Microscopic simulation analysis of Mainstream Traffic Flow Control with Variable Speed Limits

Eduardo Rauh Müller, R. C. Carlson, Werner Kraus, M. Papageorgiou
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引用次数: 7

Abstract

Mainstream Traffic Flow Control (MTFC) with Variable Speed Limits (VSL) is a freeway traffic control method which aims to maximize throughput by regulating the mainstream flow upstream from a bottleneck. Recent studies in a macroscopic simulator have shown optimal and feedback MTFC potential to improve traffic conditions. In this paper, local feedback MTFC is applied in microscopic simulation for an on-ramp merge bottleneck. Traffic behavior reveals important aspects that had not been previously captured in macroscopic simulation. Mainly, the more realistic VSL application at specific points instead of along an entire freeway section produces a slower traffic response to speed limit changes. In addition, the nonlinear speed limit-flow relation observed in the microscopic model is more pronounced than what was observed at the macroscopic level. After appropriate modifications in the control law significant improvements in traffic conditions were obtained.
变限速主流交通流控制的微观仿真分析
可变速度限制主流交通流控制(MTFC)是一种通过对瓶颈上游的主流流进行调节以达到最大吞吐量的高速公路交通控制方法。最近在宏观模拟器上的研究显示了优化和反馈MTFC改善交通状况的潜力。本文将局部反馈MTFC应用于入匝道融合瓶颈的微观仿真。交通行为揭示了以前宏观模拟中没有捕捉到的重要方面。主要是,更现实的VSL应用程序在特定点,而不是沿着整个高速公路路段产生较慢的交通响应速度限制的变化。此外,在微观模型中观察到的非线性速度极限-流量关系比在宏观水平上观察到的更为明显。在对控制律进行适当修改后,交通状况得到了显著改善。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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