[1] SAPIANO P C,MARTIN J D.Maximum likelihood PSK classifier[C]//IEEE Communications Society.Proceedings of MILCOM’96 IEEE Military Communications Conference.McLean,VA,USA:IEEE,1996:1010-1014. [2] BEIDAS B F,WEBER C L.Asynchronous classification of MFSK signals using the higher order correlation domain [J].IEEE Transactions on Communications,1998,46(4):480-493. [3] SILL J A.Maximum-likelihood modulation classification for PSK/QAM [C]//IEEE Communications Society.Proceedings of MILCOM’99 IEEE Military Communications Conference.Atlantic City,NJ,USA:IEEE,1999:217-220. [4] PANAGIOTOU P,ANASTASOPOULOS A,POLYDOROS A.Likelihood ratio tests for modulation classification [C]//IEEE Communications Society.21st Century Military Communications (2).Los Angeles,CA,USA:IEEE,2000:670-674. [5] HONG Liang,HO K C.Antenna array likelihood modulation classifier for BPSK and QPSK signals [C]//IEEE Communications Society.MILCOM 2002(1).Anaheim,CA,USA:IEEE,2002:647-651. [6] HEUE S,SOLIMAN S S.Automatic modulation recognition of digitally modulated signals [C]//IEEE Communications Society.IEEE Military Communications Conference(3).Boston,MA,USA:IEEE,1989:645-649. [7] HONG Liang,HO K C.Identification of digital modulation types using the wavelet transform [C]//IEEE Military Communications.MILCOM 1999 (1).Atlantic City,NJ,USA:IEEE,1999:427-431. [8] SWAMI A,SADLER B M.Hierarchical digital modulation classification using cumulants [J].IEEE Transactions on Communications,2000,48(3):416-429. [9] HATZICHRISTOS G,FARGUES M P.A hierarchical approach to the classification of digital modulation types in multipath environments [C]//IEEE Communications Society.Conference Record of the Thirty-Fifth Asilomar Conference(2).Pacific Grove,CA,USA:IEEE,2001:1494-1498. [10] SOLIMAN S S,HSUE S Z.Signal classification using statistical moments [J].IEEE Transactions on Communications,1992,40(5):908-916. [11] LU Mingquan,XIAO Xianci,LI Lemin.AR modeling-based features extraction of multiple signals for modulation recognition [C]//IEEE Communications Society.1998 Fourth International Conference on Signal Processing (2).Beijing,China:IEEE,1998:1385-1388. [12] MOBASSERI B G.Digital modulation classification using constellation shape [J].Signal Processing:The Official Publication of the European Association for Signal Processing (EURASIP),2000,80(2):251-277. [13] LU Mingquan,XIAO Xianci,LI Leming.Cyclic spectral features based modulation recognition [C]//IEEE Communications Society.Proceedings of International Conference on Communication Technology (2).Beijing,China:IEEE,1996:792-795. [14] NANDI A K,AZZOUZ E E.Modulation recognition using artificial neural networks [J].Signal Processing:The Official Publication of the European Association for Signal Processing(EURASIP),1997,56(2):165-175. [15] DOYLE L,NOLAN K,O’MAHONY D.Modulation scheme classification for 4G software radio wireless networks [C]//IASTED International Conference on Signal Processing,Pattern Recognition,and Application.Grete,Greece:ACTA,2002:25-31. [16] O’SHEA T,CORGAN J,CLANCY T C.Convolutional radio modulation recognition networks [C]//International Conference on Engineering Applications of Neural Networks.Aberdeen,United Kingdom:Springer,2016:213-226. [17] HE K,ZHANG X,REN S,et al.Deep Residual Learning for Image Recognition [C]//IEEE Communications Society.IEEE Conference on Computer Vision and Pattern Recognition (CVPR).Las Vegas,NV,USA:IEEE,2016:770-778. [18] O’SHEA T J,ROY T,CLANCY T C.Over-the-air deep learning based radio signal classification [J].IEEE Journal of Selected Topics in Signal Processing,2018,12(1):168-179. [19] RAMJEE S,JU S,YANG D,et al.Fast deep learning for automatic modulation classification [C/OL].[2021-04-02].https://arxiv.org/pdf/1901.05850.pdf. [20] WANG Danshi.Intelligent constellation diagram analyzer using convolutional neural network-based deep learning [J].Optics Express,2017,25(15):17150-17166. [21] WANG Y,LIU M,YANG J,et al.Data-driven deep learning for automatic modulation recognition in cognitive radios [J].IEEE Transactions on Vehicular Technology,2019,68(4):4074-4077. |