Generalized projective synchronization via the state observer and its application in secure communic

来源 :Chinese Physics B | 被引量 : 0次 | 上传用户:yanghao_haohao
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Based on the improved state observer and the pole placement technique,by adding a constant which extends the scope of use of the original system,a new design method of generalized projective synchronization is proposed.With this method,by changing the projective synchronization scale factor,one can achieve not only complete synchronization,but also anti-synchronization,as well as arbitrary percentage of projective synchronization,so that the system may attain arbitrary synchronization in a relatively short period of time,which makes this study more meaningful.By numerical simulation,and choosing appropriate scale factor,the results of repeated experiments verify that this method is highly effective and satisfactory.Finally,based on this method and the relevant feedback concept,a novel secure communication project is designed.Numerical simulation verifies that this secure communication project is very valid,and moreover,the experimental result has been greatly improved in decryption time. Based on the improved state observer and the pole placement technique, by adding a constant which extends the scope of use of the original system, a new design method of generalized projective synchronization is proposed. Here this method, by changing the projective synchronization scale factor, one can achieve not only complete synchronization, but also anti-synchronization, as well as arbitrary percentage of projective synchronization, so that the system may attain arbitrary synchronization in a relatively short period of time, which makes this study more meaningful.By numerical simulation, and selects appropriate scale factor, the results of repeated experiments verify that this method is highly effective and satisfactory. Finally, based on this method and the relevant feedback concept, a novel secure communication project is designed. Numerical simulation verifies that this secure communication project is is very valid, and moreover, the experimental result has been greatly improved in decryption tim e.
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