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Cross-Comparison and Calibration of Two Microscopic Traffic Simulation Models for Complex Freeway Corridors with Dedicated Lanes

机译:两种微型交通仿真模型与专用车道复杂高速公路走廊的交叉比较与校准

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摘要

Realistic microscopic traffic simulation is essential for prospective evaluation of the potential impacts of new traffic control strategies. Freeway corridors with interacting bottlenecks and dedicated lanes generate complex traffic flow phenomena and congestion patterns, which are difficult to reproduce with existing microscopic simulation models. This paper discusses two alternative driving behavior models that are capable of modeling freeways with multiple bottlenecks and dedicated lanes over an extended period with varying demand levels. The models have been calibrated using archived data from a complicated 13-mile long section of the northbound SR99 freeway near Sacramento, California, for an 8-hour time period in which the traffic fluctuated from free-flow to congested conditions. The corridor includes multiple bottlenecks, multiple entry and exit ramps, and an HOV lane. Calibration results show extremely good agreement between field data and model predictions. The models have been cross-validated and produced similar macroscopic traffic performance. The main behavior that should be captured for successful modeling of such a complex corridor includes the anticipative and cooperative driver behavior near merges, lane preference in presence of dedicated lanes, and variations in desired headway along the corridor.
机译:现实的微观流量模拟对于对新交通管制战略潜在影响的前瞻性评估至关重要。具有交互瓶颈和专用车道的高速公路走廊产生复杂的交通流量现象和拥塞模式,这难以通过现有的显微镜模拟模型再现。本文讨论了两种替代驾驶行为模型,该行为模型能够在延长的时间内使用多个瓶颈和专用车道进行建模,具有不同的需求水平。这些模型已使用来自加利福尼亚州萨克拉门托附近的北行SR99高速公路的复杂13英里长段的存档数据进行了校准,该数据为8小时的时间段,其中交通从自由流动到拥挤的条件。走廊包括多个瓶颈,多个进入和退出坡道,以及HOV巷。校准结果显示现场数据和模型预测之间的非常良好的一致性。该模型已被交叉验证并产生了类似的宏观流量表现。应该捕获这种复杂走廊的成功建模的主要行为包括附近的预期和合作驾驶员行为,在存在专用车道的情况下,以及沿着走廊的所需钻孔的变化。

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