标题: 混合车流下之绿色适应性交通号志控制模式
Green Traffic-Responsive Signal Control Model under Mixed Traffic Conditions
作者: 邱裕钧
CHIOU YU-CHIUN
国立交通大学交通运输研究所
关键字: 低排放交控;混合车流;格位传递模式;交通感应式号志控制;Low-emissions signal control;Mixed traffic;Cell transmission model;Traffic-responsive signal control
公开日期: 2012
摘要: 传统号志控制模式强调路口车流延滞之最小化或者是干道续进车流速度之最大化。然而,为能达到永续目标,应改以能源消耗及污染排放减量作为号志控制模式之绩效评估指标。特别是接近环境敏感地区(如学校、医院及住宅区)的路口,应将污染浓度标准上限作为号志控制模式之限制条件之一。为能有效进行号志控制模式之最佳化过程,一个中观车流模式:格位传递模式(CTM ; Daganzo, 1994; 1995),能够有效及精确地模拟不同车流状态下之车流运作行为。惟CTM原系针对纯车流设计,并未考量混合车流行为。然在许多亚洲城市中,机车是一项非常普遍且常见的运具。但机车运行行为与汽车及公车明显不同,它不必遵循车道线。事实上,机车常与许多车辆同在一车道内,不符传统跟车理论,导致许多车流模拟模式无法模拟机车车流行为。
基此,本研究拟以三个研究年度进行研究。其中,第一个研究年期已获贵会补助(NSC 100-2221-E- 009-121),研究主题为:建立及验证混合车流格位传递模式,旨在考量不同交通组成(汽车及机车)及不同交通状态下,不同车种进入下一格位时之竞争行为,建立一个混合车流格位传递模式,并透过实地车流资料调查与比较,验证模式之准确性,其成果已于2011年接受发表于运输学刊(TSSCI)。同时也透过简单之污染排放与扩散模式,建构一混合车流污染排放与扩散模式,并发表于中华民国运输学会100年学术论文研讨会,该文也被推荐收录于运输学刊(TSSCI)。基此,本研究拟以此一研究成果为基础,以两个研究年期继续进行下列研究:
1.第一个研究年期:建立混合车流污染排放与扩散模式
本研究将以第一个研究年期所建立的混合车流模式为基础,进一步推估在不同交通组成及状态下之能源消耗与污染排放总量。进而,纳入污染扩散模式以推估路口不同距离下之污染浓度扩散情形。
2.第二个研究年期:建立交通感应式号志控制模式
本研究将进一步建立交通感应式号志控制模式,能同时最小化能源消耗及污染排放总量,并符合路侧环境敏感地区之污染浓度限制。
Traditional traffic signal control models aim to minimize traffic delay at intersections or maximize travel speed along a corridor. However, in order to achieve sustainability, the performance of traffic signal control models should be evaluated by their capacities in reducing energy consumption and emissions of traffic. Especially, at the intersections near the environmental sensitive areas, such as schools, hospitals, residential areas, a limitation of emission concentration should be considered while optimizing the traffic signal timing plan.
To efficiently facilitate the optimization process of traffic signal control models, a mesoscopic traffic simulation model, Cell Transmission Model (CTM), proposed by Daganzo (1994, 1995), has been proven that it can accurately replicate the traffic behaviors under various traffic conditions. The CTM is originally designed for pure traffic simulation. However, motorcycles are prevailing in many Asian cities. Unlike most cars and buses which will move within the lane, motorcycles in practice do not follow the lane disciplines. Motorcycles in effect move in a rather erratic manner without obeying the lane disciplines. Sometimes the motorcycles follow the lead vehicles; but more than often, they share the “same lane” with the moving cars or break into two moving cars in the same lane. Consequently, many traffic simulation models have limited capability in capturing the movement behaviors of motorcycles. Based on our previous project entitled as “Green traffic-responsive signal control model under mixed traffic conditions” (NSC 100-2221-E-009-121), in the first research year, this study will further extend the mixed traffic simulation to energy consumption and emissions under various traffic compositions and conditions (free-flow, synchronized and congested). In addition, the diffusion model of emitted pollutions from these moving vehicles will be also developed so as to estimate the emission concentration at an arbitrary distance from the road.
In the second year, this study will develop a traffic-responsive signal control model, which can adaptively optimize the signal control mechanism along a corridor to meet the limitation of emission concentration near road-side sensitive areas and to minimize energy consumption and emissions.
官方说明文件#: NSC101-2221-E009-116-MY2
URI: http://hdl.handle.net/11536/98853
https://www.grb.gov.tw/search/planDetail?id=2647011&docId=399512
显示于类别:Research Plans