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A risk-based modelling approach to maintenance optimization of railway rolling stock A case study of pantograph system

机译:一种基于风险的维护优化的风险建模方法,对电弓系统的案例研究

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Purpose - Railway transport maintenance plays an important role in delivering safe, reliable and competitive transport services. An appropriate maintenance strategy not only reduces the assets' lifecycle cost, but also will ensure high standards of safety and comfort for rail passengers and workers. In recent years, the majority of studies have been focused on the application of risk-based tools and techniques to maintenance decision making of railway infrastructure assets (such as tracks, bridges, etc.). The purpose of this paper is to present a risk-based modeling approach for the inspection and maintenance optimization of railway rolling stock components. Design/methodology/approach - All the "potential failure modes and root causes" related to rolling stock systems are identified from an extensive literature review followed by an expert's panel assessment. The failure causes are categorized into six groups of electrical faults, structural damages, functional failures, degradation, human errors and natural (external) hazards. Stochastic models are then proposed to estimate the likelihood (probability) of occurrence of a failure in the rolling stock system. The consequences of failures are also modeled by an "inflated cost function" that involves safety-related costs, corrective maintenance and renewal (M&R) costs, the penalty charges due to train delays or service interruptions as well as the costs associated with loss of reputation (or loss of fares) in the case of trip cancellation. Lastly, a time-varying risk-cost function is formulated to determine the optimal frequency of preventive inspection and maintenance actions for rolling stock components. Findings - For the purpose of clearly illustrating the proposed risk-based inspection and maintenance modeling methodology, a case study of the Class 380 train's pantograph system from a Scottish train operating company is provided The results indicate that the proposed model has a substantial potential to reduce the M&R costs while ensuring a higher level of safety and service quality compared to the currently used inspection methodologies. Practical implications - The railway rolling stocks should be regularly inspected and maintained so as to ensure network availability and reliability, passenger safety and comfort, and operations efficiency. Despite the best efforts of the maintenance staff, it is reported that a considerable amount of maintenance resources (e.g. budget, time, manpower) is wasted due to insufficiency or inefficiency of current periodic M&R interventions. The model presented in this paper helps the maintenance engineers to assess the current maintenance practices and propose or initiate improvement actions when needed. Originality/value - There are few studies investigating the application of risk-based tools and techniques to inspection and maintenance decision making of railway rolling stock components. This paper presents a modeling approach aimed at planning the preventive repair and maintenance interventions for rolling stock components based on risk measures. The author's model is also capable of incorporating real measurement information gathered at each inspection epoch to update future inspection plans.
机译:目的 - 铁路运输维护在提供安全,可靠和竞争力的运输服务方面发挥着重要作用。适当的维护策略不仅降低了资产的生命周期成本,而且还将确保铁路乘客和工人的高标准安全性和舒适。近年来,大多数研究已经专注于将基于风险的工具和技术应用于铁路基础设施资产的维护决策(如轨道,桥梁等)。本文的目的是展示一种基于风险的建模方法,用于铁路滚动储备组件的检测和维护优化。设计/方法/方法 - 与滚动储备系统相关的所有“潜在故障模式和根本原因”是从广泛的文献综述中识别,然后是专家的小组评估。故障原因分为六组电气故障,结构损坏,功能故障,降解,人体错误和自然(外部)危害。然后提出随机模型来估计滚动储存系统失败发生的可能性(概率)。失败的后果也是由“充气成本函数”建模的,涉及与安全相关的成本,纠正性维护和更新(M&R)成本,因列车延误或服务中断而导致的罚款以及与声誉失去相关的费用在旅行取消的情况下(或票价损失)。最后,配制了时变风险成本函数,以确定用于滚动卷材组件的预防性检查和维护动作的最佳频率。结果 - 为了清楚地说明所提出的基于风险的检查和维护建模方法,可以研究380级列车的Pintober系统来自苏格兰火车运营公司的结果表明,结果表明,所提出的模型具有巨大的减少潜力与目前使用过的检测方法相比,M&R成本在确保更高水平的安全性和服务质量。实际意义 - 铁路滚动股票应定期检查和维护,以确保网络可用性和可靠性,乘客安全和舒适度以及运营效率。尽管维护人员的最佳努力,但据报道,由于当前定期M&R干预的不足或低效率,浪费了相当数量的维护资源(例如预算,时间,人力)。本文提出的模型可帮助维护工程师评估当前的维护实践并在需要时提出或启动改进行动。原创性/价值 - 很少有研究调查基于风险的工具和技术在铁路滚动储备组件的检查和维护决策中的应用。本文提出了一种旨在规划基于风险措施的轧制股票成分的预防性修复和维护干预的建模方法。作者的模型也能够结合在每次检查时期收集的真实测量信息,以更新未来的检查计划。

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