[1] |
David E Hanny , et al. Marine mammal acoustic detections in the northeastern Chukchi Sea, September 2007-July 2011[J]. Continental Shelf Research, 2013(67):127-146.
|
[2] |
Nanaware S, Shastri R, Joshi Y, et al. Passive acoustic detection and classification of marine mammal vocalizations[C]. Lucknow:International Conference on Communication and Signal Processing, 2014.
|
[3] |
André M, Van d S M, Zaugg S , et al. Listening to the Deep: live monitoring of ocean noise and cetacean acoustic signals.[J]. Marine Pollution Bulletin, 2011,63(1-4):18-26.
doi: 10.1016/j.marpolbul.2011.04.038
|
[4] |
Ibrahim A K, Zhuang H, Erdol N, et al. A New approach for north atlantic right whale upcall detection[C]. Xi’an: International Symposium on Computer,Consumer and Control, 2016.
|
[5] |
Brown J C, Smaragdis P . Hidden Markov and Gaussian mixture models for automatic call classification[J]. Journal of the Acoustical Society of America, 2009, 125(6):EL221.
|
[6] |
Suleman M, Tamaki Ura. Vocalization based individual classification of humpback whales using support vector machine[C]. Aberdeen:Oceans, 2007.
|
[7] |
Dugan P J, Rice A N, Urazghildiiev I R, et al. North atlantic right whale acoustic signal processing: Part I. comparison of machine learning recognition algorithms[C]. Long Island:Applications and Technology Conference, 2010.
|
[8] |
Zhou X, Garcia-Romero D, Duraiswami R, et al. Linear versus mel frequency cepstral coefficients for speaker recognition[C]. Hawaii:Automatic Speech Recognition and Understanding, 2011.
|
[9] |
Harma A. Automatic identification of bird species based on sinusoidal modeling of syllables[C]. Hong Kong:IEEE International Conference on Acoustics,Speech and Signal Processing, 2003.
|
[10] |
宋知用 . MATLAB在语音信号分析与合成中的应用[M]. 北京: 北京航空航天大学出版社, 2013.
|
|
Song Zhiyong. Application of MATLAB in speech signal analysis and synthesis[M]. Beijing: Beihang University Press, 2013.
|
[11] |
张帅林 . 改进的智能家居语音关键词识别算法[J]. 电子科技, 2017,30(7):5-8.
|
|
Zhang Shuailin . Improved speech keyword spotting algorithm in smart home[J]. Electronic Science and Technology, 2017,30(7):5-8.
|
[12] |
李艳, 成凌飞, 张培玲 . 一种基于改进谱熵的语音端点检测方法[J]. 计算机科学, 2016,43(S2):233-236.
|
|
Li Yan , Cheng lingfei, Zhang Peiling. Speech endpoint detection based on improved spectral entropy[J]. Computer Science, 2016,43(S2):233-236.
|
[13] |
张冬松, 马琪 . 一种基于SVM的负载识别算法[J]. 电子科技, 2017,30(8):59-62.
|
|
Zhang Dongsong, Ma Qi . A load identification algorithm based on SVM[J]. Electronic Science and Technology, 2017,30(8):59-62.
|
[14] |
余清清, 李应, 李勇 . 基于SVM模型的自然环境声音的分类[J]. 计算机与数字工程, 2010,38(7):1-5.
|
|
Yu Qingqing, Li Ying, Li Yong . A SVM-based classification approach for natural sounds[J]. Computer & Digital Engineering, 2010,38(7):1-5.
|
[15] |
SanDiego University of California. Voices in the sea[EB/OL]. ( 2015- 07- 27)[2018-04-02].
|
[16] |
The Cornell Lab of Ornithology.Macaulay library[EB/OL]. ( 2014- 09- 28)[2018-04-02].
|
[17] |
Gingras B, Fitch W T . A three-parameter model for classifying anurans into four genera based on advertisement calls[J]. Journal of the Acoustical Society of America, 2013,133(1):547-59.
doi: 10.1121/1.4768878
|
[18] |
Oswald M, Oswald J N, Lammers M O , et al. Integration of real time odontocete call classification algorithm into PAMGUARD signal processing software[J]. Journal of the Acoustical Society of America, 2011,129(4):2639-2639.
|
[19] |
González-Hernández F R, Sánchez-Fernández L P, Suárez-Guerra S , et al. Marine mammal sound classification based on a parallel recognition model and octave analysis[J]. Applied Acoustics, 2017,119(3):17-28.
doi: 10.1016/j.apacoust.2016.11.016
|