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contributor authorYang, Qingchao;Li, Shuang;Ma, Zhaozhao
date accessioned2023-04-06T13:03:18Z
date available2023-04-06T13:03:18Z
date copyright11/17/2022 12:00:00 AM
date issued2022
identifier issn15551415
identifier othercnd_018_01_011002.pdf
identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4288996
description abstractNonlinear energy sink (NES) systems, when applied to a physical system with multiple interference sources, exhibit abundant nonlinear dynamic behaviors. However, current research in this respect is limited within the theoretical scope of deterministic systems. According to the theory of cell mapping, this paper introduces a parallel restructured algorithm to improve the performance of cell mapping and cell processing, and a parallelized multidegreesoffreedom (DOF) cell mapping (PMDCM) method is given. With the method, the global behavior of NES systems is analyzed so that the dynamical behavior of multiple stable attractors within typical parameter intervals can be captured. The research results show that for NES systems, there is the phenomenon of multiple stable attractors coexisting in multiple typical parameter intervals, which occurs between periodic and periodic attractor, periodic and quasiperiodic, periodic and chaotic attractor. While revealing the corresponding relationship between different types of attractors and their basin of attraction, these findings verify that the new cell mapping method has high computational efficiency and accuracy and can provide a theoretical basis for the study of highdimensional nonlinear systems' global behavior and optimal control.
publisherThe American Society of Mechanical Engineers (ASME)
titleGlobal Behavior Analysis of Nonlinear Energy Sink Systems Using the Parallelized MultiDegreesofFreedom Cell Mapping Method
typeJournal Paper
journal volume18
journal issue1
journal titleJournal of Computational and Nonlinear Dynamics
identifier doi10.1115/1.4056198
journal fristpage11002
journal lastpage110027
page7
treeJournal of Computational and Nonlinear Dynamics:;2022:;volume( 018 ):;issue: 001
contenttypeFulltext


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