吉林大学学报(工学版) ›› 2017, Vol. 47 ›› Issue (1): 274-280.doi: 10.13229/j.cnki.jdxbgxb201701040
• Orginal Article • Previous Articles Next Articles
ZOU Ling, HE Qian-hua, KUANG Xi-chao, LI Hong-tao, CAI Zi-wen
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[1] Zhao H, Malik H. Audio recording location identification using acoustic environment signature[J]. IEEE Trans Inf Forensics Security, 2013, 8(11): 1746-1759. [2] 曾锦华,施少培,杨旭,等. 数字录音真实性司法鉴定研究现状[J]. 中国司法鉴定, 2014(4): 57-61. Zeng Jin-hua, Shi Shao-pei, Yang Xu, et al. The state of art in digital audio forensic authentication[J]. Chinese Journal of Forensic Sciences, 2014(4): 57-61. [3] Kraetzer C, Oermann A, Dittmann J, et al. Digital audio forensics: a first practical evaluation on microphone and environment classification[C]∥The Workshop on Multimedia and Security, Dallas, TX, USA, 2007: 63-74. [4] Kraetzer C, Schott M, Dittmann J. Unweighted fusion in microphone forensics using a decision tree and linear logistic regression models[C]∥The 11th ACM Multimedia and Security Workshop, New York, 2009: 49-56. [5] Buchholz R, Kraetzer C, Dittmann J. Microphone Classification Using Fourier Coefficients[M].Berlin: Springer, 2010:235-246. [6] Kraetzer C, Qian K, Schott M, et al. A context model for microphone forensics and its application in evaluations[C]∥SPIE Conference on Media Watermarking, Security, and Forensics, London,2011. [7] Kraetzer C, Qian K, Dittmann J. Extending a context model for microphone forensics[C]∥Proc SPIE, 2012, 8303:265-298. [8] Malik H, Miller J. Microphone identification using higher-order statistics[C]∥AES 46th Conf Audio Forensics, Denver, CO, USA,2012. [9] Eskidere O. Source microphone identification from speech recordings based on a Gaussian mixture model[J]. Turkish Journal of Electrical Engineering and Computer Sciences, 2014, 22(3): 754-767. [10] Garcia-Romero D, Espy-Wilson C. Speech forensics: automatic acquisition device identification[J]. J Acoust Soc Am, 2010, 127(3):2044. [11] Garcia-Romero D, Espy-Wilson C. Automatic acquisition device identification from speech recordings[C]∥Proc IEEE Int Conf Acoustics, Speech, Signal Processing (ICASSP), Dallas, TX, USA, 2010: 1806-1809. [12] Garcia-Romero D, Espy-Wilson C. Automatic acquisition device identification from speech recordings[J]. J Audio Eng Soc, 2009, 124(4): 2530. [13] Reynolds D A. HTIMIT and LLHDB: speech corpora for the study of handset transducer effects[C]∥Proc IEEE Int Conf Acoustics, Speech, Signal Processing (ICASSP), Munich, Germany, 1997:1535-1538. [14] Kishore S P, Yegnanarayanana B. Identification of handset type using autoassociative neural networks[C]∥Fourth Int Conf Advances in Pattern Recognition and Digital Techniques, 1999:353-356. [15] Mak M W, Kung S Y. Combining stochastic feature transformation and handset identification for telephone-based speaker verification[C]∥Proc IEEE Int Conf Acoustics, Speech, Signal Processing (ICASSP),Orlando,FL,2002:701-704. [16] Panagakis Y, Kotropoulos C. Automatic telephone handset identification by sparse representation of random spectral features[C]∥The 14th ACM Multimedia and Security Workshop, Coventry, UK,2012:91-96. [17] Panagakis Y, Kotropoulos C. Telephone handset identification by feature selection and sparse representations[C]∥IEEE Int Workshop Information Forensics and Security, Tenerife, Spain, 2012:73-78. [18] Kotropoulos C. Telephone handset identification using sparse representations of spectral feature sketches[C]∥First Int Workshop Biometrics and Forensics, Lisbon, Portugal, 2013:1-4. [19] Kotropoulos C. Source phone identification using sketches of features[J]. IET Biometrics,2014,3(2):75-83. [20] Kotropoulos C, Samaras S. Mobile phone identification using recorded speech signals[C]∥The 19th International Conference on Digital Signal Processing (DSP), Hongkong,2014:586-591. [21] Hanilçi C, Ertas F, Ertas T, et al. Recognition of brand and models of cell-phones from recorded speech signals[J]. IEEE Trans Inf Forensics Security, 2012,7(2):625-634. [22] Hanilçi C, Kinnunen T. Source cell-phone recognition from recorded speech using non-speech segments[J]. Digital Signal Processing, 2014,35:75-85. [23] Jahanirad M, Wahab A W A, Anuar N B, et al. Blind source mobile device identification based on recorded call[J]. Engineering Applications of Artificial Intelligence, 2014,36:320-331. [24] Zou L, Yang J C, Huang T S. Automatic cell phone recognition from speech recordings[C]∥IEEE China Summit & International Conference on Proc Signal and Information Processing (China SIP), Beijing,2014:621-625. [25] Zou L, He Q H, Feng X H. Cell phone verification from speech recordings using sparse representation[C]∥Proc IEEE Int Conf Acoustics, Speech, Signal Processing (ICASSP), New York,2015:1787-1791. [26] 曾锦华,施少培,杨旭,等. 录音设备识别司法鉴定技术研究[J]. 中国司法鉴定, 2014(6):22-25. Zeng Jin-hua, Shi Shao-pei, Yang Xu, et al. Research on methods of audio recorder forensic identification[J]. Chinese Journal of Forensic Sciences, 2014(6):22-25. [27] 贺前华, 王志锋, Rudnicky A I, 等. 基于改进PNCC特征和两步区分性训练的录音设备识别方法[J]. 电子学报, 2014,42(1):191-198. He Qian-hua, Wang Zhi-feng, Rudnicky A I, et al. A recording device identification algorithm based on improved PNCC feature and two-step discriminative training[J]. Acta Electronica Sinica, 2014,42(1):191-198. [28] Boll S F. Suppression of acoustic noise in speech using spectral subtraction[J]. IEEE Trans Acoust, Speech, Signal Process, 1979,27(2):113-120. [29] Kamath S, Loizou P. A multi-band spectral subtraction method for enhancing speech corrupted by colored noise[C]∥Proc IEEE Int Conf Acoustics, Speech, Signal Processing (ICASSP), Orlando, FL, 2002: 4164-4167. [30] Doblinger G. Computationally efficient speech enhancement by spectral minima tracking in subbands[C]∥EUROSPEECH, Berlin,Germany,1995:1513-1516. [31] Duda R O, Hart P E, Stork D G. Pattern Classification[M]. 2nd ed. New York: Wiley, 2000. [32] Hall M, Frank E, Holmes G, et al. The WEKA data mining software: an update[J]. SIGKDD Explorations Newsletter, 2009,11(1):10-18. |
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