首页> 外文会议>International workshop on GIS for transportation >GIS IN ROAD TRAFFIC CONGESTION MANAGEMENT IN METROPOLITAN LAGOS,NIGERIA
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GIS IN ROAD TRAFFIC CONGESTION MANAGEMENT IN METROPOLITAN LAGOS,NIGERIA

机译:GIS在尼日利亚大都会拉各斯的道路交通拥堵管理中

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Road traffic congestion is a significant attendant effect of urbanization; hence road traffic congestion is synonymous with cities of the world. The consequent implications of congestion on urban dwellers therefore, are the unpredictability of travel time, delays,road crashes; and pollution as a result of 'stop and go' traffic scenario. For instance, in Metropolitan Lagos road traffic congestion on the major corridors aggravates, over time and space, as the city sprawl beyond its bound in the last two decades. Research findings on traffic congestion causal factors and its implications on Metropolitan Lagos identified human and engineering factors, land use abuse, urban sprawl as the primary factors responsible for the phenomenon. Meanwhile, erratic fare structure, air and noise pollution,excessive energy consumption, road crashes are identified as the major negative impacts of congestion on the city and the city dwellers. However, the aim of this paper is to investigate the spatial pattern of road traffic bottlenecks, which are conspicuously pronounced on Metropolitan Lagos roads at peak periods. This is with a view to determining the extent of the contribution of traffic bottlenecks,on selected Lagos roads, to travel delays; commuters travel time elongations in Metropolitan Lagos and the challenge of unpredictability of travel time across the city. The traffic bottlenecks spatial pattern data was collected using Global Positioning System (GPS) to determine the coordinates of the identified bottleneck points on the selected corridors. The data therefore was graphically presented using Arc View GIS. Again, data on commuters travel time at peak period were collected through administration of questionnaire on selected numbers of commuters and through researcher several travels on the selected corridors over a period of time. The findings revealed a clustered pattern of traffic congestion bottlenecks, which aided traffic jam and consequent delays. Also, the clustered characteristic of the bottnecks revealed a scenario of an average of about 500 metres interval between bottleneck points, which often aided the 'stop and go'scenario on Lagos roads. This paper, citing examples from developed and developing countries, therefore recommended complementing the prevailing manual traffic management systems in Lagos with the deployment of combination of Advance Traffic Information System (ATIS), automated GIS map and other related Intelligent Transportation Systems (ITS) infrastructure, for a real time traffic information and incidents management on Metropolitan Lagos roads.
机译:道路交通拥堵是城市化的重要助理;因此,道路交通拥堵是世界城市的代名词。因此,随着城市居民拥堵的影响,是旅行时间,延误,道路崩溃的不可预测性;由于“停止和走”交通方案而污染。例如,在大都市拉各斯路交通拥堵,主要走廊加剧,随着时间和空间,随着城市在过去二十年的界定之外,城市蔓延。关于交通拥堵因果区的研究结果及其对大都市拉各斯的影响,确定了人类和工程因素,土地利用滥用,城市蔓延作为负责该现象的主要因素。同时,不稳定的票价结构,空气和噪音污染,过度的能源消耗,路崩溃被确定为拥堵对城市和城市居民的主要负面影响。然而,本文的目的是调查道路交通瓶颈的空间模式,在高峰期的大都会拉各斯路上显着发音。这是为了确定交通瓶颈,在选定的拉各斯道路上的贡献程度,以旅行延误;通勤者在大都市拉各斯旅行时间伸长,以及在全市旅行时间不可预测的挑战。使用全局定位系统(GPS)收集流量瓶颈空间模式数据,以确定所选走廊上所识别的瓶颈点的坐标。因此,数据使用弧视图GIS以图形呈现。同样,通过向选定数量的通勤者的问卷和通过研究人员在一段时间内通过研究人员进行调查问卷来收集关于峰值期的通勤时间旅行时间。调查结果揭示了交通拥堵瓶颈的集群模式,辅助交通堵塞和随之而来的延误。此外,Bottneck的聚集特性揭示了平均的场景,平均在瓶颈点之间的间隔约为500米,这通常辅助拉各斯道路上的“停止和去的驾驶员”。本文引用了发达国家和发展中国家的例子,因此建议在拉各斯的主要手动交通管理系统在部署前往交通信息系统(ATIS),自动化GIS地图和其他相关智能运输系统(ITS)基础设施的组合,关于大都会拉各斯道路的实时交通信息和事件管理。

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