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Decision-Aiding Transit-Tracker Methodology for Bus Scheduling Using Real Time Information to Ameliorate Traffic Congestion in the Kathmandu Valley of Nepal

机译:运用实时信息缓解尼泊尔加德满都谷地交通拥堵的决策辅助公交追踪器方法

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The bustling urban environment of Kathmandu Valley is characterized by unprecedented traffic congestion. Due to its bowel-shaped geography, gusty winds rarely remove vehicular emissions from the urban atmosphere, making Kathmandu one of Asia’s most polluted cities, 100th city in global pollution index. Over 500,000 vehicles travel daily on over 1600 km of roads covering over 675 sq · km urban area. Thousands of low occupancy vehicles are added each year to the urban public transit system (UPTS). Kathmandu faces worse and unreliable traffic from the current UPTS mostly with low occupancy vehicles. Around 4.5 million urban denizens, both permanent and transient residents, suffer from unreliable UPTS. Traffic rules and daily transportation schedules are rarely followed, resulting in frequent traffic jams and accidents. Once experienced, visitors try avoiding the UPTS. Tourism, annually contributing almost 8 percent to Nepal’s total annual GDP, also suffers from poor UPTS. Planners, policy makers, and politicians (P-actors) are seeking ways to improve sustainable UPTS to ameliorate stresses to family life and working hours for the urban majority. Aiming to help P-actors, we propose a transit-tracker model that uses real time information (RTI) in mobile phones and web-embedded devices to inform travelers, drivers, government authorities, and sub-admins. We argue that unreliability in the UPTS motivates urban elites to add more low occupancy vehicles, which in turn reduces already shrunken urban spaces and contributes more per capita air pollution than multi-occupancy vehicles. Since mobile and smart phones are capable of processing RTI to generate meaningful information and inform various stakeholders in communicable languages, we argue that replacing low occupancy vehicles with multi-occupancy buses within a Bus Rapid Transit (BRT) system, on main roads with fixed schedules and strict traffic rules, would not only improve UPTS, but also reduce pollution in the Kathmandu Valley.
机译:加德满都谷地繁华的城市环境以前所未有的交通拥堵为特征。由于呈肠状的地理环境,阵风很少消除城市大气中的车辆排放物,使加德满都成为亚洲污染最严重的城市之一,在全球污染指数中排名第100。每天有超过500,000辆汽车在超过1600公里的道路上行驶,占地675平方公里。公里市区。每年,城市公共交通系统(UPTS)都会增加成千上万的低占用率车辆。加德满都目前的UPTS面临的交通状况更为恶劣和不可靠,主要是载客量较低。约有450万城市居民,无论是永久居民还是临时居民,都遭受不可靠的UPTS的困扰。很少遵守交通规则和日常运输时间表,从而导致频繁的交通拥堵和事故。一旦经验丰富,访客就尝试避免使用UPTS。旅游业每年为尼泊尔的年度GDP贡献近8%,也遭受着UPTS不良的困扰。计划者,政策制定者和政治人物(P角色)正在寻求改善可持续UPTS的方法,以减轻对城市大多数人的家庭生活和工作时间的压力。为了帮助P-actor,我们提出了一种运输追踪器模型,该模型使用手机和网络嵌入式设备中的实时信息(RTI)来告知旅行者,驾驶员,政府机构和下级主管。我们认为,UPTS的不可靠性促使城市精英增加了更多的低乘用车,这反过来减少了已经萎缩的城市空间,比多乘用车造成了更多的人均空气污染。由于移动电话和智能电话能够处理RTI来生成有意义的信息并以可通信的语言通知各种利益相关者,因此我们认为,在公交快速公交(BRT)系统中,在固定时间表的主要道路上,用多人乘坐的公交车代替低人乘坐的车辆严格的交通规则,不仅可以改善UPTS,还可以减少加德满都谷地的污染。

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