A simple two-transistor 4D chaotic oscillator and its synchronization via active control

Irfan Ahmad, B. Srisuchinwong
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引用次数: 4

Abstract

A new simple two-transistor four-dimensional (4D) chaotic oscillator is proposed using two sub-circuits, i.e. a modified single-transistor Colpitts oscillator, and another singletransistor sub-circuit for the fourth dimension. The circuit is much simpler than two existing two-transistor 4D chaotic circuits, as it has only nine electronic components, and only eleven algebraic terms in the state equation. The latter includes only three terms of nonlinearity. The circuit offers the largest Lyapunov exponent of 0.3232, which is much higher than those of the two existing two-transistor 4D chaotic circuits. The Lyapunov dimension is also identified at 3.0807. Synchronization through active control is demonstrated as a practical example of possible applications to chaos-based secure communications.
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一个简单的双晶体管4D混沌振荡器及其主动控制同步
提出了一种新的简单的双晶体管四维混沌振荡器,采用两个子电路,即改进的单晶体管Colpitts振荡器和另一个单晶体管子电路的四维混沌振荡器。该电路比现有的两个双晶体管四维混沌电路简单得多,因为它只有9个电子元件,状态方程中只有11个代数项。后者只包含三个非线性项。该电路的Lyapunov指数最大,为0.3232,远高于现有的两种双晶体管4D混沌电路。李雅普诺夫维数也确定为3.0807。通过主动控制进行同步是一个可能应用于基于混沌的安全通信的实际示例。
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