Real time control of critical intersections based on queue dynamics

G. Stephanopoulos, P. Michalopoulos
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引用次数: 5

Abstract

Several control schemes have been proposed in the past for optimal control of congested intersections but they have not been applied in real life situations partly because of the complex instrumentation required for their application and partly because they do not combine all control objectives at such intersections. Open and closed loop control policies minimizing total intersection delays subject to queue size constraints have also been proposed by the authors. All control policies, however, have the disadvantage that they are based on simple traffic models describing the effective size of the queues rather than the queue lengths. In this paper a new model is presented describing the queue dynamics at signalized intersections as a function of the demands, the intersection characteristics and the control decisions. A control policy combining the results of this model and control principles previously developed by the authors is also proposed.
基于队列动力学的关键交叉口实时控制
过去已经提出了几种控制方案来优化拥挤交叉口的控制,但它们并没有在现实生活中得到应用,部分原因是它们的应用需要复杂的仪器仪表,部分原因是它们没有结合这些交叉口的所有控制目标。作者还提出了在队列大小约束下最小化交叉口总延迟的开环和闭环控制策略。然而,所有的控制策略都有一个缺点,即它们基于描述队列有效大小的简单流量模型,而不是队列长度。本文提出了一种新的信号交叉口排队动力学模型,描述了信号交叉口需求、交叉口特性和控制决策的函数关系。本文还提出了一种将该模型的结果与作者先前开发的控制原则相结合的控制策略。
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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