Risk identification methodology regarding the safety and quality of railway services

IF 1.9 Q3 ENGINEERING, INDUSTRIAL Production Engineering Archives Pub Date : 2022-02-12 DOI:10.30657/pea.2022.28.03
E. Nedeliaková, Michal Petr Hranický, Michal Valla
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引用次数: 4

Abstract

Abstract The paper deals with the implementation of a modified FMEA methodology according to the EU Commission Regulation no. 402/13 on a common safety method for risk assessment and evaluation in the railway sector. The basic goal is to create a methodology for risk identification regarding the safety of services in railway transport concerning railway crossings. Reason for this research was the fact that the manager of the railway infrastructure in Slovakia has problems related to accidents at railway crossings including problems with the quality of services when trains are delayed. Based on previous research, this area has been defined as a priority for risk identification. Accidents at level crossings are often the result of complex interactions between several factors. The results of the authors’ long-term research bring direct impact on the safety and quality of rail transport services. The first effect of the research is a detailed investigation of the causes of accidents, on which the new methodology is based. This is important because understanding the causes of accidents is the first step in eliminating them. The proposed new framework of the methodology provides guidance to the railway infrastructure manager on how to identify, analyze, evaluate and eliminate the risks of their effects.
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关于铁路服务安全和质量的风险识别方法
摘要本文论述了根据欧盟委员会关于铁路部门风险评估和评估的通用安全方法的第402/13号法规,改进FMEA方法的实施。其基本目标是制定一种方法,用于识别与铁路道口有关的铁路运输服务安全方面的风险。进行这项研究的原因是,斯洛伐克铁路基础设施经理存在与铁路道口事故有关的问题,包括列车延误时的服务质量问题。根据先前的研究,该领域已被定义为风险识别的优先事项。平交道口事故往往是多种因素之间复杂相互作用的结果。作者的长期研究结果直接影响到铁路运输服务的安全和质量。这项研究的第一个效果是对事故原因进行了详细调查,这是新方法的基础。这一点很重要,因为了解事故原因是消除事故的第一步。所提出的新方法框架为铁路基础设施经理如何识别、分析、评估和消除其影响的风险提供了指导。
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来源期刊
Production Engineering Archives
Production Engineering Archives Engineering-Industrial and Manufacturing Engineering
CiteScore
6.10
自引率
13.00%
发文量
50
审稿时长
6 weeks
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