Safety management for electromechanical systems of railway vehicles

Z. Vintr, M. Vintr
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引用次数: 1

Abstract

This paper deals with safety management for electromechanical systems intended for railway applications. The principles and procedures presented in the article are applied in the Lekov Company which is a prominent producer of electric switching and controlling components used in the construction of railway vehicles. Considering the problems of reliability and safety carefully, the Lekov Company puts into practice the integrated safety and reliability program in the process of development, design and production. This article presents a concise characterization of the implemented safety and reliability integrated program which ensures that in the process of development, design and production of new electromechanical equipment, the defined requirements concerning reliability, availability, maintainability and safety will be fulfilled. Due to the limited space for his article, the authors present that part of Lekov's integrated program that pertains primarily to an effective system safety assurance process. The main methods, which are used as parts of the program, are Preliminary Hazard Analysis, Failure Modes, Effects and Criticality Analysis, Fault Tree Analysis and Reliability Block Diagram Analysis. The methods are used in individual steps that logically connect methods each to other. The article describes the procedures of the program and brings a survey of applied methods with characterizations. Particular attention is devoted to problems that are associated with safety management. The implemented reliability and safety program, even if using relatively simple methods, systematically ensures the fulfillment of the customer's requirements for reliability and safety of the system. The logically linked steps taken before the design stage ensure that the engineering design will be carried out effectively, with an emphasis on fulfillment of the given requirements. The design reliability is then checked out by a reliability assessment that precedes the prototype production. This procedure minimizes the possibility of producing a prototype with a structural defect. Prototype reliability tests detect problems which can be corrected and this decreases the probability of occurrence for significant or critical problems in the systems produced in production.
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铁道车辆机电系统安全管理
本文讨论了铁路机电系统的安全管理问题。本文介绍的原理和程序应用于列科夫公司,该公司是铁路车辆结构中使用的电气开关和控制部件的著名生产商。列科夫公司仔细考虑了可靠性和安全性问题,在开发、设计和生产过程中实施了安全可靠性一体化方案。本文简要介绍了在新型机电设备的开发、设计和生产过程中所实施的安全与可靠性综合方案,该方案确保了在可靠性、可用性、可维护性和安全性方面的规定要求得到满足。由于空间有限,他的文章,作者提出,部分列科夫的综合方案,主要涉及到一个有效的系统安全保证过程。主要方法有初步危害分析、失效模式分析、影响与临界分析、故障树分析和可靠性方框图分析。这些方法在逻辑上将各个方法相互连接起来的各个步骤中使用。本文介绍了该程序的程序,并介绍了应用方法的概况和特征。特别关注与安全管理有关的问题。实施的可靠性和安全性方案,即使使用相对简单的方法,也能系统地保证满足客户对系统可靠性和安全性的要求。在设计阶段之前采取的逻辑关联的步骤确保工程设计将有效地进行,重点是满足给定的要求。然后在原型生产之前通过可靠性评估检查设计可靠性。这个程序最大限度地减少了生产具有结构缺陷的原型的可能性。原型可靠性测试可以检测出可以纠正的问题,从而降低生产系统中出现重大或关键问题的可能性。
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