[1] |
Li Q H, Yin L, Zhao G Y, et al. Precise bearing and automatic target tracking in digital sonar. Chinese Journal of Acoustics, 1996; 15(1): 29−33 doi: 10.15949/j.cnki.0217-9776.1996.01.004
|
[2] |
任宇飞, 李宇, 黄海宁. 能量值和方位信息结合的粒子滤波算法. 哈尔滨工程大学学报, 2017; 38(7): 1143−1150 doi: 10.11990/jheu.201604063
|
[3] |
刘妹琴, 韩学艳, 张森林, 等. 基于水下传感器网络的目标跟踪技术研究现状与展望. 自动化学报, 2021; 47(2): 235−251 doi: 10.16383/j.aas.c190886
|
[4] |
Capon J. High-resolution frequency-wavenumber spectrum analysis. Proc. IEEE, 1969; 57(8): 1408−1418 doi: 10.1109/PROC.1969.7278
|
[5] |
Zhang Y, Ng B. MUSIC-Like DOA estimation without estimating the number of sources. IEEE Trans. Signal Process., 2010; 58(3): 1668−1676 doi: 10.1109/TSP.2009.2037074
|
[6] |
Wang Q, Yu H, Li J, et al. Adaptive grid refinement method for DOA estimation via sparse Bayesian learning. IEEE J. Oceanic Eng., 2023; 48(3): 806−819 doi: 10.1109/JOE.2023.3235055
|
[7] |
Davey S J, Rutten M G, Gordon N J. Track-before-detect techniques, integrated tracking, classification, and sensor management. New Jersey: IEEE Press, 2016: 311−312
|
[8] |
Northardt T. A Cramér-Rao lower bound derivation for passive sonar track-before-detect algorithms. IEEE Trans. Inf. Theory, 2020; 66(10): 6449−6457 doi: 10.1109/TIT.2020.3013991
|
[9] |
Northardt T, Nardones S C. Track-before-detect bearings-only localization performance in complex passive sonar scenarios: A case study. IEEE J. Oceanic Eng., 2019; 44(2): 482−491 doi: 10.1109/JOE.2018.2811419
|
[10] |
金盛龙, 李宇, 黄海宁. 水下多目标方位的联合检测与跟踪. 声学学报, 2019; 44(4): 503−512 doi: 10.15949/j.cnki.0371-0025.2019.04.011
|
[11] |
王燕, 李想, 齐滨, 等. 无源声呐场景中使用辅助粒子滤波的邻近目标检测前跟踪方法. 声学学报, 2023; 48(2): 277−290 doi: 10.15949/j.cnki.0371-0025.2023.02.015
|
[12] |
Mahler R. Advances in statistical multisource-multitarget information fusion. Boston: Artech House, 2014: 50−54
|
[13] |
李天成, 范红旗, 孙树栋. 粒子滤波理论、方法及其在多目标跟踪中的应用. 自动化学报, 2015; 41(12): 1981−2002 doi: 10.16383/j.aas.2015.c150426
|
[14] |
Da K, Li T, Zhu Y, et al. Recent advances in multisensor multitarget tracking using random finite set. Front. Inf. Technol. Electron. Eng., 2021; 22(1): 5−24 doi: 10.1631/FITEE.2000266
|
[15] |
Saucan A, Chonavel T, Sintes C, et al. Track before detect DOA tracking of extended targets with marked poisson point processes. 18th International Conference on Information Fusion, IEEE, Washington, DC, USA, 2015: 754−760
|
[16] |
Saucan A, Chonavel T, Sintes C, et al. CPHD-DOA tracking of multiple extended sonar targets in impulsive environments. IEEE Trans. Signal Process., 2016; 64(5): 1147−1160 doi: 10.1109/TSP.2015.2504349
|
[17] |
Masnadi-Shirazi A, Rao B. A covariance-based superpositional CPHD Filter for multi-source DOA tracking. IEEE Trans. Signal Process., 2018; 66(2): 309−323 doi: 10.1109/TSP.2017.2768025
|
[18] |
Zhang G, Zheng C, Qiu L, et al. Multi-Bernoulli filter for tracking multiple targets using sensor array. China Ocean Eng., 2020; 34(2): 245−256 doi: 10.1007/s13344-020-0023-7
|
[19] |
Vo B T, Vo B N. Labeled random finite sets and multi-object conjugate priors. IEEE Trans. Signal Process., 2013; 61(13): 3460−3475 doi: 10.1109/TSP.2013.2259822
|
[20] |
Vo B N, Vo B T, Dinh P. Labeled random finite sets and the Bayes multi-target tracking filter. IEEE Trans. Signal Process., 2014; 62(24): 6554−6567 doi: 10.1109/TSP.2014.2364014
|
[21] |
Li S, Wei Y, Hoseinnezhad R, et al. Multi-object tracking for generic observation model using labeled random finite sets. IEEE Trans. Signal Process., 2017; 66(2): 368−383 doi: 10.1109/TSP.2017.2764864
|
[22] |
Papi F, Vo B N, Vo B T, et al. Generalized labeled multi-Bernoulli approximation of multi-object densities. IEEE Trans. Signal Process., 2015; 63(20): 5487−5497 doi: 10.1109/TSP.2015.2454478
|
[23] |
Shaman P. The inverted complex Wishart distribution and its application to spectral estimation. J. Multivar. Anal., 1980; 10(1): 51−59 doi: 10.1016/0047-259X(80)90081-0
|
[24] |
Gupta A, Nagar D. Matrix variate distributions. New York: Chapman and Hall, 1999: 18−19
|
[25] |
Fantacci C, Vo B T, Papi F, et al. The marginalized δ-GLMB filter. arXiv preprint: 1501.00926v2, 2017
|
[26] |
Fantacci C, Papi F. Scalable multi-sensor multi-target tracking using the marginalized δ-GLMB density. IEEE Signal Process. Lett., 2016; 23(6): 863−867 doi: 10.1109/LSP.2016.2557078
|
[27] |
Bethel R, Bell K. Maximum likelihood approach to joint array detection/estimation. IEEE Trans. Aerosp. Electron. Syst., 2004; 40(3): 1060−1072 doi: 10.1109/TAES.2004.1337474
|
[28] |
Fortmann T, Bar-shalom Y, Scheffe M. Sonar tracking of multiple targets using joint probabilistic data association. IEEE J. Oceanic Eng., 1983; 8(3): 173−184 doi: 10.1109/JOE.1983.1145560
|
[29] |
Ristic B, Vo B N, Clark D, et al. A metric for performance evaluation of multi-target tracking algorithms. IEEE Trans. Signal Process., 2011; 59(7): 3452−3457 doi: 10.1109/TSP.2011.2140111
|
[30] |
Streit R, Walsh M. Bearings-only target motion analysis with acoustic propagation models of uncertain fidelity. IEEE Trans. Aerosp. Electron. Syst., 2002; 38(4): 1122−1137 doi: 10.1109/TAES.2002.1145738
|