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dc.contributor.authorMezair, Tinhinane-
dc.contributor.otherTadjadit, Abdelmadjid, Directeur de thèse-
dc.contributor.otherDebbi, Latifa, Directeur de thèse-
dc.contributor.otherHayat, Amaury, Directeur de thèse-
dc.contributor.otherPiccoli, Benedetto, Directeur de thèse-
dc.date.accessioned2022-09-13T07:37:37Z-
dc.date.available2022-09-13T07:37:37Z-
dc.date.issued2022-
dc.identifier.otherEP00448-
dc.identifier.urihttp://repository.enp.edu.dz/jspui/handle/123456789/10526-
dc.descriptionMémoire de Projet de Fin d’Études : Génie Civil : Alger, École Nationale Polytechnique : 2022fr_FR
dc.description.abstractIn this work, we use the Bando-FTL microscopic traffic model with the Treiber et al. lane changing mechanism to describe the movements of vehicles in a multi-lane ring road, and the PΔP model to quantify vehicular fuel consumption. We are interested in contributing to giving a better understanding of multi-lane road traffic systems. In a first part of the work, we prove that multi-lane traffic systems are very sensitive to lane changing parameters; and that it is possible to dissipate stop-and-go waves, in multi-lane traffic flows of aggressive cars, by introducing a single autonomous vehicle following a prescribed acceleration law in high congestion, and obtain a reduction in vehicular energy consumption of up to 75%. In a second part, we show that, in multi-lane traffic flows of collaborative and aggressive cars, in contrast with single-lane systems, a proportion of collaborative cars as low as 22% can be effective to smooth stop-and-go waves. Finally, in a third part, we study a multi-lane traffic system where coexist trucks (long heavy weight vehicles) with aggressive cars, and we show that a proportion of 29% of trucks can be efficient to dissipate stop-and-go waves.fr_FR
dc.language.isoenfr_FR
dc.subjectAutonomous carsfr_FR
dc.subjectMixed-trafficfr_FR
dc.subjectBando-FTLfr_FR
dc.subjectTreiberfr_FR
dc.subjectPΔPfr_FR
dc.titleAutonomous vehicles and mixed traffic flows for the dissipation of stop-and-go waves in multi-lane ring roadsfr_FR
dc.typeThesisfr_FR
Collection(s) :Département Génie Civil

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