Title :
Chaotifing Duffing-type System with Large Parameter Range Based on Optimal Time-Delay Feedback Control
Author :
Zhou, Jiaxi ; Xu, Daolin ; Li, Yingli
Author_Institution :
State Key Lab. of Adv. Design & Manuf. for Vehicle Body, Hunan Univ., Changsha, China
Abstract :
This report presents a technique of chaotification based on the optimal time-delay feedback that can make a system chaotic with large chaotic parameters range. The bifurcation analysis is done to determine the stability of the time-delay system. An implicit performance index and an optimization strategy are proposed for the time-delay control scheme that can be effectively carried out to obtain the optimal delay time for chaos with best quality. Simulation results of Duffing-type systems show that it is possible to excite the system behaving chaotically while the feedback controls remain small at favorable level. Chaotification performance is further discussed when the excitation frequency and system parameters are widely changed. Results also reveal an interesting phenomenon that the optimal time-delay chaotification can reduce or even eliminates line spectra apparently when the excitation frequency is approximately lower than 8 Hz, which may potentially lead to an application for line spectra reduction of the radiated noise emitted from underwater vehicles.
Keywords :
chaos; delays; feedback; nonlinear control systems; optimisation; stability; Duffing-type system; chaotification technique; implicit performance index; optimal time-delay feedback; optimization strategy; system stability; time-delay control scheme; Bifurcation; Chaotic communication; Delay; Feedback control; Performance analysis; Time frequency analysis; chaotification; design optimization; line spectrum; time-delay feedback;
Conference_Titel :
Chaos-Fractals Theories and Applications (IWCFTA), 2010 International Workshop on
Conference_Location :
Kunming, Yunnan
Print_ISBN :
978-1-4244-8815-5
DOI :
10.1109/IWCFTA.2010.38