Design of Automated Bascule Bridge and Collision Avoidance with Water Traffic

IF 1.1 Q3 TRANSPORTATION SCIENCE & TECHNOLOGY Transport and Telecommunication Journal Pub Date : 2024-02-01 DOI:10.2478/ttj-2024-0006
Md. Mostafizur Rahman Komol, A. N. M. Mizanur Rahman, A. Podder, Md Sabid Hasan, Sayemul Islam
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引用次数: 0

Abstract

The development of movable bridges is a modern technological advancement that requires the integration of multi-disciplinary concepts such as control, automation, and design. In order to demonstrate how a collision avoidance system works, this research offers the design of an automated double-leaf bascule bridge with a pulley-rope moving mechanism and Pratt truss. The bridge is created where a settled railway or roadway intersection of a navigable stream cannot attain a steep profile. The design took into account the length, height, and width of the bridge as well as automatic ship identification and scaffold leaf movement activity for ship crossing. For the safe passage of cars on the bridge and for stopping vehicles during bridge movement, the system includes a collision avoidance control system and an automated road barrier system. After sensor adjustment, the model bridge’s performance under test produced results that were adequate, with a success rate of 100%.
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设计自动化斜拉桥并避免与水上交通发生碰撞
可移动桥梁的发展是现代技术的进步,需要将控制、自动化和设计等多学科概念整合在一起。为了展示防撞系统是如何工作的,本研究提供了一种带有滑绳移动机构和普拉特桁架的自动化双叶斜拉桥的设计。该桥是在通航河流的铁路或公路交叉口无法达到陡峭轮廓的情况下建造的。设计考虑了桥梁的长度、高度和宽度,以及船舶自动识别和棚叶移动活动,以便船舶通过。为了保证汽车在桥上的安全通行,以及在桥梁移动过程中拦截车辆,该系统包括一个防撞控制系统和一个自动路障系统。在对传感器进行调整后,模型桥在测试中的性能表现良好,成功率达到 100%。
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来源期刊
Transport and Telecommunication Journal
Transport and Telecommunication Journal TRANSPORTATION SCIENCE & TECHNOLOGY-
CiteScore
3.00
自引率
0.00%
发文量
21
审稿时长
35 weeks
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