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확률적 방향각 추정에 기반한 수중 음원의 위치 인식 기법Underwater Acoustic Source Localization based on the Probabilistic Estimation of Direction Angle

Other Titles
Underwater Acoustic Source Localization based on the Probabilistic Estimation of Direction Angle
Authors
최진우최현택
Issue Date
11월-2014
Publisher
한국로봇학회
Keywords
Acoustic Source Localization; Bayesian update; Generalized Cross Correlation; EKF
Citation
한국로봇학회 논문지, v.9, no.4, pp 206 - 215
Pages
10
Journal Title
한국로봇학회 논문지
Volume
9
Number
4
Start Page
206
End Page
215
URI
https://www.kriso.re.kr/sciwatch/handle/2021.sw.kriso/9269
DOI
10.7746/jkros.2014.9.4.206
Abstract
Acoustic signal is crucial for the autonomous navigation of underwater vehicles. For this purpose, this paper presents a method of acoustic source localization. The proposed method is based on the probabilistic estimation of time delay of acoustic signals received by two hydrophones. Using Bayesian update process, the proposed method can provide reliable estimation of direction angle of the acoustic source. The acquired direction information is used to estimate the location of the acoustic source. By accumulating direction information from various vehicle locations, the acoustic source localization is achieved using extended Kalman filter. The proposed method can provide a reliable estimation of the direction and location of the acoustic source, even under for a noisy acoustic signal. Experimental results demonstrate the performance of the proposed acoustic source localization method in a real sea environment.coustic signals received by two hydrophones. Using Bayesian update process, the proposed method can provide reliable estimation of direction angle of the acoustic source. The acquired direction information is used to estimate the location of the acoustic source. By accumulating direction information from various vehicle locations, the acoustic source localization is achieved using extended Kalman filter. The proposed method can provide a reliable estimation of the direction and location of the acoustic source, even under for a noisy acoustic signal. Experimental results demonstrate the performance of the proposed acoustic source localization method in a real sea environment.
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