[1] |
徐文, 鄢社锋, 季飞, 等. 海洋信息获取、传输、处理及融合前沿研究评述. 中国科学: 信息科学, 2016; 46(8): 1053−1085 doi: 10.1360/N112016-00064
|
[2] |
吴金荣, 彭大勇, 张建兰. 海洋混响特性研究. 物理, 2014; 43(11): 732−739 doi: 10.7693/wl20141104
|
[3] |
Joseph M F, Roger C G. Methods for identifying and controlling sonar clutter. IEEE J. Oceanic Eng., 2010; 35(2): 330−354 doi: 10.1109/JOE.2010.2044912
|
[4] |
Kalman R E. A new approach to linear filtering and prediction problems. J. Basic Eng., 1960; 82(1): 35−45 doi: 10.1115/1.3662552
|
[5] |
Joost H V, Robert H J, Gmelig M. Maximum likelihood estimation for long-range target tracking using passive sonar measurement. IEEE Trans. Signal Process., 1992; 40(5): 1216−1225 doi: 10.1109/78.134483
|
[6] |
Bar-shalom Y, Ese E. Tracking in a cluttered environment with probabilistic data association. Automatica, 1975; 11(5): 451−460 doi: 10.1016/0005-1098(75)90021-7
|
[7] |
Blackman S S. Multiple hypothesis tracking for multiple target tracking. IEEE Aeros. Electron. Syst. Mag., 2004; 19(1): 5−18 doi: 10.1109/MAES.2004.1263228
|
[8] |
Mahler R. PHD filters of higher order in target number. IEEE Trans. Aeros. Electron. Syst., 2007; 43(4): 1523−1543 doi: 10.1109/TAES.2007.4441756
|
[9] |
Ba N V, Ba T V, Hoang H G. An efficient implementation of the generalized labeled multi-bernoulli filter. IEEE Trans. Signal Process., 2017; 65(8): 1975−1987 doi: 10.1109/TSP.2016.2641392
|
[10] |
Sun X, Li R W, Zhou L S. Multidimensional information fusion in active sonar via the generalized labeled multi-bernoulli filter. IEEE Access, 2020; 8: 1335−1347 doi: 10.1109/ACCESS.2020.3039347
|
[11] |
Alabaster C. Pulse Doppler radar: Principle, technology, applications. SciTech Publishing, 2012
|
[12] |
田坦. 声呐技术. 哈尔滨: 哈尔滨工程大学出版社, 2009
|
[13] |
Lee S, Lim J. Reverberation suppression using non-negative matrix factorization to detection low-Doppler target with continuous wave active sonar. EURASIP J. Adv. Signal Process., 2019; 11: 1−18 doi: 10.1186/s13634-019-0608-6
|
[14] |
Doisy Y, Deruaz L, Beerens S P, et al. Target Doppler estimation using wideband frequency modulated signals. IEEE Trans. Signal Process., 2000; 48(5): 1213−1224 doi: 10.1109/78.839970
|
[15] |
Yang T C, Schindall J. Clutter reduction using Doppler sonar in a harbor environment. J. Acoust. Soc. Am., 2012; 132(5): 3053−3067 doi: 10.1121/1.4756921
|
[16] |
孙大军, 侯开阳, 腾婷婷, 等. 空时多普勒频移域运动小目标的抗干扰探测方法. 声学学报, 2022; 47(2): 161−174 doi: 10.15949/j.cnki.0371-0025.2022.02.006
|
[17] |
周增胜, 杜选民. 利用正弦调频信号的宽带速度敏感特性抑制混响. 声学学报, 2022; 47(1): 16−26 doi: 10.15949/j.cnki.0371-0025.2022.01.002
|
[18] |
薛城, 顾怡鸣, 宫在晓, 等. 宽带双曲调频信号参数化时频分析波达方向估计. 声学学报, 2023; 48(1): 27−40 doi: 10.15949/j.cnki.0371-0025.2023.01.004
|
[19] |
Yang J, SarKar T K. Doppler-invariant property of hyperbolic frequency modulated waveforms. Microw. Opt. Technol. Lett., 2006; 48(6): 1174−1179 doi: 10.1002/mop.21573
|
[20] |
Yang J, SarKar T K. Acceleration-invariant of hyperbolic frequency modulated pulse compression. Digital Signal Process., 2008; 18: 228−235 doi: 10.1016/j.dsp.2007.01.005
|
[21] |
Song X, Willett P, Zhou S. Range bias modeling for hyperbolic frequency modulated waveforms in target tracking. IEEE J. Oceanic Eng., 2012; 37(4): 670−679 doi: 10.1109/JOE.2012.2206682
|
[22] |
庞玉红, 严琪, 王世闯. 双曲调频信号测速测距方法研究. 声学与电子工程, 2014; 114: 21−24
|
[23] |
Wang F Y, Du S P, Sun W, et al. A method of velocity estimation using composite hyperbolic frequency-modulated signals in active sonar. J. Acoust. Soc. Am., 2017; 141(5): 3117−3122 doi: 10.1121/1.4982724
|
[24] |
李启虎. 声呐信号处理引论. 北京: 科学出版社, 2012
|
[25] |
Lin Z B. Wideband ambiguity function of broadband signals. J. Acoust. Soc. Am., 1988; 83(6): 2108−2116 doi: 10.1121/1.396391
|
[26] |
盛骤, 谢式千, 潘承毅. 概率论与数理统计. 第4版. 北京: 高等教育出版社, 2008
|