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Control Chaos of a Unidirectionally Traffic Coupled Map Lattice Model

Control Chaos of a Unidirectionally Traffic Coupled Map Lattice Model
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摘要 Spatiotemporal chaos is studied by using the unidirectional traffic coupled lattice model with hyperbolic tangent local map. The coupled map lattice (CML) model can simulate the complex traffic flow phenomenon which is similar to the traditional traffic flow model. The nonlinear feedback method is used to study the control of the chaotic system of the unidirectionally traffic coupled map lattice model. The stability of spatiotemporal chaos in the coupled map lattice is realized. The results of numerical simulation show that there is a relationship between control results and control parameters when controlling spatiotemporal chaos to a uniform stable state in a certain phase space compression parameter region. Spatiotemporal chaos is studied by using the unidirectional traffic coupled lattice model with hyperbolic tangent local map. The coupled map lattice (CML) model can simulate the complex traffic flow phenomenon which is similar to the traditional traffic flow model. The nonlinear feedback method is used to study the control of the chaotic system of the unidirectionally traffic coupled map lattice model. The stability of spatiotemporal chaos in the coupled map lattice is realized. The results of numerical simulation show that there is a relationship between control results and control parameters when controlling spatiotemporal chaos to a uniform stable state in a certain phase space compression parameter region.
作者 Yaling Fang Yaling Fang(College of Electrical and Power Engineering, Taiyuan University of Technology, Taiyuan, China)
出处 《Journal of Applied Mathematics and Physics》 2021年第10期2527-2533,共7页 应用数学与应用物理(英文)
关键词 Traffic Flow Model Coupled Map Lattice Model Spatiotemporal Chaos Feedback Control Traffic Flow Model Coupled Map Lattice Model Spatiotemporal Chaos Feedback Control
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