【摘 要】
:
本文采用奇异摄动方法分析了延时微分系统从准周期态向完全混沌态过渡时的动力学行为.结果表明,在混沌带的合并点存在着吸引子危机窗口.这些窗口的临界值和宽度都随该系统中不同的线性模式规律性地变化,从而导致在进入湍态(即完全混沌态)之前发生基频的谐波分岔,即ω_0→3ω_0→5ω_0→…→(2k_m+1)ω_0,并出现回滞行为。作者认为这种从准周期态到高次谐波分岔最后进入混沌的方式是延时微分系统中通向湍态
【出 处】
:
中国科学(A辑 数学 物理学 天文学 技术科学)
论文部分内容阅读
本文采用奇异摄动方法分析了延时微分系统从准周期态向完全混沌态过渡时的动力学行为.结果表明,在混沌带的合并点存在着吸引子危机窗口.这些窗口的临界值和宽度都随该系统中不同的线性模式规律性地变化,从而导致在进入湍态(即完全混沌态)之前发生基频的谐波分岔,即ω_0→3ω_0→5ω_0→…→(2k_m+1)ω_0,并出现回滞行为。作者认为这种从准周期态到高次谐波分岔最后进入混沌的方式是延时微分系统中通向湍态的重要途径。
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