论文标题

使用分层模糊控制对信号交叉的最佳控制

Optimal control of signalized intersection using hierarchical fuzzy-real control

论文作者

Shahgholian, Mohammadbagher, Gharavian, Davood

论文摘要

本文提出了一种基于使用模糊算法的交通流的精确建模的方法,以最佳控制信号交叉点。通过改善社会指标,例如安全,福利和经济,城间交通运输有所增加,交通拥堵也发展了。如今,交通拥堵的困境是浪费时间,资本和健康风险的原因。尽管新街道,高速公路和高速公路的建设可以改善这种情况,但是当空间不足和预算有限时,这是不切实际的。提议优化信号交叉点以最佳使用网络容量,作为解决在交叉点上出现的重要问题的有用解决方案。在本文中,为了评估提出的用于控制信号交叉点的算法,并鉴于交通控制系统中存在的常见传感器的真实电势,已经设计和实施了一种称为信号交叉的模拟模糊模糊控制(SIFRC)的合适的模拟介质。通过可能性,通过六种方法对伊斯法罕市的ABSHAR交叉路口进行了建模和逐步分析:固定时间,预时控制,分段预时,模糊,实时和模糊真实。结果表明,与其他方法相比,固定时间方法的性能更高,而固定时间方法的性能高达50%,高达10%。此外,在模糊实现方法中实现最佳响应的速度是实时方法的11倍,而与实时方法相比,该方法中交叉点开发的延迟时间并没有增加。

This paper presents a method based on precise modeling of traffic flow using a fuzzy-real algorithm for optimal control of a signalized intersection. By improving social indicators such as security, well-fare and economy, intercity transportation has increased and traffic congestion developed. Today, the plight of traffic congestion is the cause of waste of time, capital, and health risks. Although the construction of new streets, expressways, and highways can improve this situation, when inadequate space and limited budget is available, it is not practical. Optimization of signalized intersections for optimal use of the network capacity is proposed as a useful solution to resolve an important part of the problems developed at intersections. In this paper, with the aim of assessing the algorithms proposed for controlling signalized intersections and given the real potentials of common sensors present in traffic control systems, a suitable simulation medium called Signalized Intersection Fuzzy-Real Control (SIFRC) has been designed and implemented. Through the possibility made, the Abshar intersection in Isfahan city was modeled and phased through six methods: fixed time, pre-time control, segmental pre-time, fuzzy, real-time, and fuzzy-real. The results indicated better performance of the fuzzy-real method compared to the fixed time method up to 50%, and up to 10% compared to other methods. In addition, the speed of achieving the optimal response in the fuzzy-real method has been 11 times as large as that of the real-time method, while the delay time developed by the intersection in this method did not increase compared to the real-time method.

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