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Lessons Learned from Field Operational Test of Integrated Network Management in Amsterdam

机译:从阿姆斯特丹集成网络管理的现场操作测试中学到的经验教训

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摘要

The Amsterdam Practical Trial (APT) is a multiyear program initiated by the Dutch Ministry of Transport and the Environment and is carried out in close cooperation by Rijkswaterstaat, the City of Amsterdam, the Province of North Holland, and the Amsterdam Metropolitan Region. The APT aims to integrate innovative roadside and in-car developments networkwide. After the proof of concept was finished in 2009, two parallel tracks started in the Amsterdam region: the roadside track (aiming at an innovative, automated working system with ramp metering and traffic lights) and the in-car track (aiming at individualized travel and traffic information in the car for commuter traffic and for large-event traffic). This paper aims specifically at the innovative APT roadside system. Development of this system began in 2012, with the system becoming operational in April 2014. After all technical and functional tests were completed, the system parameters were tuned and finalized the implementation phase. Starting April 14, 11 weeks were taken to collect the data for the ex post assessment. In doing so, the authors have used an alternating assessment design, implemented by switching the system on and off every week so that a fair comparison could be made. From the collected data, it could be concluded that while the system caused additional delays on the urban network and ramps, the throughput on the freeway arterial was improved. Detailed analysis of the data showed the system performed as expected and which improvements can be made to further increase its effectiveness. These optimizations are discussed, as are the expected effects of implementing them in the system. How they are operationalized in Phase 2 of this innovative project will also be discussed.
机译:阿姆斯特丹实践试验(APT)是由荷兰运输和环境部发起的一项多年计划,由Rijkswaterstaat,阿姆斯特丹市,北荷兰省和阿姆斯特丹大都会地区密切合作进行。 APT旨在在网络范围内整合创新的路边和车内开发。在2009年完成概念验证后,阿姆斯特丹地区开始了两条平行的轨道:路边轨道(针对具有坡道计量和交通信号灯的创新型自动工作系统)和车内轨道(针对个性化旅行和汽车上的通勤信息,用于通勤和大型活动。本文专门针对创新的APT路边系统。该系统的开发于2012年开始,并于2014年4月开始运行。在完成所有技术和功能测试之后,调整系统参数并最终确定实施阶段。从4月14日开始,我们花了11周的时间收集数据用于事后评估。为此,作者使用了交替评估设计,通过每周打开和关闭系统来实施评估,以便进行公平的比较。从收集的数据可以得出的结论是,尽管该系统在城市网络和匝道上造成了额外的延迟,但高速公路干线的吞吐量却得到了改善。数据的详细分析显示,该系统按预期运行,可以进行改进以进一步提高其有效性。讨论了这些优化,以及在系统中实现它们的预期效果。他们还将讨论如何在此创新项目的第二阶段中操作它们。

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