Current status and prospects of research on safety situation awareness of high speed railway operation environment

Tianyun Shi, Zhoulong Wang, Jia You, Pengyue Guo, Lili Jiang, Huijin Fu, Xu Gao
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Abstract

PurposeThe safety of high-speed rail operation environments is an important guarantee for the safe operation of high-speed rail. The operating environment of the high-speed rail is complex, and the main factors affecting the safety of high-speed rail operating environment include meteorological disasters, perimeter intrusion and external environmental hazards. The purpose of the paper is to elaborate on the current research status and team research progress on the perception of safety situation in high-speed rail operation environment and to propose directions for further research in the future.Design/methodology/approachIn terms of the mechanism and spatio-temporal evolution law of the main influencing factors on the safety of high-speed rail operation environments, the research status is elaborated, and the latest research progress and achievements of the team are introduced. This paper elaborates on the research status and introduces the latest research progress and achievements of the team in terms of meteorological, perimeter and external environmental situation perception methods for high-speed rail operation.FindingsBased on the technical route of “situational awareness evaluation warning active control,” a technical system for monitoring the safety of high-speed train operation environments has been formed. Relevant theoretical and technical research and application have been carried out around the impact of meteorological disasters, perimeter intrusion and the external environment on high-speed rail safety. These works strongly support the improvement of China’s railway environmental safety guarantee technology.Originality/valueWith the operation of CR450 high-speed trains with a speed of 400 km per hour and the application of high-speed train autonomous driving technology in the future, new and higher requirements have been put forward for the safety of high-speed rail operation environments. The following five aspects of work are urgently needed: (1) Research the single factor disaster mechanism of wind, rain, snow, lightning, etc. for high-speed railways with a speed of 400 kms per hour, and based on this, study the evolution characteristics of multiple safety factors and the correlation between the high-speed driving safety environment, revealing the coupling disaster mechanism of multiple influencing factors; (2) Research covers multi-source data fusion methods and associated features such as disaster monitoring data, meteorological information, route characteristics and terrain and landforms, studying the spatio-temporal evolution laws of meteorological disasters, perimeter intrusions and external environmental hazards; (3) In terms of meteorological disaster situation awareness, research high-precision prediction methods for meteorological information time series along high-speed rail lines and study the realization of small-scale real-time dynamic and accurate prediction of meteorological disasters along high-speed rail lines; (4) In terms of perimeter intrusion, research a multi-modal fusion perception method for typical scenarios of high-speed rail operation in all time, all weather and all coverage and combine artificial intelligence technology to achieve comprehensive and accurate perception of perimeter security risks along the high-speed rail line and (5) In terms of external environment, based on the existing general network framework for change detection, we will carry out research on change detection and algorithms in the surrounding environment of high-speed rail.
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高速铁路运行环境安全形势感知研究现状与展望
目的高铁运行环境安全是高铁安全运行的重要保障。高铁运营环境复杂,影响高铁运营环境安全的主要因素包括气象灾害、周边入侵和外部环境危害等。本文旨在阐述高铁运营环境安全形势感知的研究现状和团队研究进展,并提出未来进一步研究的方向。设计/方法/途径从高铁运营环境安全主要影响因素的机理和时空演变规律出发,阐述研究现状,介绍团队最新研究进展和成果。研究结果基于 "态势感知评估预警主动控制 "的技术路线,形成了高速列车运行环境安全监测技术体系。围绕气象灾害、周边入侵和外部环境对高铁安全的影响,开展了相关的理论和技术研究与应用。原创性/价值随着时速 400 公里 CR450 高速动车组的运行和未来高速列车自主驾驶技术的应用,对高铁运行环境安全提出了新的更高要求。急需开展以下五个方面的工作:(1)研究风、雨、雪、雷电等单因素灾害机理。(2) 研究灾害监测数据、气象信息、线路特征、地形地貌等多源数据融合方法及关联特征,研究气象灾害、周边入侵和外部环境危害的时空演变规律;(3)在气象灾害态势感知方面,研究高铁沿线气象信息时间序列的高精度预测方法,研究实现高铁沿线气象灾害的小尺度实时动态精准预测;(4)在周界入侵方面,研究高铁运行典型场景下全时段、全天候、全覆盖的多模态融合感知方法,结合人工智能技术,实现高铁沿线周界安全风险的全面准确感知;(5)在外部环境方面,基于现有变化检测通用网络框架,开展高铁周边环境变化检测及算法研究。
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