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The synchronization of a fractional order hyperchaotic system based on passive control
作者姓名:吴朝俊  张彦斌  杨宁宁
作者单位:[1]state Key Laboratory of Electrical Insulation and Power Equipment, Xi'an 710049, China [2]School of Electrical Engineering, Xi'an Jiaotong University, Xi'an 710049, China
摘    要:This paper investigates the synchronization of a fractional order hyperchaotic system using passive control. A passive controller is designed, based on the properties of a passive system. Then the synchronization between two fractional order hyperchaotic systems under different initial conditions is realized, on the basis of the stability theorem for fractional order systems. Numerical simulations and circuitry simulations are presented to verify the analytical results.

关 键 词:fractional  order  hyperchaos  passive  control  numerical  simulation  circuitry  simulation
收稿时间:2010-11-23

The synchronization of a fractional order hyperchaotic system based on passive control
Wu Chao-Jun,Zhang Yan-Bin and Yang Ning-Ning.The synchronization of a fractional order hyperchaotic system based on passive control[J].Chinese Physics B,2011,20(6):60505-060505.
Authors:Wu Chao-Jun  Zhang Yan-Bin and Yang Ning-Ning
Institution:State Key Laboratory of Electrical Insulation and Power Equipment, Xián 710049, China;School of Electrical Engineering, Xián Jiaotong University, Xián 710049, China;State Key Laboratory of Electrical Insulation and Power Equipment, Xián 710049, China;School of Electrical Engineering, Xián Jiaotong University, Xián 710049, China;State Key Laboratory of Electrical Insulation and Power Equipment, Xián 710049, China;School of Electrical Engineering, Xián Jiaotong University, Xián 710049, China
Abstract:This paper investigates the synchronization of a fractional order hyperchaotic system using passive control. A passive controller is designed, based on the properties of a passive system. Then the synchronization between two fractional order hyperchaotic systems under different initial conditions is realized, on the basis of the stability theorem for fractional order systems. Numerical simulations and circuitry simulations are presented to verify the analytical results.
Keywords:fractional order hyperchaos  passive control  numerical simulation  circuitry simulation
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