Please wait a minute...
Chin. Phys. B, 2011, Vol. 20(11): 110506    DOI: 10.1088/1674-1056/20/11/110506
GENERAL Prev   Next  

Adaptive stabilization of an incommensurate fractional order chaotic system via a single state controller

Zhang Ruo-Xun(张若洵)a)b) and Yang Shi-Ping (杨世平)a)
a College of Physics Science and Information Engineering, Hebei Normal University, Shijiazhuang 050016, China; b College of Elementary Education, Xingtai University, Xingtai 054001, China
Abstract  In this paper, we investigate the stabilization of an incommensurate fractional order chaotic systems and propose a modified adaptive-feedback controller for the incommensurate fractional order chaos control based on the Lyapunov stability theory, the fractional order differential inequality and the adaptive control theory. The present controller, which only contains a single state variable, is simple both in design and in implementation. The simulation results for several fractional order chaotic systems are provided to illustrate the effectiveness of the proposed scheme.
Keywords:  stabilization      modified adaptive feedback control      fractional-order chaotic system      chaos control  
Received:  27 May 2011      Revised:  30 June 2011      Accepted manuscript online: 
PACS:  05.45.Xt (Synchronization; coupled oscillators)  
Fund: Project supported by the Natural Science Foundation of Hebei Province, China (Grant No. A2010000343).

Cite this article: 

Zhang Ruo-Xun(张若洵) and Yang Shi-Ping (杨世平) Adaptive stabilization of an incommensurate fractional order chaotic system via a single state controller 2011 Chin. Phys. B 20 110506

[1] Bagley R L, Calico R A and Guid J 1991 Control Dyn. 14 304
[2] Sun H H, Abdelwahad A A and Onaral B 1984 IEEE Trans. Automat. Control 29 441
[3] Ichise M, Nagayanagi Y and T Kojima 1971 J. Electroanal. Chem. 33 253
[4] Heaviside O 1971 Electromagnetic (New York: Theory Chelsea)
[5] Li C G and Chen G R 2004 Chaos Soliton. Fract. 22 549
[6] Zhang R X and Yang S P 2009 Chin. Phys. B 18 3295
[7] Lu J G 2005 Chaos Solition. Fract. 26 1125
[8] Zhang R X and Yang S P 2009 Acta Phys. Sin. 58 2957 (in Chinese)
[9] Deng W H and Li C P 2005 Physica A 353 61
[10] Chen W C 2008 Chaos Soliton. Fract. 36 1305
[11] Ahmad W M, El-Khazali R and Al-Assaf Y 2004 Chaos Soliton. Fract. 22 141
[12] Ahmed E, El-Sayed A M A and El-Saka H A A 2006 Phys. Lett. A 358 1
[13] Qi D L, Yang J and Zhang J L 2010 Chin. Phys. B 19 100506
[14] Podlubny I Fractional Differential Equations 1999 (New York: Academic Press)
[15] Li Y, Chen Y Q and Podlubny I 2010 Computers & Mathematics with Applications 59 1810
[16] Carpinteri A and Mainardi F (ed.) 1997 Fractals and Fractional Calculus (New York: Springer)
[17] Deng W H, Li C P and Lü J H 2007 Nonlinear Dyn. 48 409
[18] Deng W H 2007 J. Comput. Phys. 227 1510
[19] Lü J H, Chen G R, Cheng D Z and Celikovsky S 2002 Int. J. Bifur. Chaos 12 2917
[20] Deng W H and Li C P 2008 Phys. Lett. A 372 401
[21] Wang M J and Wang X Y 2010 Acta Phys. Sin. 59 1583 (in Chinese)
[22] Xu Z and Liu C X 2008 Chin. Phys. B 17 4033
[23] Lu J G 2005 Chin. Phys. 14 1517
[24] Hartley T T, Lorenzo C F and Qammer H K 1995 IEEE Trans. CAS-I 42 485
[1] Tailoring of thermal expansion and phase transition temperature of ZrW2O8 with phosphorus and enhancement of negative thermal expansion of ZrW1.5P0.5O7.75
Chenjun Zhang(张晨骏), Xiaoke He(何小可), Zhiyu Min(闵志宇), and Baozhong Li(李保忠). Chin. Phys. B, 2023, 32(4): 048201.
[2] Solutions and memory effect of fractional-order chaotic system: A review
Shaobo He(贺少波), Huihai Wang(王会海), and Kehui Sun(孙克辉). Chin. Phys. B, 2022, 31(6): 060501.
[3] Generation of stable and tunable optical frequency linked to a radio frequency by use of a high finesse cavity and its application in absorption spectroscopy
Yueting Zhou(周月婷), Gang Zhao(赵刚), Jianxin Liu(刘建鑫), Xiaojuan Yan(闫晓娟), Zhixin Li(李志新), Weiguang Ma(马维光), and Suotang Jia(贾锁堂). Chin. Phys. B, 2022, 31(6): 064206.
[4] Dynamics and intermittent stochastic stabilization of a rumor spreading model with guidance mechanism in heterogeneous network
Xiaojing Zhong(钟晓静), Yukun Yang(杨宇琨), Runqing Miao(苗润青), Yuqing Peng(彭雨晴), and Guiyun Liu(刘贵云). Chin. Phys. B, 2022, 31(4): 040205.
[5] Dynamic stabilization of atomic ionization in a high-frequency laser field with different initial angular momenta
Di-Yu Zhang(张頔玉), Yue Qiao(乔月), Wen-Di Lan(蓝文迪), Jun Wang(王俊), Fu-Ming Guo(郭福明), Yu-Jun Yang(杨玉军), and Da-Jun Ding(丁大军). Chin. Phys. B, 2022, 31(10): 103202.
[6] Spectral filtering of dual lasers with a high-finesse length-tunable cavity for rubidium atom Rydberg excitation
Yang-Yang Liu(刘杨洋), Zhuo Fu(付卓), Peng Xu(许鹏), Xiao-Dong He(何晓东), Jin Wang(王谨), and Ming-Sheng Zhan(詹明生). Chin. Phys. B, 2021, 30(7): 074203.
[7] Control of chaos in Frenkel-Kontorova model using reinforcement learning
You-Ming Lei(雷佑铭) and Yan-Yan Han(韩彦彦). Chin. Phys. B, 2021, 30(5): 050503.
[8] Discontinuous event-trigger scheme for global stabilization of state-dependent switching neural networks with communication delay
Yingjie Fan(樊英杰), Zhen Wang(王震), Jianwei Xia(夏建伟), and Hao Shen(沈浩). Chin. Phys. B, 2021, 30(3): 030202.
[9] Stabilization strategy of a car-following model with multiple time delays of the drivers
Weilin Ren(任卫林), Rongjun Cheng(程荣军), and Hongxia Ge(葛红霞). Chin. Phys. B, 2021, 30(12): 120506.
[10] High-performance frequency stabilization of ultraviolet diode lasers by using dichroic atomic vapor spectroscopy and transfer cavity
Danna Shen(申丹娜), Liangyu Ding(丁亮宇), Qiuxin Zhang(张球新), Chenhao Zhu(朱晨昊), Yuxin Wang(王玉欣), Wei Zhang(张威), Xiang Zhang(张翔). Chin. Phys. B, 2020, 29(7): 074210.
[11] Chaotic analysis of Atangana-Baleanu derivative fractional order Willis aneurysm system
Fei Gao(高飞), Wen-Qin Li(李文琴), Heng-Qing Tong(童恒庆), Xi-Ling Li(李喜玲). Chin. Phys. B, 2019, 28(9): 090501.
[12] Stable continuous-wave single-frequency intracavity frequency-doubled laser with intensity noise suppressed in audio frequency region
Ying-Hao Gao(高英豪), Yuan-Ji Li(李渊骥), Jin-Xia Feng(冯晋霞), Kuan-Shou Zhang(张宽收). Chin. Phys. B, 2019, 28(9): 094204.
[13] Non-crossover sub-Doppler DAVLL in selective reflection scheme
Lin-Jie Zhang(张临杰), Hao Zhang(张好), Yan-Ting Zhao(赵延霆), Lian-Tuan Xiao(肖连团), Suo-Tang Jia(贾锁堂). Chin. Phys. B, 2019, 28(8): 084211.
[14] Flexible control of semiconductor laser with frequency tunable modulation transfer spectroscopy
Ning Ru(茹宁), Yu Wang(王宇), Hui-Juan Ma(马慧娟), Dong Hu(胡栋), Li Zhang(张力), Shang-Chun Fan(樊尚春). Chin. Phys. B, 2018, 27(7): 074201.
[15] Dynamic stabilization of Na atom in an intense pulsed laser field
Xiao-Li Guo(郭晓丽), Song-Feng Zhao(赵松峰), Guo-Li Wang(王国利), Xiao-Xin Zhou(周效信). Chin. Phys. B, 2018, 27(4): 043201.
No Suggested Reading articles found!