English

Synchronized flow and wide moving jams from balanced vehicular traffic

Physics and Society 2009-11-11 v2

Abstract

Recently we proposed an extension to the traffic model of Aw, Rascle and Greenberg. The extended traffic model can be written as a hyperbolic system of balance laws and numerically reproduces the reverse λ\lambda shape of the fundamental diagram of traffic flow. In the current work we analyze the steady state solutions of the new model and their stability properties. In addition to the equilibrium flow curve the trivial steady state solutions form two additional branches in the flow-density diagram. We show that the characteristic structure excludes parts of these branches resulting in the reverse λ\lambda shape of the flow-density relation. The upper branch is metastable against the formation of synchronized flow for intermediate densities and unstable for high densities, whereas the lower branch is unstable for intermediate densities and metastable for high densities. Moreover, the model can reproduce the typical speed of the downstream front of wide moving jams. It further reproduces a constant outflow from wide moving jams, which is far below the maximum free flow. Applying the model to simulate traffic flow at a bottleneck we observe a general pattern with wide moving jams traveling through the bottleneck.

Keywords

Cite

@article{arxiv.physics/0509124,
  title  = {Synchronized flow and wide moving jams from balanced vehicular traffic},
  author = {Florian Siebel and Wolfram Mauser},
  journal= {arXiv preprint arXiv:physics/0509124},
  year   = {2009}
}

Comments

10 pages, 12 figures

R2 v1 2026-07-22T19:05:52.387Z