节点文献
An extended smart driver model considering electronic throttle angle changes with memory
【摘要】 Based on the fact that the electronic throttle angle effect performs well in the traditional car following model, this paper attempts to introduce the electronic throttle angle into the smart driver model(SDM) as an acceleration feedback control term, and establish an extended smart driver model considering electronic throttle angle changes with memory(ETSDM). In order to show the practicability of the extended model, the next generation simulation(NGSIM) data was used to calibrate and evaluate the extended model and the smart driver model. The calibration results show that, compared with SDM, the simulation value based on the ETSDM is better fitted with the measured data, that is, the extended model can describe the actual traffic situation more accurately. Then, the linear stability analysis of ETSDM was carried out theoretically, and the stability condition was derived. In addition, numerical simulations were explored to show the influence of the electronic throttle angle changes with memory and the driver sensitivity on the stability of traffic flow. The numerical results show that the feedback control term of electronic throttle angle changes with memory can enhance the stability of traffic flow,which shows the feasibility and superiority of the proposed model to a certain extent.
【Abstract】 Based on the fact that the electronic throttle angle effect performs well in the traditional car following model, this paper attempts to introduce the electronic throttle angle into the smart driver model(SDM) as an acceleration feedback control term, and establish an extended smart driver model considering electronic throttle angle changes with memory(ETSDM). In order to show the practicability of the extended model, the next generation simulation(NGSIM) data was used to calibrate and evaluate the extended model and the smart driver model. The calibration results show that, compared with SDM, the simulation value based on the ETSDM is better fitted with the measured data, that is, the extended model can describe the actual traffic situation more accurately. Then, the linear stability analysis of ETSDM was carried out theoretically, and the stability condition was derived. In addition, numerical simulations were explored to show the influence of the electronic throttle angle changes with memory and the driver sensitivity on the stability of traffic flow. The numerical results show that the feedback control term of electronic throttle angle changes with memory can enhance the stability of traffic flow,which shows the feasibility and superiority of the proposed model to a certain extent.
【Key words】 smart driver model(SDM); electronic throttle angle changes with memory(ETSDM); parameter calibration; stability analysis;
- 【文献出处】 Chinese Physics B ,中国物理B , 编辑部邮箱 ,2022年01期
- 【分类号】U463.6
- 【下载频次】12