C. Sánchez-López, J. Muñoz-Pacheco, V. H. Carbajal-Gómez, R. Trejo-Guerra, E. Tlelo-Cuautle
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引用次数: 2

摘要

为了自动合成多涡旋混沌吸引子,必须分析和利用非线性函数的基本权衡。本文提出用一个替代函数来近似非线性函数的工作频率和开关点的行为之间的权衡,该非线性函数是一个由分段线性描述近似的饱和非线性函数序列。该替代函数与非线性系统参数和实际物理有源器件参数一起用于计算所提出的非线性函数的所有参数。然后,利用合成的非线性函数,提出了一种多涡旋混沌吸引子的自动合成方法。此外,为了缩放混沌吸引子的频率行为,我们使用了其他替代函数,该函数建立了工作频率与缩放因子之间的关系。结果表明,由于采用非线性系统参数、实际物理主动器件参数和替代函数来计算建模非线性函数行为的所有参数,并且还计算了混沌吸引子参数,因此该综合方法可以有效地生成多涡旋混沌吸引子。数值模拟和Hspice结果表明了新合成方法的优越性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Automatic synthesis of chaotic attractors using surrogate functions
To automatically synthesize multi-scroll chaotic attractors, fundamental trade-offs on the nonlinear function must be analyzed and exploited. This paper proposes to use a surrogate function to approximate the trade-off between the operating frequency and the behavior of the switching points of the nonlinear function, which is a saturated nonlinear function series approximated by a piece-wise linear description. The surrogate function along with nonlinear system parameters and real physical active device parameters are used to compute all the parameters of the proposed nonlinear function. Later on, by using the synthesized nonlinear function, we develop an automatic synthesis methodology for multi-scroll chaotic attractors. Furthermore, to scale the frequency behavior of the chaotic attractors, we use other surrogate function that establishes a relation between the operating frequency and the scaling factor. Our results indicate that our synthesis methodology efficiently generates multi-scroll chaotic attractors, since nonlinear system parameters, real physical active device parameters and surrogate functions are used to compute not only all the parameters modeling the behavior of the nonlinear function, but chaotic attractor parameters are also computed. Numerical simulations and Hspice results illustrate the benefits of the new synthesis methodology.
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