应用程序中对用户输入的数据进行严格的验证,才能确保当用户输入正确的数据时得到预期的结果,用户输入错误的数据时剔除它或者提示用户重新输入。在 C#的 Windows 应用程序设计时,可以在按键级、控件级和窗体级这三个级别上对输入采取...应用程序中对用户输入的数据进行严格的验证,才能确保当用户输入正确的数据时得到预期的结果,用户输入错误的数据时剔除它或者提示用户重新输入。在 C#的 Windows 应用程序设计时,可以在按键级、控件级和窗体级这三个级别上对输入采取验证措施,以确保数据的合法性。展开更多
In this paper, we propose a method for the projective synchronization between two different chaotic systems with variable time delays. Using active control approach, the suitable controller is constructed to make the ...In this paper, we propose a method for the projective synchronization between two different chaotic systems with variable time delays. Using active control approach, the suitable controller is constructed to make the states of two different diverse time delayed systems asymptotically synchronize up to the desired scaling factor. Based on the Lyapunov stability theory, the sufficient condition for the projective synchronization is calculated theoretically. Numerical simulations of the projective synchronization between Maekey-Glass system and Ikeda system with variable time delays are shown to validate the effectiveness of the proposed algorithm.展开更多
基金Supported by Research Project of Hubei Provincial Department of Education under Grant No. Q20101609Foundation of Wuhan Textile University under Grant No. 105040
文摘In this paper, we propose a method for the projective synchronization between two different chaotic systems with variable time delays. Using active control approach, the suitable controller is constructed to make the states of two different diverse time delayed systems asymptotically synchronize up to the desired scaling factor. Based on the Lyapunov stability theory, the sufficient condition for the projective synchronization is calculated theoretically. Numerical simulations of the projective synchronization between Maekey-Glass system and Ikeda system with variable time delays are shown to validate the effectiveness of the proposed algorithm.