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Investigating and Calibrating the Dynamics of Vehicles in Traffic Micro-simulations Models

机译:在交通微观模拟模型中调查和校准车辆动力学

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The accuracy of the micro-simulation model?s generated vehicle activity data used in the emissions modelling depends on how the dynamic behaviours of vehicles are being represented in the model. The dynamic behaviour of every single vehicle is constantly modelled during the simulation phase in accordance with different vehicle internal behaviour models. It is therefore imperative that the model reproduces the same variability of these behaviours in the real-world. This research paper investigated two main approaches in studying how car dynamics are represented in AIMSUN traffic micro-simulation model. The first approach was to use field trajectories data in the calibration of car dynamics parameters of the car-following internal behavioural model in AIMSUN, the second approach was to compare the simulated vehicles activity models? outputs with field vehicles activity data obtained from an Instrumented Vehicle (IV) driving along the study route. The field-obtained vehicle trajectories contained second-by-second speeds and acceleration data, which have been utilised in the evaluation of the AIMSUN model performance at both macro and micro levels. The findings showed that the calibration of vehicle dynamics in car-following models has reduced the values of accelerations and decelerations in the simulations. However, this did not influence the vehicle trajectories behaviour that continued to show sharp accelerations and decelerations, which are not representative of the real-world behaviours. The research showed that the use of IV real-world data to evaluate the car-following internal behaviour model provided an effective and computationally efficient validation methodology, which offered a further level of accuracy to the available standard validation procedures.
机译:在排放模型中使用微仿真模型生成的车辆活动数据的准确性取决于在模型中如何表示车辆的动态行为。在仿真阶段,将根据不同的车辆内部行为模型对每个车辆的动态行为进行持续建模。因此,当务之急是该模型在现实世界中再现这些行为的相同可变性。本文研究了两种主要方法来研究如何在AIMSUN交通微仿真模型中表示汽车动力学。第一种方法是在AIMSUN的跟车内部行为模型的汽车动力学参数的校准中使用场轨迹数据,第二种方法是比较模拟的车辆活动模型?输出与沿研究路线行驶的有轨车辆(IV)获得的野外车辆活动数据。现场获得的车辆轨迹包含每秒的速度和加速度数据,这些数据已用于宏观和微观层面的AIMSUN模型性能评估。研究结果表明,在跟车模型中对车辆动力学进行校准已降低了仿真中的加速度和减速度值。但是,这并没有影响继续表现出急剧加速和减速的车辆轨迹行为,而这并不能代表现实世界的行为。研究表明,使用IV真实世界数据评估汽车内部行为模型提供了一种有效且计算效率高的验证方法,这为可用的标准验证程序提供了更高的准确性。

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