Title :
Autonomous third-order duffing-holmes type chaotic oscillator
Author :
Erik Lindberg;Elena Tamaseviciute;Gytis Mykolaitis;Skaidra Bumeliene;Tatjana Pyragiene;Arunas Tamasevicius;Raimundas Kirvaitis
Author_Institution :
DTU Elektro Department, Electronics & Signalprocessing, 348 Technical University of Denmark, Lyngby, DK-2800, Denmark
Abstract :
A novel Duffing-Holmes type autonomous chaotic oscillator is described. In comparison with the well-known nonautonomous Duffing-Holmes circuit it lacks the external periodic drive, but includes two extra linear feedback subcircuits, namely a direct positive feedback loop, and an inertial negative feedback loop. In contrast to many other autonomous chaotic oscillators, including linear unstable resonators and nonlinear damping loops, the novel circuit is based on nonlinear resonator and linear damping loop in the negative feedback. SPICE simulation and hardware experimental investigations are presented. The Lyapunov exponents calculated from the rate equations confirm dynamical nature of chaotic oscillations.
Keywords :
"Chaos","Oscillators","Feedback circuits","Negative feedback","Feedback loop","Negative feedback loops","Damping","SPICE","Circuit simulation","Hardware"
Conference_Titel :
Circuit Theory and Design, 2009. ECCTD 2009. European Conference on
DOI :
10.1109/ECCTD.2009.5275062