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The multi-class schedule-based transit assignment model under network uncertainties

机译:网络不确定性下基于多类计划的公交分配模型

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摘要

Demand and supply uncertainties at schedule-based transit network levels strongly impact different passengers’ travel behavior. In this paper, a new multi-class user reliability-based dynamic transit assignment model is presented. Passengers differ in their heterogeneous risk-taking attitudes towards the random travel cost. The stochastic characteristics of the main travel cost components (in-vehicle travel time, waiting time, and early or late penalty) are demonstrated by specifying the demand and supply uncertainties and their interactions. Passenger route and departure time choice is determined by each passenger’s respective reliability requirements. Vehicle capacity constraint for random passenger demand is handled by an in-vehicle congestion parameter. The proposed model is formulated as a fixed-point problem, and solved by a heuristic MSA-type algorithm. The numerical result shows that the risk-taking attitude will impact greatly on passengers’ travel mode and departure time choices, as well as their money and time costs. This model is also capable of generating transit service attributes such as the stochastic vehicle dwelling time and the deviated timetable.
机译:基于时间表的公交网络层次的需求和供应不确定性会严重影响不同乘客的出行行为。本文提出了一种新的基于多类用户可靠性的动态公交分配模型。旅客对随机旅行成本的不同冒险态度不同。通过指定需求和供应的不确定性及其相互作用,可以证明主要旅行成本成分的随机特征(车载旅行时间,等待时间以及提早或滞后罚款)。乘客路线和出发时间的选择取决于每个乘客各自的可靠性要求。用于随机乘客需求的车辆容量约束由车内拥塞参数处理。将该模型公式化为定点问题,并通过启发式MSA型算法进行求解。数值结果表明,冒险态度将极大地影响乘客的出行方式和出发时间选择,以及他们的金钱和时间成本。该模型还能够生成运输服务属性,例如随机车辆的停留时间和偏离的时间表。

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