[1] NING Fangli, CHENG Zhanghong, MENG Di, et al. Enhanced spectrum convolutional neural architecture:an intelligent leak detection method for gas pipeline[J]. Process Safety and Environmental Protection, 2021, 146(1):726-735. [2] CHIARIOTTI P, MARTARELLI M, CASTELLINI P, et al. Acoustic beamforming for noise source localization-reviews, methodology and applications[J]. Mechanical Systems and Signal Processing,2019,120(1):422-448. [3] XIONG Wei, HE Qingbo, PENG Z K. Fibonacci array-based focused acoustic camera for estimating multiple moving sound sources[J]. Journal of Sound and Vibration, 2020, 478(115):351-367. [4] KRIM H, VIBERG M. Two decades of array signal processing research:The parametric approach[J]. IEEE Signal Processing Magazine, 1996, 13(4):67-94. [5] HOWELLS P W. Intermediate frequency side-lobe canceller:USA, US3202990A[P]. 1965-08-24. [6] SARRADJ E. A fast signal subspace approach for the determination of absolute levels from phased microphone array measurements[J]. Journal of Sound and Vibration, 2010, 329(17):1553-1569. [7] LI Shu,XU Zhongming M,HE Yansong,et al. The source localization technique based on improved functional beamforming using a virtual array[J]. Vibroengineering Procedia Volume, 2015, 5:247-252. [8] BROOKS T F, HUMPHREYS W M. A deconvolution approach for the mapping of acoustic sources (DAMAS) determined from phased microphone arrays[J]. Journal of Sound and Vibration, 2006, 294(4):856-879. [9] HOGBOM J A. Aperture synthesis with a non-regular distribution of interferometer baselines[J]. Astronomy and Astrophysics Supplement, 1974, 15:417-426. [10] SIJTSMA P. Clean based on spatial source coherence[J]. International Journal of Aeroacoustics, 2007, 6(4):357-374. [11] ANTONI J, YU Liang, LECL`ERE Q. Reconstruction of sound quadratic properties from non-synchronous measurements with insufficient or without references:proof of concept[J]. Journal of Sound and Vibration, 2015, 349:123-149. [12] PEREIRA L T L, MARTINEZ R M, RAGNI D, et al. Combining asynchronous microphone array measurements for enhanced acoustic imaging and volumetric source mapping[J]. Applied Acoustics, 2021, 182(108):247-270. [13] YU Liang, ANTONI J, LECLERE Q. Spectral matrix completion by cyclic projection and application to sound source reconstruction from non-synchronous measurements[J]. Journal of Sound and Vibration, 2016, 372:31-49. [14] YU Liang, ANTONI J, LECLERE Q, et al. Acoustical source reconstruction from non-synchronous sequential measurements by fast iterative shrinkage thresholding algorithm[J]. Journal of Sound and Vibration, 2017, 408:351-367. [15] YU Liang, ANTONI J, WU Haijun, et al. Fast iteration algorithms for implementing the acoustic beamforming of non-synchronous measurements[J]. Mechanical Systems and Signal Processing, 2019, 134(106):309-323. [16] PHOTIADIS D M. The relationship of singular value decomposition to wave-vector filtering in sound radiation problems[J]. The Journal of the Acoustical Society of America, 1990, 88(2):1152-1159. [17] NING Fangli, HU Jinglong, HOU Hongjie, et al. Sound source localization of non-synchronous measurements beamforming based on the truncated nuclear norm regularization[J]. Applied Acoustics, 2022, 191(108):688-703. [18] LU Canyi, TANG Jinhui, YAN Shuicheng, et al. Nonconvex non-smooth low rank minimization via iteratively reweighted nuclear norm[J]. IEEE Transactions on Image Processing, 2016, 25(2):829-839. [19] GU Shuhang, XIE Qi, MENG Deyu, et al. Weighted nuclear norm minimization and its applications to low level vision[J]. International Journal of Computer Vision, 2017, 121:183-208. [20] 陈蕾,陈松灿.矩阵补全模型及其算法研究综述[J].软件学报, 2017, 28(6):1547-1564. CHEN Lei, CHEN Songcan. Survey on matrix completion models and algorithms[J]. Journal of Software, 2017, 28(6):1547-1564. |