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Determining the Lyapunov Spectrum of Continuous-Time 1D and 2D Multiscroll Chaotic Oscillators via the Solution ofm-PWL Variational Equations

机译:通过m-PWL变分方程的求解确定连续时间一维和二维多涡旋混沌振荡器的Lyapunov谱

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An algorithm to compute the Lyapunov exponents of piecewise linear function-based multidirectional multiscroll chaotic oscillators is reported. Based on themregions in the piecewise linear functions, the suggested algorithm determines the individual expansion rate of Lyapunov exponents fromm-piecewise linear variational equations and their associatedm-Jacobian matrices whose entries remain constant during all computation cycles. Additionally, by considering OpAmp-based chaotic oscillators, we study the impact of two analog design procedures on the magnitude of Lyapunov exponents. We focus on analyzing variations of both frequency bandwidth and voltage/current dynamic range of the chaotic signals at electronic system level. As a function of the design parameters, a renormalization factor is proposed to estimate correctly the Lyapunov spectrum. Numerical simulation results in a double-scroll type chaotic oscillator and complex chaotic oscillators generating multidirectional multiscroll chaotic attractors on phase space confirm the usefulness of the reported algorithm.
机译:报道了一种基于分段线性函数的多向多涡旋混沌振荡器的李雅普诺夫指数计算算法。基于分段线性函数中的区域,建议的算法根据分段线性变分方程及其相关的m-Jacobian矩阵确定Lyapunov指数的个体展开率,这些矩阵的项在所有计算周期内均保持不变。此外,通过考虑基于OpAmp的混沌振荡器,我们研究了两种模拟设计程序对Lyapunov指数幅度的影响。我们专注于分析电子系统级混沌信号的频率带宽和电压/电流动态范围的变化。根据设计参数,提出了重归一化因子以正确估计李雅普诺夫频谱。在双涡卷型混沌振荡器和在相空间上生成多方向多涡卷混沌吸引子的复杂混沌振荡器的数值仿真结果证实了该算法的有效性。

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