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Multi-criteria analysis of optimal signal plans using microscopic traffic models

机译:使用微观交通模型对最佳信号计划进行多标准分析

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Increasing concerns on environment and natural resources, coupled with increasing demand for transport, put lots of pressure for improved efficiency and performance on transport systems worldwide. New technology nowadays enables fast innovation in transport, but it is the policy for deployment and operation with a systems perspective that often determines success. Smart traffic management has played important roles for continuous development of traffic systems especially in urban areas. There is, however, still lack of effort in current traffic management and planning practice prioritizing policy goals in environment and energy. This paper presents an application of a model-based framework to quantify environmental impacts and fuel efficiency of road traffic, and to evaluate optimal signal plans with respect not only to traffic mobility performance but also other important measures for sustainability. Microscopic traffic simulator is integrated with micro-scale emission model for estimation of emissions and fuel consumption at high resolution. A stochastic optimization engine is implemented to facilitate optimal signal planning for different policy goals, including delay, stop-and-goes, fuel economy etc. In order to enhance the validity of the modeling framework, both traffic and emission models are fine-tuned using data collected in a Chinese city. In addition, two microscopic traffic models are applied, and lead to consistent results for signal optimization. Two control schemes, fixed time and vehicle actuated, are optimized while multiple performance indexes are analyzed and compared for corresponding objectives. Solutions, representing compromise between different policies, are also obtained in the case study by optimizing an integrated performance index.
机译:对环境和自然资源的日益关注,再加上对运输的需求不断增加,为提高全球运输系统的效率和性能带来了巨大压力。如今,新技术可以实现运输领域的快速创新,但这是部署和操作的策略,而系统角度通常会决定成功。智能交通管理对于交通系统的持续发展发挥了重要作用,尤其是在城市地区。然而,在当前的交通管理和规划实践中仍然缺乏努力,优先考虑环境和能源方面的政策目标。本文介绍了基于模型的框架的应用,以量化对道路交通的环境影响和燃油效率,并评估最佳信号计划,这些计划不仅涉及交通运输性能,而且还涉及可持续性的其他重要措施。微观交通模拟器与微型排放模型集成在一起,可以高分辨率估算排放和燃料消耗。实施了随机优化引擎,以促进针对不同政策目标(包括延误,走走停停,燃油经济性等)的最佳信号规划。为了增强建模框架的有效性,可使用以下方法对交通和排放模型进行微调:在中国城市收集的数据。另外,应用了两个微观交通模型,并为信号优化带来了一致的结果。优化了固定时间和车辆启动两种控制方案,同时针对相应目标分析和比较了多个性能指标。在案例研究中,还可以通过优化综合绩效指标来获得代表不同策略之间折衷的解决方案。

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