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The problem of tracking synchronization for an uncertain complex network is proposed. By selecting an appropriate sliding surface, designing parameter identification laws and sliding mode controllers, the tracking synchronization between the network and output signal is achieved. The simulation results show that all the state variables in the network can track target orbit strictly, which shows that the method is effective.
[1] Emelyanov S V 1959 Automat. Rem. Contr. 20 983
[2] Qi D L, Yang J, Zhang J L 2010 Chin. Phys. B 19 100506
[3] Chen M, Jiang C S, Jiang B, Wu Q X 2009 Chaos Soliton. Fract. 39 1856
[4] Zribi M, Smaoui N, Salim H 2009 Chaos Soliton. Fract. 42 3197
[5] Wang H, Han Z Z, Xie Q Y, Zhang W 2009 Commun. Nonlinear Sci. Numer. Simulat. 14 2728
[6] Vasegh N, Khellat F 2009 Chaos Soliton. Fract. 42 1054
[7] Li M, Liu C X 2010 Chin. Phys. B 19 100504
[8] Tavazoei M S, Haeri M 2008 Physica A 387 57
[9] Haeri M, Tavazoei M S, Naseh M R 2007 Chaos Soliton. Fract. 33 1230
[10] Vincent U E 2008 Chaos Soliton. Fract. 37 1065
[11] Huang D 2004 Phys. Rev. E 69 067201
[12] Feng J W, He L, Xu C, Austin F, Wu G 2010 Commun. Nonlinear Sci. Numer. Simulat. 15 2546
[13] Li X C, Xu W, Xiao Y Z 2008 Acta Phys. Sin. 57 4721 (in Chinese) [李秀春, 徐伟, 肖玉柱 2008 57 4721]
[14] Kalsi K, Lian J, Hui S, Zak S H 2010 Automatica 46 347
[15] Cai N, Jing Y, Zhang S 2010 Commun. Nonlinear Sci. Numer. Simulat. 15 1613
[16] Wang C C, Pai N S, Yau H T 2010 Commun. Nonlinear Sci. Numer. Simulat. 15 741
[17] Pai N S, Yau H T 2011 Commun. Nonlinear Sci. Numer. Simulat. 16 133
[18] Farivar F, Shoorehdeli M A, Nekoui M A, Teshnehlab M 2011 Expert Syst. Appl. 38 4714
[19] Utkin V 1977 IEEE Trans. Automatic Control 22 212
[20] Sarpturk S, Istefanopulos Y, Kaynak O 1987 IEEE Trans. Automatic Control 32 930
[21] Bartolini G, Ferrara A, Usani E 1998 IEEE Trans. Automatic Control 43 241
[22] Roopaei M, Sahraei B R, Lin T C 2010 Commun. Nonlinear Sci. Numer. Simulat. 15 4158
[23] Lü L 2000 Nonlinear Dynamics and Chaos (Dalian: Dalian Publishing House) (in Chinese) [吕翎 2000 非线性动力学与混沌 (大连:大连出版社)]
[24] Kyprianidis I M, Volos Ch K, Stavrinides S G, Stouboulos I N, Anagnostopoulos A N 2010 J. Eng. Sci. Tech. Rev. 3 41
[25] Lorenz E N 1963 J. Atmos. Sci. 20 130
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[1] Emelyanov S V 1959 Automat. Rem. Contr. 20 983
[2] Qi D L, Yang J, Zhang J L 2010 Chin. Phys. B 19 100506
[3] Chen M, Jiang C S, Jiang B, Wu Q X 2009 Chaos Soliton. Fract. 39 1856
[4] Zribi M, Smaoui N, Salim H 2009 Chaos Soliton. Fract. 42 3197
[5] Wang H, Han Z Z, Xie Q Y, Zhang W 2009 Commun. Nonlinear Sci. Numer. Simulat. 14 2728
[6] Vasegh N, Khellat F 2009 Chaos Soliton. Fract. 42 1054
[7] Li M, Liu C X 2010 Chin. Phys. B 19 100504
[8] Tavazoei M S, Haeri M 2008 Physica A 387 57
[9] Haeri M, Tavazoei M S, Naseh M R 2007 Chaos Soliton. Fract. 33 1230
[10] Vincent U E 2008 Chaos Soliton. Fract. 37 1065
[11] Huang D 2004 Phys. Rev. E 69 067201
[12] Feng J W, He L, Xu C, Austin F, Wu G 2010 Commun. Nonlinear Sci. Numer. Simulat. 15 2546
[13] Li X C, Xu W, Xiao Y Z 2008 Acta Phys. Sin. 57 4721 (in Chinese) [李秀春, 徐伟, 肖玉柱 2008 57 4721]
[14] Kalsi K, Lian J, Hui S, Zak S H 2010 Automatica 46 347
[15] Cai N, Jing Y, Zhang S 2010 Commun. Nonlinear Sci. Numer. Simulat. 15 1613
[16] Wang C C, Pai N S, Yau H T 2010 Commun. Nonlinear Sci. Numer. Simulat. 15 741
[17] Pai N S, Yau H T 2011 Commun. Nonlinear Sci. Numer. Simulat. 16 133
[18] Farivar F, Shoorehdeli M A, Nekoui M A, Teshnehlab M 2011 Expert Syst. Appl. 38 4714
[19] Utkin V 1977 IEEE Trans. Automatic Control 22 212
[20] Sarpturk S, Istefanopulos Y, Kaynak O 1987 IEEE Trans. Automatic Control 32 930
[21] Bartolini G, Ferrara A, Usani E 1998 IEEE Trans. Automatic Control 43 241
[22] Roopaei M, Sahraei B R, Lin T C 2010 Commun. Nonlinear Sci. Numer. Simulat. 15 4158
[23] Lü L 2000 Nonlinear Dynamics and Chaos (Dalian: Dalian Publishing House) (in Chinese) [吕翎 2000 非线性动力学与混沌 (大连:大连出版社)]
[24] Kyprianidis I M, Volos Ch K, Stavrinides S G, Stouboulos I N, Anagnostopoulos A N 2010 J. Eng. Sci. Tech. Rev. 3 41
[25] Lorenz E N 1963 J. Atmos. Sci. 20 130
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