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Implementation of a BJT based jerk circuit: route to chaos with multiple attractors

机译:基于BJT的混响电路的实现:具有多个吸引子的混乱之路

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Recently researchers have done much work on simple chaotic circuits based on jerk equations. In this paper, a jerk circuit was simulated and implemented using a Bipolar Junction Transistor (BJT) as a nonlinear switch. This nonlinear electronic circuit showed chaotic dynamics under different conditions. A jerk circuit constitutes a third order differential equation having hypothetical factors x, x, x and ...x. The stretching and folding phenomenon by changing control parameter of the dynamical system and its transition into chaos was observed. The system displayed a period-1, period-2, and period-4 responses (attractors) and then the period-doubling cascade led the system into chaos with multiple attractors. In addition, a bifurcation diagram was also drawn by numerically solving the nonlinear differential equation of the system.
机译:最近,研究人员在基于jerk方程的简单混沌电路上做了大量工作。在本文中,利用双极结型晶体管(BJT)作为非线性开关,模拟并实现了一个混动电路。这种非线性电子电路在不同条件下表现出混沌动力学。冲击电路构成具有假设因子x,x,x和... x的三阶微分方程。通过改变动力学系统的控制参数,观察到了拉伸和折叠现象,并观察到其转变为混沌现象。系统显示周期1,周期2和周期4的响应(吸引子),然后周期加倍的级联导致系统陷入具有多个吸引子的混乱状态。此外,还通过数值求解系统的非线性微分方程来绘制分叉图。

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