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Generalised synchronisation of spatiotemporal chaos using feedback control method and phase compression

Generalised synchronisation of spatiotemporal chaos using feedback control method and phase compression
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摘要 Coupled map lattices are taken as examples to study the synchronisation of spatiotemporal chaotic systems. First, a generalised synchronisation of two coupled map lattices is realised through selecting an appropriate feedback function and appropriate range of feedback parameter. Based on this method we use the phase compression method to extend the range of the parameter. So, we integrate the feedback control method with the phase compression method to implement the generalised synchronisation and obtain an exact range of feedback parameter. This technique is simple to implement in practice. Numerical simulations show the effectiveness and the feasibility of the proposed program. Coupled map lattices are taken as examples to study the synchronisation of spatiotemporal chaotic systems. First, a generalised synchronisation of two coupled map lattices is realised through selecting an appropriate feedback function and appropriate range of feedback parameter. Based on this method we use the phase compression method to extend the range of the parameter. So, we integrate the feedback control method with the phase compression method to implement the generalised synchronisation and obtain an exact range of feedback parameter. This technique is simple to implement in practice. Numerical simulations show the effectiveness and the feasibility of the proposed program.
作者 王兴元 张娜
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2010年第9期239-243,共5页 中国物理B(英文版)
基金 supported by the National Natural Science Foundation of China (Grant Nos.60573172 and 60973152) the Doctoral Program Foundation of Institution of Higher Education of China (Grant No.20070141014) the Natural Science Foundation of Liaoning Province,China (Grant No.20082165)
关键词 coupled map lattice generalised synchronisation feedback control phase compression coupled map lattice, generalised synchronisation, feedback control, phase compression
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