基于单一多段内函数的新型忆阻器的忆阻网格-多翼混沌系统的构造、分析与电路实现

IF 5.3 1区 数学 Q1 MATHEMATICS, INTERDISCIPLINARY APPLICATIONS
Xiangkun Chen , Wenxia Xu , Guodong Li , Hepeng Pan , Jingxu Zhang
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引用次数: 0

摘要

忆阻器由于其非线性特性和独特的记忆功能,常用于构造具有不同动态行为的忆阻混沌系统。提出了一种新型的多片段忆阻器,将其与改进的Sprott - C系统(MSCS)相结合,构建了忆阻网格多翼混沌系统(MGMWCS)。通过耦合不同数量的忆阻器,可以产生一维、二维和三维忆阻网格多翼混沌吸引子。值得注意的是,本文提出的忆阻器只包含一个内部分段函数和一个状态变量。通过调整分段函数的分割参数,可以生成多个记忆网格混沌吸引子。首先,利用磁滞回线和Power-Off图(POP)验证了忆阻器的非线性特性和非挥发性。随后,利用相图、分岔图和Lyapunov指数图对MGMWCS进行了综合分析,揭示了混沌系统的复杂动力学行为。此外,我们使用Multisim对忆阻器和MGMWCS进行了数字电路仿真。在示波器上显示了忆阻器的磁滞回线和MGMWCS的相图,验证了MGMWCS的物理可实现性。最后,利用DSP硬件平台绘制了1D-MGMWCAs、2D-MGMWCAs和3D-MGMWCAs的相图,凸显了MGMWCS的良好应用潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Construction, analysis, and circuit implementation of a memristive grid-multi-wing chaotic system based on a novel memristor with a single multi-section internal function
The memristor, due to its nonlinear characteristics and unique memory function, is often used to construct memristive chaotic systems with distinct dynamic behaviors. This paper presents a novel multi-piecewise memristor, which is coupled with the modified Sprott C system (MSCS) to construct a memristive grid multi-wing chaotic system (MGMWCS). By coupling different numbers of memristors, one-dimensional, two-dimensional, and three-dimensional memristive grid multi-wing chaotic attractors (MGMWCAs) can be generated. It is worth noting that the memristor proposed in this paper contains only a single internal piecewise function and a state variable. By adjusting the segmentation parameters of the piecewise function, multiple memristive grid chaotic attractors can be generated. First, the nonlinear characteristics and non-volatility of the memristor were verified using hysteresis loops and Power-Off plot (POP). Subsequently, a comprehensive analysis of MGMWCS was conducted using phase diagrams, bifurcation diagrams, and Lyapunov exponent plots, revealing the complex dynamical behaviors of the chaotic system. In addition, we performed digital circuit simulation of the memristor and MGMWCS using Multisim. The hysteresis loop of the memristor and the phase diagram of MGMWCS were displayed on an oscilloscope, verifying the physical implementability of MGMWCS. Finally, the phase diagram of 1D-MGMWCAs, 2D-MGMWCAs and 3D-MGMWCAs were plotted using the DSP hardware platform, highlighting the excellent application potential of MGMWCS.
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来源期刊
Chaos Solitons & Fractals
Chaos Solitons & Fractals 物理-数学跨学科应用
CiteScore
13.20
自引率
10.30%
发文量
1087
审稿时长
9 months
期刊介绍: Chaos, Solitons & Fractals strives to establish itself as a premier journal in the interdisciplinary realm of Nonlinear Science, Non-equilibrium, and Complex Phenomena. It welcomes submissions covering a broad spectrum of topics within this field, including dynamics, non-equilibrium processes in physics, chemistry, and geophysics, complex matter and networks, mathematical models, computational biology, applications to quantum and mesoscopic phenomena, fluctuations and random processes, self-organization, and social phenomena.
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