ANALYSIS OF PUBLIC TRANSPORT DEVELOPMENT IN METROPOLITAN CITY BASED ON ORIGIN-DESTINATION (CASE STUDY: METRO CAPSUL BANDUNG)

Ade Triyadani, Idwan Santoso, S. S. Wibowo
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Abstract

Development of new mode of metro kapsul as mass transportation mode in Bandung with corridor plan from Station Hall to Tegallega and return to Station Hall with plan of 19 stop station which can give contribution to congestion problem and lack of public transportation service in Bandung city. This study aims to analyze the potential of demand with the data of origin destination of the respondent in the corridor plan of the metro capsule in order to give a description of the movement in the origin-destination matrix, in analysis for potential demand used the modal movement assumption of private vehicles, public transport and pedestrian, The location of priority shelter at the beginning of development by using multicriteria analysis while for operational analysis is calculated some variables of capsule metro operating system (headways, frequencies, etc). The result of origin-destination matrix analysis is getting potential demand of metro capsule during weekdays on-peak of 3529 pass/hour, off-peak of 2116 pass/hour. The result of location priority stop location will get 6 (six) stop location recommended in “Stasiun Bandung, Pasar Baru, Pasar Anyar, Taman Tegallega, ITC Kebon Kelapa and Alun-Alun Bandung”. From the operational results of metro capsule, obtained frequence of 20 Unit/jam, headways 3 minutes, the number of vehicles required 8 vehicles, on weekdays and weekends when on-peak and off-peak.
基于始发目的地的大都市公共交通发展分析(以万隆地铁胶囊为例)
在万隆市开发新的地铁kapsul作为大众交通方式,从车站大厅到Tegallega的走廊规划,并以19个站点的规划返回车站大厅,这有助于解决万隆市的拥堵问题和缺乏公共交通服务。本研究旨在利用地铁胶囊走廊规划中被调查者的始发目的地数据分析潜在需求,以便在始发目的地矩阵中描述运动,在潜在需求分析中使用私家车、公共交通和行人的模态运动假设。利用多准则分析方法确定了开发初期的优先避难点位置,同时计算了胶囊地铁运行系统的一些变量(行距、频率等)进行运营分析。通过始发-终点矩阵分析,得出工作日地铁客舱潜在需求高峰时段3529次/小时,非高峰时段2116次/小时。位置优先停车位置的结果将获得“Stasiun万隆,Pasar Baru, Pasar Anyar, Taman Tegallega, ITC Kebon Kelapa和Alun-Alun万隆”中推荐的6(6)个停车位置。从地铁胶囊的运行结果中,得到了地铁胶囊的运行频率为20辆/塞车,行车时间为3分钟,所需车辆数量为8辆,在工作日和周末的高峰和非高峰时运行。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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