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Requirements and Procedures for Employing Simulation in ITS Applications

机译:在其应用中使用模拟的要求和程序

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The need to simulate a number of advanced ITS concepts prior to deployment necessitated development of high performance microscopic simulators for heuristic dynamic traffic assignment, freeway corridor diversion, driver information systems including variable message signs and vehicle guidance systems, real-time adaptive traffic control and other traffic management concepts. In spite of recent progress in developing sophisticated simulators for ITS applications their employment in real life projects requires substantial data collection, testing, validation and calibration. The latter is often ignored in practice where for convenience simulators are often used without sufficient validation and calibration, resulting in unreliable and/or inaccurate results. The objective of this paper is to demonstrate the issues and lessons learned in the employment of a sophisticated simulator for evaluating the effectiveness of adaptive ramp control in the Twin cities of Minneapolis and St. Paul, which is one of the earliest and most extensive worldwide (210 miles of freeway, 430 ramp meters).
机译:在部署之前,需要模拟许多先进的概念,需要开发高性能显微镜模拟器的启发式动态交通分配,高速公路走廊转移,驱动器信息系统,包括可变消息标志和车辆引导系统,实时自适应交通管制等交通管理概念。尽管近期开发复杂模拟器的进展,但其在现实生活中的就业项目需要大量数据收集,测试,验证和校准。后者通常在实践中被忽略,即在没有充分的验证和校准的情况下通常使用方便模拟器,从而导致不可靠和/或不准确的结果。本文的目的是展示在雇用复杂模拟器的情况下了解的问题和经验教训,以评估明尼阿波利斯和圣保罗的双城的适应性坡道控制的有效性,这是最早,最广泛的全球范围内( 210英里的高速公路,430米坡度米。

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