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A Novel Autonomous 5-D Hyperjerk RC Circuit with Hyperbolic Sine Function

机译:具有双曲正弦函数的新型自主5D Hyperjerk RC电路

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A novel autonomous 5-D hyperjerk RC circuit with hyperbolic sine function is proposed in this paper. Compared to some existing 5-D systems like the 5-D Sprott B system, the 5-D Lorentz, and the Lorentz-like systems, the new system is the simplest 5-D system with complex dynamics reported to date. Its simplicity mainly relies on its nonlinear part which is synthetized using only two semiconductor diodes. The system displays only one equilibrium point and can exhibit both periodic and chaotic dynamical behavior. The complex dynamics of the system is investigated by means of bifurcation analysis. In particular, the striking phenomenon of multistability is revealed showing up to seven coexisting attractors in phase space depending solely on the system’s initial state. To the best of author’s knowledge, this rich dynamics has not yet been revealed in any 5-D dynamical system in general or particularly in any hyperjerk system. Pspice circuit simulations are performed to verify theoreticalumerical analysis.
机译:提出了一种新颖的具有双曲正弦函数的自主5-D超冲击RC电路。与某些现有的5-D系统(例如5-D Sprott B系统,5-D Lorentz和类似Lorentz的系统)相比,新系统是迄今为止最简单的具有复杂动态特性的5-D系统。它的简单性主要取决于其非线性部分,该部分仅使用两个半导体二极管进行合成。该系统仅显示一个平衡点,并且可以显示周期性和混沌动力学行为。通过分叉分析研究了系统的复杂动力学。尤其是,发现了显着的多重稳定性现象,表明在相空间中多达七个共存的吸引子完全取决于系统的初始状态。据作者所知,这种丰富的动力学尚未在任何5-D动力学系统中或一般在任何超加速系统中揭示。执行Pspice电路仿真以验证理论/数值分析。

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