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城市交叉口设计中的行人通行安全研究
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作者 孙泽刚 《智能建筑与工程机械》 2024年第6期100-102,共3页
城市交叉口是城市道路系统中的关键节点,行人通行安全在交叉口设计中占据重要位置。通过对不同行人群体特点及其通行需求的分析,深入探讨城市交叉口设计对行人通行安全的影响,并针对设计不足之处提出了一系列改进建议。通过增加人行空... 城市交叉口是城市道路系统中的关键节点,行人通行安全在交叉口设计中占据重要位置。通过对不同行人群体特点及其通行需求的分析,深入探讨城市交叉口设计对行人通行安全的影响,并针对设计不足之处提出了一系列改进建议。通过增加人行空间、优化交叉口信号系统、提高可访问性以及采用先进技术等手段,旨在提升城市交叉口设计的行人通行安全性,为城市交通规划与设计提供专业而深入的研究。 展开更多
关键词 城市交叉口 行人通行安全 设计影响 可访问性 交叉口信号系统
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Impacts of Coordinated Traffic Signal Control Strategies and Bus Priority
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《Journal of Civil Engineering and Architecture》 2012年第1期81-92,共12页
Delay in signalized intersections may constitute a significant part of bus journey times in urban environment. Providing priority for buses at traffic signals can be an effective measure to reduce this delay. Bus prio... Delay in signalized intersections may constitute a significant part of bus journey times in urban environment. Providing priority for buses at traffic signals can be an effective measure to reduce this delay. Bus priority in Swedish urban traffic signal systems are normally coordinated with fixed time plan selection. Within this framework local traffic actuated signal timing adjustments are applied based on detector inputs aimed to reduce the number of vehicles in the dilemma zone. Active bus priority is also achieved with the aim to display green signal at the arrival of the bus to the stop line. Due to lack of knowledge of traffic performance impacts of these techniques a major research study was undertaken funded by the Swedish Road Administration. The aim was to evaluate the following control strategies using Stockholm as case study: (1) Fixed time coordination (FTC); (2) Fixed time coordination with local signal timing adjustment (FTC-LTA); (3) FTC-LTA with active bus priority (PRIBUSS); (4) Self-optimizing control (SPOT) with active bus priority. The methodologies for the study included field data collection using mobile and stationary techniques, offiine signal timing calculations with TRANSYT, microscopic simulation modeling using the HUTSIM model. The study obtained the following results: (1) Local traffic adjustment with the manual FTC reduced total delay by 1%. (2) Signal timings determined using TRANSYT reduced the average intersection delay by 9% compared to manual signal settings. (3) Local traffic adjustment reduced total delay by a further 5%. (4) Bus travel time was reduced by 11% using PRIBUSS, and 28% using SPOT. (5) Travel time for all vehicles did not increase using PRIBUSS, and was reduced by 6.5% with SPOT. Results of comparing PRIBUSS and SPOT to FTC-LTA were shown to be statistically significant. 展开更多
关键词 Bus priority traffic signals PRIBUSS SPOT FTC-LTA.
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