控制(管理)
计算机科学
信号(编程语言)
过境(卫星)
总线优先权
公共交通
运输工程
快速公交
实时计算
控制工程
汽车工程
城市轨道交通
控制系统
控制信号
实时控制系统
工程类
计算机网络
模拟
作者
Zhentian Bao,Chuang-Wei Liu,Fangfang Zheng,Tang Youhua
标识
DOI:10.1080/21680566.2026.2625383
摘要
Urban traffic congestion remains a pressing challenge, requiring integrated signal control and lane management. This study proposes a strategy that combines a rule-based dynamic shared bus lane (DSBL) controller with modified NEMA signal control featuring transit signal priority. DSBL permits general vehicles to use the bus lane based on demand, while the signal controller adjusts phase timings to serve buses and maintain intersection efficiency. An enhanced cell transmission model captures intersection flow dynamics and supports coordinated operation. Simulations at a single intersection under eight saturation levels show that the proposed strategy reduces delay and congestion, with the largest gains under oversaturated conditions, compared with intermittent bus-priority lanes, DSBL with fixed-time signals, and dedicated bus lanes with fixed-time signals. Dynamic lane sharing consistently outperforms non-sharing schemes. Sensitivity tests further indicate that larger bus headways and longer approach links can reduce total passenger delay.
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