一种滞回双端口VCCS混沌振荡器的集成电路实现

Takuya Hamada, Y. Horio, K. Aihara
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引用次数: 3

摘要

近年来,研究人员尝试将混沌应用于混沌通信、混沌加密、组合优化问题和混沌计算等领域。混沌集成电路对于大规模混沌系统的实际实现是必不可少的。一种基于迟滞双端口压控电流源的混沌振荡器(2P-VCCS)得到了广泛的研究。本文提出了一种迟滞2P-VCCS混沌电路的集成电路实现方案。采用MOSIS TSMC 0.35 mum CMOS工艺设计了原型芯片。通过Spectre的SPICE模拟和原型芯片上的实验,我们展示了所提出电路的各种动力学,包括四螺旋吸引子。
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An IC implementation of a hysteresis two-port VCCS chaotic oscillator
Recently, researchers attempt to use chaos in applications such as chaotic communication, chaotic encryption, combinatorial optimization problems and chaotic computation. Chaotic integrated circuits are essential for a practical implementation of a large-scale chaotic system. A chaotic oscillator based on hysteresis two-port voltage-controlled current sources (2P-VCCS) has been extensively studied. In this paper, we propose an IC implementation of the hysteresis 2P-VCCS chaotic circuit. A prototype chip is designed with MOSIS TSMC 0.35 mum CMOS process. Through SPICE simulations with Spectre and experiments on the prototype chip, we illustrate a variety of dynamics from the proposed circuit including a quad screw attractor.
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