Macroscopic traffic flow propagation stability for adaptive cruise controlled vehicles

Traffic flow propagation stability is concerned about whether a traffic flow perturbation will propagate and form a traffic shockwave. In this paper, we discuss a general approach to the macroscopic traffic flow propagation stability for adaptive cruise controlled (ACC) vehicles. We present a macros...

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Published inTransportation research. Part C, Emerging technologies Vol. 14; no. 2; pp. 81 - 95
Main Authors Yi, Jingang, Horowitz, Roberto
Format Journal Article
LanguageEnglish
Published Kidlington Elsevier India Pvt Ltd 01.04.2006
Elsevier
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ISSN0968-090X
1879-2359
DOI10.1016/j.trc.2006.05.005

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Abstract Traffic flow propagation stability is concerned about whether a traffic flow perturbation will propagate and form a traffic shockwave. In this paper, we discuss a general approach to the macroscopic traffic flow propagation stability for adaptive cruise controlled (ACC) vehicles. We present a macroscopic model with velocity saturation for traffic flow in which each individual vehicle is controlled by an adaptive cruise control spacing policy. A nonlinear traffic flow stability criterion is investigated using a wavefront expansion technique. Quantitative relationships between traffic flow stability and model parameters (such as traffic flow and speed, etc.) are derived for a generalized ACC traffic flow model. The newly derived stability results are in agreement with previously derived results that were obtained using both microscopic and macroscopic models with a constant time headway (CTH) policy. Moreover, the stability results derived in this paper provide sufficient and necessary conditions for ACC traffic flow stability and can be used to design other ACC spacing policies.
AbstractList Traffic flow propagation stability is concerned about whether a traffic flow perturbation will propagate and form a traffic shockwave. In this paper, we discuss a general approach to the macroscopic traffic flow propagation stability for adaptive cruise controlled (ACC) vehicles. We present a macroscopic model with velocity saturation for traffic flow in which each individual vehicle is controlled by an adaptive cruise control spacing policy. A nonlinear traffic flow stability criterion is investigated using a wavefront expansion technique. Quantitative relationships between traffic flow stability and model parameters (such as traffic flow and speed, etc.) are derived for a generalized ACC traffic flow model. The newly derived stability results are in agreement with previously derived results that were obtained using both microscopic and macroscopic models with a constant time headway (CTH) policy. Moreover, the stability results derived in this paper provide sufficient and necessary conditions for ACC traffic flow stability and can be used to design other ACC spacing policies.
Author Yi, Jingang
Horowitz, Roberto
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  givenname: Roberto
  surname: Horowitz
  fullname: Horowitz, Roberto
  organization: Department of Mechanical Engineering, University of California at Berkeley, Berkeley, CA 94720, United States
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Issue 2
Keywords Traffic propagation stability
Traffic flow
Adaptive cruise control (ACC)
Wavefront expansion
Intelligent transportation systems (ITS)
Stability
Navigational aid
Propagation
Transportation system
Macroscopic structure
Adaptive control
Modeling
Road traffic
Comparative study
Intelligent system
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Snippet Traffic flow propagation stability is concerned about whether a traffic flow perturbation will propagate and form a traffic shockwave. In this paper, we...
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SubjectTerms Adaptive cruise control (ACC)
Applied sciences
Exact sciences and technology
Ground, air and sea transportation, marine construction
Intelligent transportation systems (ITS)
Road transportation and traffic
Traffic flow
Traffic propagation stability
Wavefront expansion
Title Macroscopic traffic flow propagation stability for adaptive cruise controlled vehicles
URI https://dx.doi.org/10.1016/j.trc.2006.05.005
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