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Modelling daily activity program generation considering within-day and day-to-day dynamics in activity-travel behaviour

机译:考虑日常活动和日常行为的日常动态,为日常活动计划生成建模

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This paper presents a comprehensive econometric modelling framework for daily activity program generation. It is for day-specific activity program generations of a week-long time span. Activity types considered are 15 generic categories of non-skeletal and flexible activities. Under the daily time budget and non-negativity of participation rate constraints, the models predict optimal sets of frequencies of the activities under consideration (given the average duration of each activity type). The daily time budget considers at-home basic needs and night sleep activities together as a composite activity. The concept of composite activity ensures the dynamics and continuity of time allocation and activity/ travel behaviour by encapsulating altogether the activity types that are not of our direct interest in travel demand modelling. Workers' total working hours (skeletal activity and not a part of the non-skeletal activity time budget) are considered as a variable in the models to accommodate the scheduling effects inside the generation model of non-skeletal activities. Incorporation of previous day's total executed activities as variables introduces day-to-day dynamics into the activity program generation models. The possibility of zero frequency of any specific activity under consideration is ensured by the Kuhn-Tucker optimality conditions used for formulating the model structure. Models use the concept of random utility maximization approach to derive activity program set. Estimations of the empirical models are done using the 2002-2003 CHASE survey data set collected in Toronto.
机译:本文提出了用于日常活动计划生成的全面的计量经济学建模框架。它是为期一周的一天的特定活动计划。考虑的活动类型是非骨骼活动和灵活活动的15个通用类别。在每日时间预算和参与率的非负性约束下,这些模型可以预测所考虑活动的最佳频率集(给定每种活动类型的平均持续时间)。每日时间预算将家庭的基本需求和夜间睡眠活动综合考虑。复合活动的概念通过将所有与旅行需求建模无关的活动类型封装在一起,从而确保了时间分配和活动/旅行行为的动态性和连续性。在模型中,将工人的总工作时间(骨骼活动而不是非骨骼活动时间预算的一部分)视为变量,以适应​​非骨骼活动生成模型内部的调度效果。将前一天的总执行活动作为变量合并,将日常动态引入活动程序生成模型中。用于制定模型结构的Kuhn-Tucker最优性条件确保了所考虑的任何比活为零频率的可能性。模型使用随机效用最大化方法的概念来导出活动程序集。使用在多伦多收集的2002-2003 CHASE调查数据集对经验模型进行估算。

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