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A GA-based household scheduler

机译:基于GA的家庭调度程序

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One way of making activity-based travel analysis operational for transport planning is multi-agent micro-simulation. Modelling activity and trip generation based on individual and social characteristics are central steps in this method. The model presented here generates complete daily activity schedules based on the structure of a household and its members' activity calendars. The model assumes that the household is another basic decision-making unit for travel demand aside from individual mobility needs. Results of the model are schedules containing complete information about activity type and sequence, locations, and means of transportation, as well as activity start times and durations. The generated schedules are the outcome of a probabilistic optimisation using genetic algorithms. This iterative method improves solutions found in a random search according to the specification of a fitness criterion, which equals utility here. It contains behavioural assumptions about individuals as well as the household level. Individual utility is derived from the number of activities and their respective durations. It is reduced by costs of travelling and penalties for late, respectively early arrival. The household level is represented directly by the utility of joint activities, and indirectly by allocation of activities and means of transportation to household members. The paper presents initial tests with a three-person household, detailing resulting schedules, and discussing run-time experiences. A sensitivity analysis of the joint utility parameter impact is also included.
机译:使基于活动的旅行分析可用于运输计划的一种方法是多主体微仿真。根据个人和社会特征对活动和旅行产生进行建模是此方法的核心步骤。这里介绍的模型根据家庭的结构及其成员的活动日历生成完整的日常活动计划。该模型假设家庭是个人出行需求之外的另一个出行需求的基本决策单位。该模型的结果是时间表,其中包含有关活动类型和顺序,位置和运输方式以及活动开始时间和持续时间的完整信息。生成的时间表是使用遗传算法进行概率优化的结果。该迭代方法根据适应性标准的规范改进了在随机搜索中找到的解决方案,在这里等于实用性。它包含有关个人以及家庭水平的行为假设。个体效用是根据活动的数量及其持续时间得出的。差旅费和迟到或早到的罚款减少了费用。家庭水平直接由联合活动的效用表示,间接地由向家庭成员分配活动和运输手段来表示。本文介绍了一个三人家庭的初始测试,详细介绍了时间表,并讨论了运行时的经验。还包括联合效用参数影响的敏感性分析。

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