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Items: 1 to 20 of 121

1.

Exciting traffic jams: nonlinear phenomena behind traffic jam formation on highways.

Orosz G, Wilson RE, Szalai R, Stépán G.

Phys Rev E Stat Nonlin Soft Matter Phys. 2009 Oct;80(4 Pt 2):046205. Epub 2009 Oct 6.

PMID:
19905413
2.

Stabilization strategies of a general nonlinear car-following model with varying reaction-time delay of the drivers.

Li S, Yang L, Gao Z, Li K.

ISA Trans. 2014 Nov;53(6):1739-45. doi: 10.1016/j.isatra.2014.08.017. Epub 2014 Oct 23.

PMID:
25441220
3.

Characterization of the nontrivial and chaotic behavior that occurs in a simple city traffic model.

Villalobos J, Toledo BA, Pastén D, Muñoz V, Rogan J, Zarama R, Lammoglia N, Valdivia JA.

Chaos. 2010 Mar;20(1):013109. doi: 10.1063/1.3308597.

PMID:
20370264
4.

Microscopic features of moving traffic jams.

Kerner BS, Klenov SL, Hiller A, Rehborn H.

Phys Rev E Stat Nonlin Soft Matter Phys. 2006 Apr;73(4 Pt 2):046107. Epub 2006 Apr 7.

PMID:
16711878
5.

Phase transitions in traffic flow on multilane roads.

Kerner BS, Klenov SL.

Phys Rev E Stat Nonlin Soft Matter Phys. 2009 Nov;80(5 Pt 2):056101. Epub 2009 Nov 4. Erratum in: Phys Rev E Stat Nonlin Soft Matter Phys. 2010 Jun;81(6 Pt 2):069901.

PMID:
20365037
6.

Traffic jams induced by fluctuation of a leading car.

Nagatani T.

Phys Rev E Stat Phys Plasmas Fluids Relat Interdiscip Topics. 2000 Apr;61(4 Pt A):3534-40.

PMID:
11088129
7.

Cellular automata modeling of pedestrian's crossing dynamics.

Zhang J, Wang H, Li P.

J Zhejiang Univ Sci. 2004 Jul;5(7):835-40.

PMID:
15495312
8.

A macroscopic model of traffic jams in axons.

Kuznetsov AV, Avramenko AA.

Math Biosci. 2009 Apr;218(2):142-52. doi: 10.1016/j.mbs.2009.01.005. Epub 2009 Feb 5.

PMID:
19563741
9.

Totally asymmetric simple exclusion process with a time-dependent boundary: interaction between vehicles and pedestrians at intersections.

Ito H, Nishinari K.

Phys Rev E Stat Nonlin Soft Matter Phys. 2014 Apr;89(4):042813. Epub 2014 Apr 24.

PMID:
24827299
10.

Simulation of multilane freeway traffic with detailed rules deduced from microscopic driving behavior

Goldbach M, Eidmann A, Kittel A.

Phys Rev E Stat Phys Plasmas Fluids Relat Interdiscip Topics. 2000 Feb;61(2):1239-46.

PMID:
11046401
11.

Abrupt transition to complete congestion on complex networks and control.

Wang WX, Wu ZX, Jiang R, Chen G, Lai YC.

Chaos. 2009 Sep;19(3):033106. doi: 10.1063/1.3184539.

PMID:
19791986
12.

Visual traffic jam analysis based on trajectory data.

Wang Z, Lu M, Yuan X, Zhang J, van de Wetering H.

IEEE Trans Vis Comput Graph. 2013 Dec;19(12):2159-68. doi: 10.1109/TVCG.2013.228.

PMID:
24051782
13.

Wave propagation of the traffic flow dynamic model based on wavefront expansion.

Li L, Shi PF.

J Zhejiang Univ Sci. 2004 Nov;5(11):1398-404.

PMID:
15495333
14.

A hybrid model for traffic flow and crowd dynamics with random individual properties.

Schleper V.

Math Biosci Eng. 2015 Apr;12(2):393-413. doi: 10.3934/mbe.2015.12.393.

PMID:
25811442
15.

Crowding effects in vehicular traffic.

Combinido JS, Lim MT.

PLoS One. 2012;7(11):e48151. doi: 10.1371/journal.pone.0048151. Epub 2012 Nov 5.

16.

Multifractal chaotic attractors in a system of delay-differential equations modeling road traffic.

Safonov LA, Tomer E, Strygin VV, Ashkenazy Y, Havlin S.

Chaos. 2002 Dec;12(4):1006-1014.

PMID:
12779624
17.

A novel nonlinear car-following model.

Addison PS, Low DJ.

Chaos. 1998 Dec;8(4):791-799.

PMID:
12779785
18.

Macroscopic model of self-propelled bacteria swarming with regular reversals.

Gejji R, Lushnikov PM, Alber M.

Phys Rev E Stat Nonlin Soft Matter Phys. 2012 Feb;85(2 Pt 1):021903. Epub 2012 Feb 6.

PMID:
22463240
19.

Traffic jams: dynamics and control.

Orosz G, Wilson RE, Stépán G.

Philos Trans A Math Phys Eng Sci. 2010 Oct 13;368(1928):4455-79. doi: 10.1098/rsta.2010.0205.

20.

Density waves in traffic flow.

Nagatani T.

Phys Rev E Stat Phys Plasmas Fluids Relat Interdiscip Topics. 2000 Apr;61(4 Pt A):3564-70.

PMID:
11088133

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