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Evolutionary Analysis on the Dynamical Systems of Travel Behavioral Decision-Making

机译:出行行为决策动力学系统的进化分析

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The road traffic flow evolutionary patterns of metropolitan areas evolve slowly through a complex multi-dimensional travel decision-making behavior (including travel mode, departure time and route choice joint decision-making). How to forecast the long run evolutionary trend of traffic flow on the entire network? Does the traffic evolution track converge to equilibrium? If it can, whatȁ9;s the condition should be satisfied? And whatȁ9;s the relationship between trip costs and traffic flow evolutionary patterns? In order to answer these related questions, this paper aims at the general travel behavioral decision-making process, a novel dynamical systems formulation of the traffic assignment problem using evolutionary game theory is proposed. The assumptions on driversȁ9; behavior in multi-dimensional travel choice are supposed to be fairly general and reasonable. And the stable properties of this dynamical system on its equilibrium points are investigated using Lyapunov method in a general network. It shows that the evolutionary dynamical system exist only one solution on the condition that the traveler population satisfies some hypotheses which individualȁ9;s trip payoff satisfy some constraint conditions. These means that there maybe exist inherent motive power which drive the traffic flow evolve to some stable patterns from long run view point. It can improve our understandings to urban traffic flow evolution process and provide significant reference for relevant management section.
机译:大城市地区的道路交通流演化模式通过复杂的多维出行决策行为(包括出行方式,出发时间和路线选择联合决策)缓慢发展。如何预测整个网络流量的长期演进趋势?交通演变轨迹会收敛到平衡状态吗?如果可以的话,应该满足9的条件吗? 9出行成本与交通流演化模式之间的关系是什么?为了回答这些相关问题,本文针对一般出行行为决策过程,提出了一种基于进化博弈论的交通分配问题动力学系统新表述。关于驱动程序的假设ȁ9;多维旅行选择中的行为被认为是相当普遍和合理的。并在通用网络中使用Lyapunov方法研究了该动力学系统在其平衡点上的稳定性质。结果表明,进化动力系统仅在旅行者人口满足某些假设的情况下才存在,其中个人ȁ9的出行支付满足某些约束条件。这些意味着可能存在内在的动力,从长远的角度来看,这些内在的动力会驱使交通流量演变成一些稳定的模式。它可以增进我们对城市交通流演变过程的理解,并为相关管理部分提供重要参考。

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