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Incorporating departure time choice into high-occupancy/toll (HOT) algorithm evaluation

机译:将出发时间选择纳入高占用率/通行费(HOT)算法评估中

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This paper presents an evaluation framework for high-occupancy/toll (HOT) lanes, extending previous frameworks by incorporating departure time choice alongside stochasticity in demand. Drivers are divided into two classes, strategic and captive drivers. Strategic drivers time their departures to minimize expected generalized cost and can choose either the free lanes or HOT lane. Captive drivers have random departure times, and must choose the free lanes. Generalized cost for strategic drivers takes the form of the well-known schedule delay penalty function combined with travel time. The traffic flow model involves two parallel bottlenecks, one for each lane group. Four toll algorithms are compared: a fixed toll which is constant in time and unresponsive; a dynamic, but unresponsive toll based on expected demand; a dynamic and responsive toll which adapts based on congestion in the HOT lane; and a "full-information" toll which is aware of all captive driver inflows.
机译:本文提出了一种高占用率/收费(HOT)车道的评估框架,通过结合出发时间选择和需求的随机性来扩展以前的框架。驱动因素分为战略驱动因素和专属驱动因素两类。战略驾驶员会按时发车,以最大程度地减少预期的总体成本,并可以选择免费车道或HOT车道。专属司机的发车时间是随机的,必须选择自由行车道。战略驾驶员的一般成本采用众所周知的计划延误惩罚功能与出行时间相结合的形式。交通流模型涉及两个平行的瓶颈,每个车道组一个。比较了四种通行费算法:固定的通行费,该通行费在时间上是恒定的,并且没有响应;基于预期需求的动态但无响应的通行费;根据HOT车道的拥堵情况做出动态响应的收费;以及“全部信息”通行费,该通行费了解所有圈养司机的流入。

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