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Evaluating conditions and impact of intermodal traffic management involving airports and railways

机译:评估涉及机场和铁路的多式联运管理的条件和影响

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摘要

Developing a transport system meeting the requirement of seamless door-to-door travel as envisioned by the report Flightpath 2050 necessitates a conjunction of different modes in the form of physical connections, encompassing management structures, and appropriate business models. We employ our simulation environment comprising of microscopic simulation and associated management tools to evaluate the possibility of not only exchanging information, but also adjusting operational parameters on the basis of the overall situation. The questions are what information exchange is needed, how large is the operational impact, and how can the anticipated success of an overall traffic management be assessed. Reliable data are crucial for management and evaluation. We show that on the one hand, management capabilities can be enhanced by determining the overall state of an airport and on the other hand by considering the so-called passenger trajectory. The state can be retrieved from Key Performance Indicators and Key Control Parameters which represent adjustable parameters. The passenger trajectory consists of pairs of points in space and time, where the passenger passes a certain milestone of the journey. This data can be used to compute the remaining time to the airport or even to a specific gate determining whether a passenger can be at the gate in time. If a critical mass is reached, intermodal operations can be adjusted. Our management system based on the microscopic simulation includes a connection to railway and aircraft movement management together with a forecast to estimate the propagation of the state of the airport. The evaluation capability of our system is demonstrated by a scenario consisting of a delay of a train leading to passengers not being able to reach their flight. Based on the data, the system - including microscopic simulation and management structure - provides the sensitivity of Key Performance Indicators such as boarding score on the change of delay profiles. This provides a measure for the feasibility of an action based on its extent focusing on cross-modal operation changes.
机译:根据《 Flightpath 2050》报告的设想,要开发出满足门到门无缝旅行需求的运输系统,就必须以物理连接的形式(包括管理结构和适当的业务模型)结合不同的模式。我们采用包括微观模拟和相关管理工具的模拟环境,不仅评估交换信息的可能性,还根据整体情况评估操作参数。问题是需要进行何种信息交换,对运营的影响有多大,以及如何评估总体交通管理的预期成功。可靠的数据对于管理和评估至关重要。我们表明,一方面,可以通过确定机场的总体状态来增强管理能力,另一方面,可以通过考虑所谓的旅客轨迹来提高管理能力。可以从代表可调整参数的关键绩效指标和关键控制参数中检索状态。旅客轨迹由时空对点组成,旅客通过了旅程中的某个里程碑。该数据可用于计算到机场甚至到特定登机口的剩余时间,从而确定乘客是否可以及时到达登机口。如果达到临界质量,则可以调整联运方式。我们基于微观模拟的管理系统包括与铁路和飞机运动管理的连接以及对机场状态传播的预测。我们的系统的评估能力通过一个场景来证明,该场景包括火车延误导致乘客无法到达其航班。基于数据,该系统(包括微观仿真和管理结构)可提供关键绩效指标(如登机分数)对延迟时间变化的敏感性。这基于针对跨模式操作更改的程度为操作的可行性提供了一种度量。

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