Physica2022,Vol.59614.DOI:10.1016/j.physa.2022.127162

Cellular automaton model with the multi-anticipative effect to reproduce the empirical findings of Kerner's three-phase traffic theory

Zhou, Shirui Ling, Shuai Zhu, Chenqiang Tian, Junfang
Physica2022,Vol.59614.DOI:10.1016/j.physa.2022.127162

Cellular automaton model with the multi-anticipative effect to reproduce the empirical findings of Kerner's three-phase traffic theory

Zhou, Shirui 1Ling, Shuai 1Zhu, Chenqiang 1Tian, Junfang1
扫码查看

作者信息

  • 1. Tianjin Univ
  • 折叠

Abstract

As the important spatiotemporal state of traffic flow discovered by Kerner's three-phase traffic theory, the synchronized traffic flow describes a new traffic phase in congested traffic. However, until now most models within the standard traffic theories cannot reproduce it. The average space gap model (ASGM) is a simple cellular automaton model aimed to reproduce various empirical findings discovered by Kerner's three-phase traffic theory by incorporating the influence of the multi-anticipative effect on vehicle's deceleration. However, this paper shows that the simulated synchronized flow by ASGM is not consistent with the reality. To this end, the Multi-Anticipative Model (MAM) based on ASGM is proposed, which describes the influence of the multi-anticipative effect on both the accelerations and the decelerations. Simulations indicate that the empirical consistent synchronized flow and related congested patterns can be well reproduced by MAM. Moreover, MAM can reproduce the speed drop in the car following vehicle platoons reported by the empirical observations. Generally, MAM indicates that the multi-anticipative effect can shed light on the understanding and capturing the complex characteristics of traffic flow especially reported by Kerner's three-phase traffic theory. (c) 2022 Elsevier B.V. All rights reserved.

Key words

Cellular automaton/Multi-anticipative effect/Kerner's three-phase traffic theory/Synchronized traffic flow/Speed drop/FUNDAMENTAL-DIAGRAM/PHASE-TRANSITIONS

引用本文复制引用

出版年

2022
Physica

Physica

ISSN:0378-4371
被引量5
参考文献量50
段落导航相关论文