运输自动化水平和设计标准

V. V. Kosmin
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引用次数: 0

摘要

现有的运输路线(铁路和公路)分类方案是根据交通负荷的强度——车辆流量及其移动速度——来划分的。值得注意的是,在同一运输方式的全球一级,没有统一的运输路线分类。有国家、区域和基于网络的路径分类系统。随着数字化交通管理系统在交通运输领域的发展,基于车辆自动化程度的交通运输线路分类已经开始出现。审议了《俄罗斯联邦运输战略》中对主要运输方式- -陆运(铁路、公路)、水运(海运和内河运输)- -采用的分类。考虑到俄罗斯联邦的铁路运输,俄罗斯联邦临时国家标准中采用的一套基本概念规定了自动和远程模式下铁路车辆控制系统的自动化水平,分别预先确定了对铁路基础设施-结构和装置的要求。在国际道路大会协会提出的智能道路分类系统中也发现了类似的情况。关于修改通信线路建设(改造)设计规范文件,使其包含计算的自动化水平的必要性的结论。
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Levels of automation and design standards in transport
The existing scheme of classification of transport routes (railways and roads) depending on the intensity of the traffic load — flows of vehicles and speeds of their movement — is shown. It is noted that there are no universal classifications of transport routes at the global level within the same transport mode. There are national, regional and network-based pathway classification systems. Due to the development of digital traffic management systems in transport, classifications of lines of transport depending on the level of automation of the rolling stock have started to appear. The classifications adopted in the Transport Strategy of the Russian Federation for the main modes of transport — land (railways, roads), water (maritime and river transport) — considered. Bearing in mind the railway transport of the Russian Federation, the set of basic concepts adopted in the Provisional National Standard of the Russian Federation given the levels of automation in the control system of railway rolling stock in automatic and remote modes, predetermining the requirements for railway infrastructure — structures and devices, respectively. A similar situation found in the classification system for smart roads proposed by the International Road Congress Association. A conclusion on the need to revise the normative documentation for the design of construction (reconstruction) of communication lines to include a calculated level of automation formulated. 
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