Boundary Controllability and Asymptotic Stabilization of a Nonlocal Traffic Flow Model

被引:0
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作者
Alexandre Bayen
Jean-Michel Coron
Nicola De Nitti
Alexander Keimer
Lukas Pflug
机构
[1] University of California,Institute of Transportation Studies (ITS)
[2] Berkeley,Sorbonne Université, Université Paris
[3] Laboratoire Jacques-Louis Lions,Diderot SPC, CNRS, INRIA
[4] Friedrich-Alexander-Universität Erlangen-Nürnberg,Department of Data Science, Chair of Applied Analysis (Alexander von Humboldt Professorship)
[5] Competence Unit for Scientific Computing,Department of Mathematics, Chair of Applied Mathematics (Continuous Optimization)
[6] Friedrich-Alexander-Universität Erlangen-Nürnberg,undefined
来源
关键词
Conservation laws; Nonlocal flux; Traffic flow; Exact controllability; Boundary controllability; Stabilization; Characteristics; 35L65; 35L02; 35L04; 35L60; 93C20; 93B05;
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摘要
We study the exact boundary controllability of a class of nonlocal conservation laws modeling traffic flow. The velocity of the macroscopic dynamics depends on a weighted average of the traffic density ahead and the averaging kernel is of exponential type. Under specific assumptions, we show that the boundary controls can be used to steer the system towards a target final state or out-flux. The regularizing effect of the nonlocal term, which leads to the uniqueness of weak solutions, enables us to prove that the exact controllability is equivalent to the existence of weak solutions to the backwards-in-time problem. We also study steady states and the long-time behavior of the solution under specific boundary conditions.
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页码:957 / 985
页数:28
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