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Transit competitiveness in polycentric metropolitan regions

机译:多中心城市地区的公交竞争力

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This paper analyzes the potential to, and impacts of, increasing transit modal split in a polycentric metropolitan area -the Philadelphia, Pennsylvania region. Potential transit riders are preselected as those travelers whose trips begin and end in areas with transit-supportive land uses, defined as "activity centers," areas of high-density employment and trip attraction. A multimodal traffic assignment model is developed and solved to quantify the generalized cost of travel by transit services and private automobile under (user) equilibrium conditions. The model predicts transit modal split by identifying the origin-destination pairs for which transit offers lower generalized cost. For those origin-destination pairs for which transit does not offer the lowest generalized cost, I compute a transit competitiveness measure, the ratio of transit generalized cost to auto generalized cost. The model is first formulated and solved for existing transit service and regional pricing schemes. Next, various transit incentives (travel time or fare reductions, increased service) and auto disincentives (higher out of pocket expenses) are proposed and their impacts on individual travel choices and system performance are quantified. The results suggest that a coordinated policy of improved transit service and some auto disincentives is necessary to achieve greater modal split and improved system efficiency in the region. Further, the research finds that two levels of coordinated transit service, between and within activity centers, are necessary to realize the greatest improvements in system performance.
机译:本文分析了在多中心大都市区(宾夕法尼亚州费城地区)增加公交方式分裂的潜力及其影响。预先选择了潜在的过境旅行者,这些旅行者的旅行始于和结束于具有运输支持土地用途的区域,这些区域被定义为“活动中心”,高密度就业和旅行吸引力的区域。开发并解决了多模式交通分配模型,以量化(用户)平衡条件下公交服务和私家车的广义出行成本。该模型通过识别运输提供较低广义成本的起点-目的地对来预测运输方式拆分。对于那些运输不提供最低广义成本的原点-目的地对,我计算了运输竞争力度量,即运输广义成本与自动广义成本之比。首先为现有的公交服务和区域定价方案制定并求解该模型。接下来,提出了各种过境奖励措施(减少旅行时间或票价,增加服务)和自动诱因措施(自费较高),并量化了其对个人出行选择和系统性能的影响。结果表明,要在该地区实现更大的模式分割和提高系统效率,就必须采取协调一致的政策,以改善运输服务和一些自动激励措施。此外,研究发现,活动中心之间和内部的两个水平的协调运输服务对于实现系统性能的最大改善是必要的。

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