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首页> 外文期刊>International journal of nonlinear sciences and numerical simulation >Behavioral Modeling of SNFS for Synthesizing Multi-Scroll Chaotic Attractors
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Behavioral Modeling of SNFS for Synthesizing Multi-Scroll Chaotic Attractors

机译:SNFS的多滚动混沌吸引子行为建模

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摘要

Existing models of continuous nonlinear functions used for generating multi-scroll chaotic attractors are based on a piece-wise linear (PWL) approach. These models, although relatively easy to build, do not include any information related to the performance parameters of active devices, in the context of a possible physical implementation. This is a serious drawback, since the use of a PWL model introduces a level of inaccuracy into a numerical analysis which is more evident when numerical and experimental results are compared. This paper proposes a methodology to generate the behavioral model of continuous nonlinear functions, but unlike PWL approaches, real physical active device parameters are herein taken into account. In particular, we generate the behavioral model of a nonlinear function called saturated nonlinear function series (SNFS), but in general, the proposed approach can be used to generate the behavioral model of other continuous nonlinear functions. Our results indicate that the proposed approach yields a more realistic and accurate behavioral model than PWL models. As a consequence, not only the generation of chaotic attractors is more precise, but the metrics used to measure the complexity of a chaotic system can also be better predicted. Numerical and electrical simulation results at both domains, phase and time, illustrate the benefits of the new proposed model.
机译:用于生成多卷混沌吸引子的连续非线性函数的现有模型基于分段线性(PWL)方法。这些模型虽然相对容易构建,但是在可能的物理实现方式中,不包含与有源设备的性能参数有关的任何信息。这是一个严重的缺点,因为使用PWL模型会在数值分析中引入一定程度的不准确性,当比较数值结果和实验结果时,这一点更加明显。本文提出了一种生成连续非线性函数行为模型的方法,但是与PWL方法不同,此处考虑了实际的物理有源设备参数。特别是,我们生成了称为饱和非线性函数序列(SNFS)的非线性函数的行为模型,但是通常,所提出的方法可用于生成其他连续非线性函数的行为模型。我们的结果表明,所提出的方法比PWL模型产生了更现实和准确的行为模型。结果,不仅混沌吸引子的产生更加精确,而且可以更好地预测用于测量混沌系统复杂性的度量。在相位和时间两个方面的数值和电气仿真结果说明了新模型的优势。

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