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Simultaneous time-frequency control of bifurcation and chaos

机译:分叉和混沌的同时时频控制

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摘要

Control scheme facilitated either in the time- or frequency-domain alone is insufficient in controlling route-to-chaos, where the corresponding response deteriorates in the time and frequency domains simultaneously. A novel chaos control scheme is formulated by addressing the fundamental characteristics inherent of chaotic response. The proposed control scheme has its philosophical basis established in simultaneous time-frequency control, on-line system identification, and adaptive control. Physical features that embody the concept include multiresolution analysis, adaptive Finite Impulse Response (FIR) filter, and Filtered-x Least Mean Square (FXLMS) algorithm. A non-stationary Duffing oscillator is investigated to demonstrate the effectiveness of the control methodology. Results presented herein indicate that for the control of dynamic instability including chaos to be deemed viable, mitigation has to be adaptive and engaged in the time and frequency domains at the same time.
机译:仅在时域或频域中促进的控制方案不足以控制从混沌到路径,其中相应的响应在时域和频域中同时恶化。通过解决混沌响应固有的基本特征,提出了一种新颖的混沌控制方案。所提出的控制方案在同时时频控制,在线系统识别和自适应控制中建立了其哲学基础。体现该概念的物理功能包括多分辨率分析,自适应有限冲激响应(FIR)滤波器和Filtered-x最小均方(FXLMS)算法。研究了一个非平稳的Duffing振荡器,以证明控制方法的有效性。本文提供的结果表明,要控制动态不稳定性(包括被认为是可行的混沌),缓解措施必须具有适应性,并且必须同时参与时域和频域。

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