Page 134 - 《应用声学》2025年第3期
P. 134
668 2025 年 5 月
processing[J]. Journal of Electronics & Information Tech-
参 考 文 献 nology, 2019, 41(7): 1682–1689.
[10] 金盛龙, 迟骋, 李宇, 等. 稀疏驱动自适应线谱增强的水下目
标谱熵检测 [J]. 声学学报, 2021, 46(6): 1059–1069.
[1] 胡桥. 水中目标新型被动检测理论及方法 [M]. 北京: 科学出
Jin Shenglong, Chi Cheng, Li Yu, et al. A supervised
版社, 2020.
learning detection method with pre-processing of sparsity-
[2] 王南, 马世龙. 水声目标线谱检测技术研究 [J]. 声学与电子工
based adaptive line enhancer[J]. Acta Acustica, 2021,
程, 2019(4): 23–27.
46(6): 1059–1069.
[3] 时洁, 杨德森, 时胜国, 等. 基于压缩感知的矢量阵聚焦定位
[11] Ogunfunmi A O Peterson A M. On the implementation of
方法 [J]. 物理学报, 2016, 65(2): 024302.
the frequency-domain LMS adaptive filter[J]. IEEE Trans-
Shi Jie, Yang Desen, Shi Shengguo, et al. Compressive fo-
actions on Circuits and Systems II: Analog and Digital
cused beamforming based on vector sensor array[J]. Acta
Signal Processing, 1992, 39(5): 318–322.
Physica Sinica, 2016, 65(2): 024302.
[4] 杨益新. 声呐波束形成与波束域高分辨方位估计技术研 [12] Lee J C, Chong K U. Performance analysis of frequency-
domain block LMS adaptive digital filters[J]. IEEE Trans-
究 [D]. 西安: 西北工业大学, 2002.
[5] 陈韶华, 相敬林, 梁峰, 等. 声强向量阵的波束形成与检测原 actions on Circuits and Systems, 1989, 36(2): 173–189.
[13] 刘辉涛, 丛卫华, 潘翔. 窄带弱信号的线谱检测 ——相干累加
理研究 [J]. 西北工业大学学报, 2007, 25(2): 301–305.
Chen Shaohua, Xiang Jinglin, Liang Feng, et al. Su- 频域批处理自适应线谱增强方法 [J]. 浙江大学学报 (工学版),
2007, 41(12): 2048–2051.
pergain beamforming and improved signal processing for
making signal detection easy with vector acoustic inten- Liu Huitao, Cong Weihua, Pan Xiang. Line spectral de-
sity array (VAIA)[J]. Journal of Northwestern Polytech- tection of tone weak signal —An adaptive line enhance-
nical University, 2007, 25(2): 301–305. ment technique using coherent addition and frequency do-
[6] Haykin S. Adaptive filter theory[J]. Prentice Hall Google main batch[J]. Journal of Zhejiang University(Engineering
Schola, 2002(2): 286–292. Science), 2007, 41(12): 2048–2051.
[7] Widrow B, Glover J R J, Mccool J M, et al. Adaptive [14] 赵智姗. 基于匹配滤波器的频域自适应线谱增强技术研
noise cancelling: Principles and applications[J]. Proceed- 究 [D]. 哈尔滨: 哈尔滨工程大学, 2018.
ings of the IEEE, 1975, 63(12): 1692–1716. [15] 李宁. LMS 自适应滤波算法的收敛性能研究与应用 [D]. 哈尔
[8] Khan I, Sultan A, Salam M, et al. Wind-noise reduction 滨: 哈尔滨工程大学, 2009.
for infrasonic measurements using adaptive line enhance- [16] 鄢社锋. 优化阵列信号处理 (上册): 波束优化理论与方法 [M].
ment[J]. The Journal of the Acoustical Society of America, 北京: 科学出版社, 2018.
2022, 151(5): 3399–3408. [17] Sommen P C W, Jayasinghe J A K S. On frequency-
[9] 王逸林, 马世龙, 邹男, 等. 时空域联合的水下未知线谱目标 domain adaptive filters using the overlap-add method[J].
检测方法 [J]. 电子与信息学报, 2019, 41(7): 1682–1689. IEEE Philips Research Laboratories, 1988: 27–30.
Wang Yilin, Ma Shilong, Zou Nan, et al. Detection of un- [18] Oppenheim A V. Discrete-time signal processing[M]. In-
known line-spectrum underwater target using space-time dia: Pearson Education, 1999.