基于动态故障树的转向系统可靠性评估

Sungil Byun, Inseok Yang, Moogeun Song, Dongik Lee
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引用次数: 4

摘要

本文提出了一种动态故障树分析(DFTA)方法来预测转向系统的可靠性。可靠性评估是一项重要的任务,通过识别系统的脆弱部分并对其进行有效的管理来防止系统出现任何潜在的故障。安全关键系统,如电动汽车,有许多部件,其故障可能导致灾难性事故。车辆的转向系统是要求高可靠性的最关键的子系统之一。本文提出了一种基于辛普森规则的DFTA方法来评估转向系统的可靠性。一组仿真结果表明,该方法克服了现有逼近方法精度低的问题,同时不需要马尔可夫链方法的过多计算时间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Reliability evaluation of steering system using dynamic fault tree
This paper addresses a dynamic fault tree analysis (DFTA) to predict the reliability of a steering system. Reliability evaluation is a vital task to prevent any potential failure in a system by identifying vulnerable parts of the system and managing them effectively. Safety-critical systems, such as electric vehicles, have many components whose failure may cause a catastrophic accident. The steering system in a vehicle is one of the most critical subsystems requiring a high level of reliability. In this paper, a DFTA method using the Simpson's rule is proposed to evaluate the reliability of a steering system. A set of simulation results shows that the proposed method can overcome the problem of low accuracy with the existing approximation method while requiring no excessive calculation time of the Markov chain method.
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