基于事件树分析法的铁路事故风险评估

Nur Izyan Mustafa Khalid, Nur Farah Najeeha Najdi, Nurul Faziera Khairul Adlee, M. Misiran, Hasimah Sapiri
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引用次数: 4

摘要

铁路安全是一个重要的问题,因为当铁路事故发生时,铁路区域内的乘客、员工、道路使用者和居民的安全都会受到影响。然而在马来西亚,铁路安全的风险管理仍然是新的,因此在文献中很少有研究。本研究以KTMB的第一手资料和第二手资料为基础,建立了KTMB铁路事故风险的描述性分析和事件树分析的测量模型。结果表明,集体风险为0.2406,其中0.217是由于人为错误而不遵循预定的标准操作程序造成的,只有0.0232是由于系统故障造成的。这些事故的决定因素包括粗心大意、导体的作用、机械故障、高速、人为疏忽和轨道的阻碍。铁路安全是一个重要的问题,因为当铁路事故发生时,铁路区域内的乘客、员工、道路使用者和居民的安全都会受到影响。然而在马来西亚,铁路安全的风险管理仍然是新的,因此在文献中很少有研究。本研究以KTMB的第一手资料和第二手资料为基础,建立了KTMB铁路事故风险的描述性分析和事件树分析的测量模型。结果表明,集体风险为0.2406,其中0.217是由于人为错误而不遵循预定的标准操作程序造成的,只有0.0232是由于系统故障造成的。这些事故的决定因素包括粗心大意、导体的作用、机械故障、高速、人为疏忽和轨道的阻碍。
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Assessing railway accident risk through event tree analysis
Railway safety is an important issue since the safety of passengers, employees, road users and residents in the area of railway can be affected when railway accidents happen. However in Malaysia, the risk management for railway safety is still new, thus few studies available in the literature. In this study, measurement models involving descriptive analysis and event tree analysis for Keretapi Tanah Melayu Berhad (KTMB)’s railway accident risk are developed by considering the primary and secondary data from KTMB. The finding shows collective risk of 0.2406, in which a strong 0.217 is influenced by human error of not following the predetermined standard operating procedures, and only 0.0232 of this risk is caused by the systematic failure. The determinant factors of such accidents include carelessness, conductor’s effect, mechanical failure, high speed, human negligence, and track’s obstruction.Railway safety is an important issue since the safety of passengers, employees, road users and residents in the area of railway can be affected when railway accidents happen. However in Malaysia, the risk management for railway safety is still new, thus few studies available in the literature. In this study, measurement models involving descriptive analysis and event tree analysis for Keretapi Tanah Melayu Berhad (KTMB)’s railway accident risk are developed by considering the primary and secondary data from KTMB. The finding shows collective risk of 0.2406, in which a strong 0.217 is influenced by human error of not following the predetermined standard operating procedures, and only 0.0232 of this risk is caused by the systematic failure. The determinant factors of such accidents include carelessness, conductor’s effect, mechanical failure, high speed, human negligence, and track’s obstruction.
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