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Equivalence of the continuum limit of the generalized Rossler system and the chaotic transmission line oscillator

机译:广义Rossler系统连续极限与混沌传输线振荡器的等价性。

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摘要

We demonstrate the formal equivalence of the continuum limit of the generalized Rossler system (GRS) with a chaotic transmission line oscillator. To establish the connection between these systems, we first present an electronic circuit implementation of the GRS with finite phase space dimension. The circuit consists of a ladder of discrete inductors and capacitors terminated at one end by a negative resistor and at the other with a nonlinear device. In the continuum limit, we find that the ladder of inductors and capacitors becomes a transmission line. The negative resistance and nonlinear termination produce a chaotic transmission line oscillator. This result connects two lines of inquiry in the literature on delay dynamical systems where hitherto no obvious relation was evident. We exploit this connection to confirm predictions of the divergence of the Lyapunov dimension and metric entropy for the continuum GRS made based on extrapolation from finite dimension cases.
机译:我们证明了具有混沌传输线振荡器的广义Rossler系统(GRS)的连续极限的形式等效。为了建立这些系统之间的连接,我们首先介绍具有有限相空间尺寸的GRS的电子电路实现。该电路由分立的电感器和电容器组成的梯形图,一端由一个负电阻器端接,另一端由一个非线性器件端接。在连续极限中,我们发现电感器和电容器的阶梯成为传输线。负电阻和非线性终端产生一个混沌的传输线振荡器。该结果连接了关于时滞动力系统的文献中的两条查询线,迄今为止尚无明显的关系。我们利用这种联系来确认对Lyapunov维数与度量熵之间的差异的预测,该预测是基于有限维情况外推得出的连续GRS。

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