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Chaos control, spiral wave formation, and the emergence of spatiotemporal chaos in networked Chua circuits

机译:网络化蔡氏电路中的混沌控制,螺旋波形成和时空混沌的出现

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摘要

In this paper, a certain kind of intermittent scheme is used to control the chaos in a single chaotic Chua circuit to reach an arbitrary orbit. Furthermore, it is confirmed to be effective in suppressing spatiotemporal chaos and a spiral wave in the networks of Chua circuits with nearest-neighbor connections. The controllable and measurable variable is sampled, and the linear error between the sampled variable and the selected thresholds is fed back into the system only if the sampled variable exceeds the thresholds; otherwise, the system will develop itself without any external perturbation. In experiments, the control scheme could be realized by using the Heavside function. In the case of one single chaotic Chua circuit, the chaotic state can be controlled to reach an arbitrary n-periodical orbit (n=1,2,3,5,6,…) with appropriate feedback intensity and thresholds. It is argued that this scheme could explain the mechanism of what is called phase compression. Then the phase compression scheme is used to control a spiral wave and spatiotemporal chaos in a network of Chua circuits with 256×256 sites. The numerical simulation results confirm its effectiveness when appropriate upper and bottom thresholds are used by monitoring the measurable output voltages of the chaotic circuit in one site of the network.
机译:在本文中,一种间歇性方案被用来控制单个混沌Chua电路中的混沌以达到任意轨道。此外,已证实在抑制具有最近邻居连接的蔡氏电路网络中的时空混沌和螺旋波方面是有效的。对可控和可测量变量进行采样,并且仅当采样变量超过阈值时,采样变量与所选阈值之间的线性误差才会反馈到系统中。否则,系统将自行发展,而不会受到任何外部干扰。在实验中,可以通过使用Heavside函数来实现控制方案。在单个混沌Chua电路的情况下,可以控制混沌状态以达到具有适当反馈强度和阈值的任意n周期轨道(n = 1,2,3,5,6,…)。有人认为这种方案可以解释所谓的相位压缩的机制。然后,在具有256×256个位点的Chua电路网络中,使用相位压缩方案来控制螺旋波和时空混沌。数值模拟结果通过监视网络一个站点中混沌电路的可测量输出电压,在使用适当的上限和下限阈值时证实了其有效性。

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