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      A novel approach to generate attractors with a high number of scrolls

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          Abstract

          In this paper, it is presented a novel method for increasing the number of scrolls in a hybrid nonlinear switching system. Using the definition of the "Round to the Nearest Integer Function", as a generalization of a PWL function, which is capable of generating up to a thousand of scrolls. An equation that characterizes the grown in the number of scrolls is calculated, which fits to the behavior of the system measured by means of the coefficient of determination, denoted \(R^{2}\), and pronounced "R squared". The proposed equation is based on obtaining as many scrolls as desired, based on the control parameters of the linear operator of the system. The work here presented provides a new approach for the generation and control of a high number of scrolls in a hybrid system. The results are verified for all the scenarios that the equations covers.

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          Most cited references14

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          The double scroll family

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            Strange attractors and chaotic motions of dynamical systems

            Edward Ott (1981)
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              Hybrid dynamical systems

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                Author and article information

                Journal
                05 April 2019
                Article
                1904.03226
                c9eaf516-6dcf-4bf9-9af0-fdc36d055177

                http://arxiv.org/licenses/nonexclusive-distrib/1.0/

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                Custom metadata
                12 pages, 14 individual figures composed in 7 figures in the text
                nlin.CD

                Nonlinear & Complex systems
                Nonlinear & Complex systems

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