ISO 26262 ASIL-Oriented Hardware Design Framework for Safety-Critical Automotive Systems

Kuen-Long Lu, Yung-Yuan Chen
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引用次数: 2

Abstract

In this paper, we base on the fault tree analysis (FTA) to propose an Automotive Safety Integrity Level (ASIL)-oriented hardware design framework for safety-critical automotive systems, where ASIL plays a key component in the ISO 26262 safety standard to measure risk of a specific system component. There are two contributions in this framework: FTA-based weak-point analysis and ASIL-oriented fault-tolerant design methodologies. The former can rapidly identify the weak-points for safety through the fault tree analysis, and the latter can effectively introduce the safety mechanisms in the hardware design to fulfill the requirements of target ASIL. We use the autonomous emergency braking (AEB) system to demonstrate the effectiveness of the proposed design framework.
面向asil的安全关键汽车系统硬件设计框架
在本文中,我们基于故障树分析(FTA)提出了面向汽车安全完整性等级(ASIL)的安全关键型汽车系统硬件设计框架,其中ASIL在ISO 26262安全标准中起关键作用,用于测量特定系统组件的风险。在这个框架中有两个贡献:基于fta的弱点分析和面向asil的容错设计方法。前者可以通过故障树分析快速识别出安全弱点,后者可以在硬件设计中有效地引入安全机制,以满足目标ASIL的要求。我们使用自动紧急制动(AEB)系统来证明所提出的设计框架的有效性。
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