By Recai Kilic
Self sufficient and nonautonomous Chua's circuits are of specific importance within the research of chaotic method modeling, chaos-based technological know-how and engineering functions. for the reason that and software-based layout and implementation techniques could be utilized to Chua's circuits, those circuits also are very good educative types for learning and experimenting nonlinear dynamics and chaos. This booklet not just offers a suite of the author's released papers on layout, simulation and implementation of Chua's circuits, it additionally offers a scientific method of training chaotic dynamics.
Read or Download A Practical Guide for Studying Chua's Circuits (Nonlinear Science, Series a) (World Scientific Series on Nonlinear Science: Series a) PDF
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Extra resources for A Practical Guide for Studying Chua's Circuits (Nonlinear Science, Series a) (World Scientific Series on Nonlinear Science: Series a)
75 kHz. In the third experimental configuration, by scaling down values of the synthetic inductor and capacitors by a factor of 100, we determined the circuit parameters in Fig. 18 mH according to Leq = R1R2C3. 36 A Practical Guide for Studying Chua’s Circuits (a) (b) Fig. 38 For the second experimental configuration, (a) The double-scroll attractor, projection in the (VC2–VC1) plane, x-axes: 2V, y-axes: 500 mV, (b) The chaotic spectrum for measured time waveform VC2(t) from CFOA-based Chua’s circuit.
17. R1 AD844 C C L AD844 C3 R2 C iL AD844 (a) AD844 AD844 L R1 C R2 C C3 (b) Fig. 17 CFOA-based synthetic inductor structures. 14) Leq = C3 R1 R2 In the literature, an alternative inductance simulator topology based on an FTFN has been introduced for inductorless realization of Chua’s circuit and other chaotic oscillators that contains both grounded and floating inductor elements . The FTFN-based inductance simulator, shown in Fig. 18, allows one to simulate not only a grounded inductor but also a floating inductor.
First, the chaotic behaviors of the hybrid realizations are investigated by PSPICETM  simulation experiments. Then we show a sample experimental realization of inductorless Chua’s circuit design. 1 Hybrid-I realization of Chua’s circuit Fig. 20 shows a Hybrid-I realization of Chua’s circuit using two AD712 BiFET op amp biased with ±9 V, six resistors to implement VOA-based nonlinear resistor, three AD844-type CFOA biased with ±9 V, two resistors, and a capacitor to implement CFOA-based grounded synthetic inductor for L = 18 mH inductance value.
A Practical Guide for Studying Chua's Circuits (Nonlinear Science, Series a) (World Scientific Series on Nonlinear Science: Series a) by Recai Kilic