• Title/Summary/Keyword: 선배열소나

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Adaptive Beamforming Method for Turning Towed Line Array SONAR (회전하는 견인 선배열 소나의 적응 빔 형성 기법)

  • Lee, Seokjin;Park, Kyung-Min;Chung, Suk-Moon
    • The Journal of the Acoustical Society of Korea
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    • v.33 no.6
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    • pp.383-391
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    • 2014
  • In order to detect underwater acoustic signals, various SONAR array types have been developed, including towed line array SONAR system (TASS). However, the TASS suffers from performance degradation which is caused by aperture deformation during a turn, because the TASS have a long-aperture array. A parabolic array model for turning TASS have been developed to solve the degradation problem occurred during a turn. In this paper, adaptive beamforming system is developed using the parabolic TASS model to cancel interference signals. The developed beamforming system is based on generalized sidelobe canceller (GSC) structure and self-tuning adaptive algorithm.

Robust Beamforming Method by Linear Array Shape Estimation using Kanlman Filter (칼만필터 선배열 형상 추정에 의한 견실한 빔형성 기법 연구)

  • 한정우
    • Proceedings of the Acoustical Society of Korea Conference
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    • 1996.06a
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    • pp.18-21
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    • 1996
  • 예인형 선배열 소나에서 기존의 선배열 빔형성 기법을 적용하면 예인함 기동시 선배열 형상 변형에 의해 심각한 성능 저하 현상이 나타난다. 이러한 문제 해결을 위해 센서배열 변형을 고려한 견실한 빔형성 기법은 선배열 형상 추정을 위해 칼만필터를 이용한 형상 추정기법을 이용하고, 변형보상 빔형성을 위해 선배열 세그먼트 기울기 추정값을 이용하는 변형보상 빔형성 알고리즘을 제안하였다. 제안된 기법을 기존의 빔형성 기법을 적용하여 시뮬레이션에 의해 제안된 기법의 보상성능을 입증 하였다.

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Performance Prediction Techniques of Linear Array Sonar by Merging Data of Real Time and Data Base (실시간 해양정보와 DB정보의 융합을 통한 선배열소나의 성능예측기법 연구)

  • Na Young-Nam;Chang Duck-Hong;Jurng Mun-Sub;Choi Jin-Hyuk;Shim Taebo
    • Proceedings of the Acoustical Society of Korea Conference
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    • autumn
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    • pp.299-304
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    • 1999
  • 시, 공간적으로 변하는 해양환경에서 선배열 소나의 성능예측 정보를 추출하기 위해서는 정밀 해양 DB (Data Base)와 함께 현장에서 실시간으로 측정한 해양자료의 연동이 필수적이다. 이러한 실시간 정보와 DB 정보를 융합하여 얻을 수 있는 정보들로는 전술적 운용상황, 근거리 환경소음 분포, 전파손실/탐지확률 분포, 그리고 음파의 전파 경로 등이 있다. 소나 운용자는 이들 정보로부터 최종적으로 전술상황을 판단함과 동시에 소나의 최적 운용 수심 및 방향을 권고할 수 있다. 국과연에서는 이러한 정보를 획득하기 위하여 음탐환경분석 S/W를 개발하였으며, 수차례의 해상시험을 통하여 그 성능을 검증하였다. 본 논문에서는 실시간 해양정보와 DB정보의 융합을 통하여 선배열 소나의 핵심 성능예측 기법인 전파손실/탐지확률 계산과 근거리 환경소음 계산을 수행하는 알고리즘을 제시한다. 아울러 S/W로 구현된 이들 기법들의 해상시험 결과도 제시하고자 한다.

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A study on wideband adaptive beamforming based on WBRCB for passive uniform line array sonar (WBRCB 기반의 수동 선배열 소나 광대역 적응빔형성 기법 연구)

  • Hyun, Ara;Ahn, Jae-Kyun;Yang, In-Sik;Kim, Gwang-Tae
    • The Journal of the Acoustical Society of Korea
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    • v.38 no.2
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    • pp.145-153
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    • 2019
  • Adaptive beamforming methods are known to suppress sidelobes and improve detection performance of weak signal by constructing weight vectors depending on the received signal itself. A standard adaptive beamforming like the MVDR (Minimum Variance Distortionless Response) is very sensitive to mismatches between weight vectors and actual signal steering vectors. Also, a large computational complexity for estimating a stable covariance matrix is required when wideband beamforming for a large-scale array is used. In this paper, we exploit the WBRCB (Wideband Robust Capon Beamforming) method for stable and robust wideband adaptive beamforming of a passive large uniform line array sonar. To improve robustness of adaptive beamforming performance in the presence of mismatches, we extract a optimum mismatch parameter. WBRCB with extracted mismatch parameter shows performance improvement in beamforming using synthetic and experimental passive sonar signals.

Adaptive beamforming of triplet arrays for active sonar systems (능동소나 시스템을 위한 삼중 배열의 적응 빔형성)

  • Ahn, Jae-Kyun;Ryu, Yongwoo;Chun, Seung-Yong;Kim, Seongil
    • The Journal of the Acoustical Society of Korea
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    • v.37 no.1
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    • pp.66-72
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    • 2018
  • In this paper, we propose an adaptive beamforming algorithm of triplet arrays for active sonar systems. The proposed algorithm consists of three steps: matched filters, cardioid beamforming, and line array beamforming. First, we apply a matched filter of a transmitted pulse to received individual sensor signals and obtain filterd signals. Then, we perform the fast Fourier transform to the matched filter results, and make a cardioid beam for each triplet data, respectively. Finally, we apply an adaptive beamforming by assuming that the cardioid beams are input signals of a line array. Experimental results demonstrate that the proposed algorithm provides better performances than conventional algorithms.

Comparison of independent component analysis algorithms for low-frequency interference of passive line array sonars (수동 선배열 소나의 저주파 간섭 신호에 대한 독립성분분석 알고리즘 비교)

  • Kim, Juho;Ashraf, Hina;Lee, Chong-Hyun;Cheong, Myoung Jun
    • The Journal of the Acoustical Society of Korea
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    • v.38 no.2
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    • pp.177-183
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    • 2019
  • In this paper, we proposed an application method of ICA (Independent Component Analysis) to passive line array sonar to separate interferences from target signals in low frequency band and compared performance of three conventional ICA algorithms. Since the low frequency signals are received through larger bearing angles than other frequency bands, neighboring beam signals can be used to perform ICA as measurement signals of the ICA. We use three ICA algorithms such as Fast ICA, NNMF (Non-negative Matrix Factorization) and JADE (Joint Approximation Diagonalization of Eigen-matrices). Through experiments on real data obtained from passive line array sonar, it is verified that the interference can be separable from target signals by the suggested method and the JADE algorithm shows the best separation performance among the three algorithms.

Performance Analysis of Data Association Applied Frequency Weighting in 3-Passive Linear Array Sonars (주파수 가중치를 적용한 3조의 수동 선배열 소나 센서의 정보 연관 성능 분석)

  • 구본화;윤제한;홍우영;고한석
    • The Journal of the Acoustical Society of Korea
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    • v.23 no.2
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    • pp.109-116
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    • 2004
  • This paper deals with data association using 3 sets of passive linear array sonars (PUS) geometrically positioned in a Y-shaped configuration, but fixed in an underwater environment. The data association problem is directly transformed into a 3-D assignment problem, which is known to be NP-hard. For generic passive sensors, it can be sotted using conventional algorithms, while it in PLAS becomes a formidable task due to the presence of bearing ambiguity. In particular, we proposed data association method robust to bearing measurements errors by incorporating frequency information and analyze a region of ghost problem by geometrical relation PUS and target. We analyzed the effectiveness of the proposed method by representative simulation in multi-target.

Robust adpative beamforming for triplet sonar arrays (삼중 배열 소나를 위한 강인한 적응 빔형성 기법)

  • Ahn, Jae-Kyun;Ryu, Yongwoo;Chun, Seung-Yong;Kim, Seongil
    • The Journal of the Acoustical Society of Korea
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    • v.36 no.2
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    • pp.115-122
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    • 2017
  • We propose a robust adaptive beamforming algorithm for triplet array sonar. The proposed beamforming algorithm obtains robustness to mismatches, left/right discrimination, and has two steps. The first is a cardioid beamformer, which supports left/right discrimination of target signals. It applies the conventional delay-and-subtract to each triplet's signal with its rotation angle and obtains multiple cardioid beams. The second is a robust adaptive beamforming to minimize nearby interferences. We regard cardioid beams as input signals of a line array and apply an adaptive beamforming algorithm to the cardioid beams. Simulations results show that the proposed algorithm provides significantly better performance than the conventional algorithms, while supporting left/right discrimination of target signals.

Target Range Estimation Method using Ghost Target in the Submarine Linear Array Sonar (잠수함 선배열소나의 허위표적 정보를 이용한 표적의 거리추정 기법)

  • Choi, Byungwoong;Kim, Kyubaek
    • Journal of the Korea Institute of Military Science and Technology
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    • v.18 no.5
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    • pp.532-537
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    • 2015
  • In this paper, we propose target range estimation method using ghost target in the submarine linear array sonar. Usually, when submarine detect target, they use passive sonar detection to avoid self-disclosure by active sonar transmission. But, originally, passive linear array sonar have limitation for target range estimation and additional processing is required to get target range information. For the case of near-field target, typical range estimation method is using multiple information by multipath effect in underwater environment. Acoustic signal generated from target are propagated along with numerous multipath in underwater environment. Since multipath target signals received in the linear array sonar have different conic angles each other, ghost target is appeared at the bearing different with real target bearing and sonar operator can find these information on the operation console. Under several assumption, this geometric properties can be analysed mathematically and we get the target range by derivation of this geometric equations using measured conic angles of real target and ghost target.

Association Algorithm for the Distributed Passive Linear Arrays and the Radar (분산 선배열 소나와 레이다를 이용한 표적 연관 기법)

  • Kim Jin-Seok
    • Journal of the Korea Institute of Military Science and Technology
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    • v.8 no.1 s.20
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    • pp.25-31
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    • 2005
  • PLA(Passive Linear Array) system has been primarily utilized to detect and track underwater targets, such as submarines. This system has difficulty in distinguishing between underwater targets and surface ships in a dense target environment. And a single-PLA system does not provide target state observability. At least two PLAs are necessary to observe a track uniquely. To classify and localize the underwater targets effectively, first of all, it is very of importance to discriminate the surface ships in the multi-target environment. These problems can be overcome by the association of distributed PLAs and radars. In this paper, we present an algorithm to solve the track-to-track association of the heterogeneous data from three PLAs and one radar are noncollocated with known sensor positions. Also, this paper shows the simulation results to verify the proposed algorithm.