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Dilemma game structure hidden in traffic flow at a bottleneck due to a 2 into 1 lane junction
Authors:Makoto Nakata  Atsuo Yamauchi  Jun Tanimoto  Aya Hagishima
Affiliation:
  • Interdisciplinary Graduate School of Engineering Sciences, Kyushu University, Kasuga-koen, Kasuga-shi, Fukuoka 816-8580, Japan
  • Abstract:Following Yamauchi’s study [A. Yamauchi, J. Tanimoto, A. Hagishima, H. Sagara, Dilemma game structure observed in traffic flow at a 2-to-1 lane junction, Physical Review E 79 (2009) 036104], we find that several social dilemma structures are represented by n-person Prisoner’s Dilemma (n-PD) games in certain traffic flow phases at a bottleneck caused by a lane-closing section. In this study, the stochastic Nishinari-Fukui-Schadschneider (S-NFS) model was adopted as a cellular automaton traffic model. In the system, two classes of driver-agents coexist: C-Agents (cooperative strategy) always driving in the first lane, and D-Agents (defective strategy) trying to drive in a lower-density lane, whether the first or the second lane. In relatively high-density flow phases, such as the metastable phase and the high-density phase, we found n-PD games, where D-Agents’ interruption into the first lane from the second just before the lane-closing section creates a heavier traffic jam, which reduces social efficiency. This could be solved by decreasing the interruption probability, which can be realized by a provision where drivers in the first lane firmly refuse interruptions.
    Keywords:Cellular automaton   Traffic flow   Dilemma game     mmlsi32"   onclick="  submitCitation('/science?_ob=MathURL&  _method=retrieve&  _eid=1-s2.0-S0378437110006874&  _mathId=si32.gif&  _pii=S0378437110006874&  _issn=03784371&  _acct=C000069490&  _version=1&  _userid=6211566&  md5=d72b6372bd319ace970bd13ab4077b73')"   style="  cursor:pointer  "   alt="  Click to view the MathML source"   title="  Click to view the MathML source"  >  formulatext"   title="  click to view the MathML source"  >N-person Prisoner&rsquo  s Dilemma   Bottleneck at 2 into 1 lane-closing junction
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