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Realization of Chaotic Circuits Using Lambda Diode

机译:使用Lambda二极管实现混沌电路

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This paper presents the design of novel autonomous and non-autonomous inductorless chaotic circuit using lambda diode. The autonomous chaotic circuit is implemented using Chua's circuit, where the piece-wise linear element of Chua's circuit called Chua's diode is replaced by lambda diode. The lambda diode used as a nonlinear resistor in Chua's circuit comprises of BJT, FET and resistors. The non-autonomous chaotic circuit is studied by replacing the piece-wise linear element of Murali-Lakshmana-Chua (MLC) circuit by lambda diode. The reason for employing lambda diode is that it has a wide range of negative resistance characteristics, which enable the circuit to operate at higher frequency ranges. The resulting chaotic oscillator can easily be made to operate at both low and high frequencies. The chaotic behavior of the circuit is established through Multisim simulations in the time and frequency domains. Both theoretical analysis and electronic circuit experiments are presented. The circuit's chaotic characteristics are further confirmed by means of Poincare plot and the Bifurcation diagram. The observed route to chaos is period-adding.
机译:本文提出了一种新型的使用λ二极管的自主和非自主无电感器混沌电路的设计。自主混沌电路是使用Chua电路实现的,其中Chua电路的分段线性元件称为Chua's二极管,将其替换为Lambda二极管。在蔡氏电路中用作非线性电阻的拉姆达二极管由BJT,FET和电阻组成。通过用拉姆达二极管代替Murali-Lakshmana-Chua(MLC)电路的分段线性元件,研究了非自治混沌电路。采用λ二极管的原因是它具有宽范围的负电阻特性,使电路能够在更高的频率范围内工作。由此产生的混沌振荡器可以很容易地在低频和高频下工作。通过Multisim仿真在时域和频域中建立电路的混沌行为。进行了理论分析和电子电路实验。通过庞加莱图和分叉图进一步确认了电路的混沌特性。观察到的通往混乱的途径是周期加法的。

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