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Controlling chaos in tapping mode atomic force microscopes using improved minimum entropy control

机译:使用改进的最小熵控制来控制攻丝模式原子力显微镜中的混沌

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摘要

Minimum entropy control technique, an approach for controlling chaos without using the dynamical model of the system, can be improved by being combined with a nature-based optimization technique. In this paper, an ACO-based optimization algorithm is employed to minimize the entropy function of the chaotic system. The feedback gain of a delayed feedback controller is adjusted in the ACO algorithm. The effectiveness of the idea is investigated on suppressing chaos in the tapping-mode atomic force microscope equations. Results show a good performance. The PSO-based version of the minimum entropy control technique is also used to control the chaotic behavior of the AFM, and corresponding results are compared showing almost a same functionality for the two optimization algorithms of PSO and ACO as the minimizing engines of the minimum entropy strategy.
机译:最小熵控制技术是一种无需使用系统动力学模型即可控制混沌的方法,可以与基于自然的优化技术相结合进行改进。在本文中,基于ACO的优化算法被用来最小化混沌系统的熵函数。延迟反馈控制器的反馈增益在ACO算法中进行调整。研究了这种方法在抑制振型原子力显微镜方程中的混沌方面的有效性。结果显示出良好的性能。还使用基于PSO的最小熵控制技术版本来控制AFM的混沌行为,并比较了相应的结果,显示了PSO和ACO两种优化算法的功能几乎与最小熵的最小引擎相同。战略。

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