30.8 cm and 6.4 to 683.8 g. respectively 200 kHz, the TS could beexpressed as a function of fork length as: $TS_{max}=20log_{10}(FL)-60.35(R=0.92)$ and $TS_{avg.}=20log_{10}(FL)-66.89(R=0.88)$. These TS results for black seabream can be used for estimating the biomass of fish in acoustic surveys in coastal areas.

Development of Acoustic Target Strength Analysis System for Submarine

  • Kwon, Hyun-Wung;Hong, Suk-Yoon;Jeon, Jae-Jin;Song, Jee-Hun
    • International Journal of Ocean System Engineering
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    • 제3권3호
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    • pp.158-163
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    • 2013
  • The acoustic target strength (TS) is one of the most important parameters for a submarine's stealth design. Because modem submarines are larger than their predecessors, TS must be managed at each design stage in order to reduce it. To predict the TS of a submarine, TASTRAN R1 was developed based on a Kirchhoff approximation in a high-frequency range. This program can present TS values that include multi-bounce effect in the exterior and interior of the structure by combining geometric optics (GO) and physical optics (PO) methods, anechoic coating effect by using the reflection coefficient, and response time pattern for a detected target. In this paper, TS calculations for a submarine model with the above effects are simulated by using this developed program, and the TS results are discussed.

한국 연근해에서 어획된 주요 12어종의 75 kHz에 대한 음향 반사 강도의 체장 의존성 (Fish length dependence of acoustic target strength for 12 dominant fish species caught in the Korean waters at 75 kHz)

  • 이대재
    • 수산해양기술연구
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    • 제41권4호
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    • pp.296-305
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    • 2005
  • Acoustic target strength (TS) of 12 commercially important fish species caught in the Korean waters had been investigated and their results were presented. Laboratory measurements of target strength on 12 dominant fish species were carried out at a frequencies of 75 kHz by single beam method under the controlled condition of the water tank with the 241 samples of dead and live fishes. The target strength pattern on individual fish of each species was measured as a function of tilt angle, ranging from $-45^{\circ}$ (head down aspect) to $45^{\circ}$ (head up aspect) in $0.2^{\circ}$ intervals, and the averaged target strength was estimated by assuming the tilt angle distribution as N ($-5.0^{\circ}$, $^15.0{\circ}$). The 75 to fish length relationship for each species was independently derived by a least - squares fitting procedure. Also, a linear regression analysis for all species was performed to reduce the data to a set of empirical equations showing the variation of target strength to fish length and fish species. An empirical model for fish target strength(TS, dB) averaged over the dorsal aspect of 158 fishes of 7 species and which spans the fish length(L, m) to wavelength(${\lambda}$, m) ratio between 6.2 and 21.3 was derived: TS: 27.03 Log(L)-7.7Log(${\kanbda}$)-17.21, ($r^2$=0.59).