TY - JOUR
T1 - A novel joint estimator of multiple underwater sources with multiple parameters
AU - Zhang, Qunfei
AU - Huang, Jianguo
AU - Bao, Zhen
PY - 2004
Y1 - 2004
N2 - In this paper, a new generalized eigenstructure-based 3-dimensional joint estimator (GETJE) for direction, frequency, and time-delay of multiple sources is presented. For the 2-dimensional joint parameter estimation, a ESPRIT-based algorithm has been proposed in [3]. Now we extend it to 3-dimensional. Using a single echo wave, the bearings, frequencies and time-delays of multiple reflectors are jointly estimated. We construct 2 sub-arrays like ESPRIT, and then conduct generalized eigen-decomposition for their auto-correlation matrix and cross-correlation matrix. Bearing parameters can be estimated from eigenvalues, while frequency parameters can also be obtained from corresponding eigenvectors. After modifying the time-delay vectors of the envelop of emitting signal according to the estimated frequencies, the time-delay parameters can be obtained simultaneously. Computer simulations show that the GETJE can carry out the 3-dimensional joint parameter estimation without additional pairing in the case of lower SNR. Preferable results are also obtained in water tank experiments, which indicate that the GETJE is robust for sensor array errors and has the potential applications.
AB - In this paper, a new generalized eigenstructure-based 3-dimensional joint estimator (GETJE) for direction, frequency, and time-delay of multiple sources is presented. For the 2-dimensional joint parameter estimation, a ESPRIT-based algorithm has been proposed in [3]. Now we extend it to 3-dimensional. Using a single echo wave, the bearings, frequencies and time-delays of multiple reflectors are jointly estimated. We construct 2 sub-arrays like ESPRIT, and then conduct generalized eigen-decomposition for their auto-correlation matrix and cross-correlation matrix. Bearing parameters can be estimated from eigenvalues, while frequency parameters can also be obtained from corresponding eigenvectors. After modifying the time-delay vectors of the envelop of emitting signal according to the estimated frequencies, the time-delay parameters can be obtained simultaneously. Computer simulations show that the GETJE can carry out the 3-dimensional joint parameter estimation without additional pairing in the case of lower SNR. Preferable results are also obtained in water tank experiments, which indicate that the GETJE is robust for sensor array errors and has the potential applications.
UR - http://www.scopus.com/inward/record.url?scp=4644259654&partnerID=8YFLogxK
M3 - 会议文章
AN - SCOPUS:4644259654
SN - 1520-6149
VL - 2
SP - II57-II60
JO - ICASSP, IEEE International Conference on Acoustics, Speech and Signal Processing - Proceedings
JF - ICASSP, IEEE International Conference on Acoustics, Speech and Signal Processing - Proceedings
T2 - Proceedings - IEEE International Conference on Acoustics, Speech, and Signal Processing
Y2 - 17 May 2004 through 21 May 2004
ER -