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Chaos control based on stability Transformation method for unstable periodic orbits

机译:不稳定周期轨道基于稳定性变换方法的混沌控制

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Stability transformation method has been proposed in order to detect the location of a unstable periodic orbit in a dynamical system which exhibits chaotic behavior. A chaos control approach based on the method has been also considered. The chaos control method can stabilize unknown steady states, however the control method uses l -times iterated Poincaré map corresponding to a periodic orbit of length l . Therefore there is a disadvantage related to robustness and more detailed discussion for realization of the control method is needed. In this paper, we propose a novel chaos control method based on stability transformation method for unstable periodic orbits. The method can stabilize unstable periodic orbits whose states are unknown. We show that our method has a much wider range of control parameters to guarantee stability than ones of a previous method and can be realized by a simple circuit implementation. Some examples are provided and the some theoretical results are confirmed by laboratory measurements.
机译:为了检测表现出混沌行为的动力系统中不稳定周期轨道的位置,提出了稳定性变换方法。还考虑了基于该方法的混沌控制方法。混沌控制方法可以稳定未知的稳态,但是该控制方法使用与长度为 1的周期性轨道相对应的I-1倍迭代庞加莱映射。因此存在与鲁棒性有关的缺点,并且需要更详细的讨论来实现控制方法。本文提出了一种基于稳定性变换方法的不稳定周期轨道混沌控制方法。该方法可以稳定状态未知的不稳定周期轨道。我们证明,与以前的方法相比,我们的方法具有更大范围的控制参数来保证稳定性,并且可以通过简单的电路实现来实现。提供了一些示例,并通过实验室测量证实了一些理论结果。

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