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Vehicular emissions and fuel consumption at urban traffic signal controlled junctions.

机译:城市交通信号控制路口的车辆排放和燃料消耗。

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摘要

This research intends to develop a simulation model that predicts vehicular delay, emissions and fuel consumption of individual vehicles travelling in a selected urban signal controlled road network.; ON-ROAD emission and fuel consumption data are collected by instrumented test vehicles travelling along selected routes in the urban areas. Average and modal emission and fuel consumption factors are derived. Based on the collected emission and fuel consumption data, an ON-ROAD modal emission and fuel consumption model for vehicles travelling in the urban areas has also been developed. Piecewise interpolation and negative exponential functions are employed to model instantaneous emission and fuel consumption rates. In the mean time an urban driving cycle has been for the first time developed for Hong Kong in the present study based on on-the-road speed data.; To simulate the modal movements of vehicles at signal controlled junctions, a new approach adopting the neural network technique was employed. A discharge headway model (NNDHM) was developed. The NNDHM model estimates discharge headway of individual vehicle queued at signal controlled junctions. It is an ideal tool to investigate the effect of variables on saturation flows and capacities that would not be easily characterised by direct measurement.; Finally, a microscopic traffic simulation model, TREFSIM, was developed for the estimation of vehicle journey time, average speed, delay, fuel consumption and emissions in urban traffic signal controlled road network. It is a time-based microscopic traffic simulation model. The TREFSIM model incorporated the ON-ROAD emission and fuel consumption model as well as the NNDHM model and other algorithms governing vehicle movements. The microscopic structure of the model makes the simulated vehicle emissions and fuel consumption sensitive to changes in vehicle behaviours due to traffic signals.; The TREFSIM model was compared with SATURN and PARAMICS in a selected urban network. It produces comparative flow, delay, emissions and fuel consumption results.
机译:该研究旨在建立一个仿真模型,以预测在选定的城市信号控制道路网中行驶的单个车辆的车辆延迟,排放和燃料消耗。道路上的排放和燃料消耗数据是由在市区中沿选定路线行驶的仪表化测试车辆收集的。得出平均和模态排放及燃料消耗因子。基于收集的排放和燃料消耗数据,还开发了用于市区行驶的车辆的道路上模式排放和燃料消耗模型。采用分段插值和负指数函数对瞬时排放和燃料消耗率进行建模。同时,本研究基于公路速度数据首次为香港开发了城市驾驶周期。为了模拟车辆在信号控制路口的模态运动,采用了一种采用神经网络技术的新方法。开发了排料车距模型(NNDHM)。 NNDHM模型估算在信号控制路口排队的单个车辆的排放行程。这是研究变量对饱和流量和饱和度影响的理想工具,而直接测量难以轻松地表征这些变量。最后,建立了微观交通仿真模型TREFSIM,用于估算城市交通信号控制道路网络中的车辆行驶时间,平均速度,延迟,燃油消耗和排放。它是基于时间的微观交通仿真模型。 TREFSIM模型结合了ON-ROAD排放和燃料消耗模型以及NNDHM模型和其他控制车辆运动的算法。该模型的微观结构使模拟的车辆排放和燃料消耗对交通信号引起的车辆行为变化敏感。在选定的城市网络中,将TREFSIM模型与SATURN和PARAMICS进行了比较。它产生了比较的流量,延迟,排放和燃料消耗结果。

著录项

  • 作者

    Tong, Hing-yan.;

  • 作者单位

    Hong Kong Polytechnic (People's Republic of China).;

  • 授予单位 Hong Kong Polytechnic (People's Republic of China).;
  • 学科 Engineering Civil.; Environmental Sciences.; Engineering Automotive.
  • 学位 Ph.D.
  • 年度 2001
  • 页码 276 p.
  • 总页数 276
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;环境科学基础理论;自动化技术及设备;
  • 关键词

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