Yaakobi O, Friedland L, Henis Z
Soreq NRC, Yavne 81800, Israel.
Phys Rev E Stat Nonlin Soft Matter Phys. 2007 Aug;76(2 Pt 2):026205. doi: 10.1103/PhysRevE.76.026205. Epub 2007 Aug 7.
An efficient control scheme of resonant three-oscillator interactions using an external chirped frequency drive is suggested. The approach is based on formation of a double phase-locked (autoresonant) state in the system, as the driving oscillation passes linear resonance with one of the interacting oscillators. When doubly phase locked, the amplitudes of the oscillators increase with time in proportion to the driving frequency deviation from the linear resonance. The stability of this phase-locked state and the effects of dissipation and of the initial three-oscillator frequency mismatch on the autoresonance are analyzed. The associated autoresonance threshold phenomenon in the driving amplitude is also discussed. In contrast to other nonlinear systems, driven, autoresonant three-oscillator excitations are independent of the sign of the driving frequency chirp rate.
提出了一种利用外部啁啾频率驱动实现谐振三振荡器相互作用的高效控制方案。该方法基于系统中形成双锁相(自谐振)状态,即驱动振荡与其中一个相互作用的振荡器通过线性共振。当双锁相时,振荡器的振幅随时间增加,与驱动频率偏离线性共振的程度成比例。分析了这种锁相状态的稳定性以及耗散和初始三振荡器频率失配对自共振的影响。还讨论了驱动振幅中相关的自共振阈值现象。与其他非线性系统不同,受驱动的自共振三振荡器激发与驱动频率啁啾率的符号无关。