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Modelling cyclist queue formation using a two-layer framework for operational cycling behaviour

机译:使用双层框架来建模骑自行车者队列形成,用于操作循环行为

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Operational cycling behaviour is greatly understudied, even lacking a definition of what this behavioural level actually entails in terms of decision making. In this paper, we define the cyclist operational level and argue that it consists of two intertwined processes, a mental and a physical process. The mental process refers to path choices made within a route and the physical process refers to the bicycle control dynamics through pedalling and steering. We propose a novel two-layer framework, where each layer captures the tasks of one of the processes within the operational level. Discrete choice theory is proposed to model each layer. The plausibility of the framework is demonstrated through an application focusing on the queue formation process upstream of a red traffic light, including selecting a queuing position and cycling towards it. Models are estimated for the two layers using cyclist trajectory data collected at a signalised intersection in Amsterdam, the Netherlands. The models reveal the attributes that influence the decisions made in each layer and are face validated using simulation. The proposed framework and the (behavioural) findings of its application are the main scientific contributions of this paper, which pave the way for future research.
机译:大大解读运营循环行为,甚至缺乏这种行为水平实际上在决策方面所需的定义。在本文中,我们定义了骑自行车的操作级别,并认为它由两个交织过程,心理和物理过程组成。心理过程是指在路线内进行的路径选择,物理过程通过踩踏和转向是指自行车控制动态。我们提出了一种新颖的双层框架,其中每层捕获操作级别内的一个过程的任务。提出离散选择理论来模拟每层。通过专注于红色交通灯的上游队列形成过程的应用程序来证明框架的合理性,包括选择排队位置并循环朝其循环。使用在荷兰阿姆斯特丹的信令交叉路口收集的骑自行车的轨迹数据估计模型。该模型揭示了影响每层中所做的决定的属性,并且使用模拟验证。拟议的框架和其应用的(行为)调查结果是本文的主要科学贡献,为未来的研究铺平了道路。

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