Functional Safety for Automatic Emergency Braking based on ISO 26262

Ananda Adhikari, Aspak Saban, Shirish Bohora, Viranchi Shastri
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Abstract

The popularity of electronic systems had increased in automobiles. A lot of ECUs, electronics sensors, bus are used in automobile systems which has made the system complex. Safety analysis should be done to ensure functional safety. IEC has introduced the standard, ISO 26262 for safety analysis of electrical/electronic/programmable systems in automobiles to reduce and control systematic faults. ISO 26262 give guidelines to define and follow the techniques strategically for the entire product life cycle of the vehicle. It does not explain how functional safety is done but it will guide us throughout the process. In this paper, we have analysed the Automatic Emergency Braking system as per the ISO 26262 guidelines. AEB is a significantly important active safety system which relies on electronic sensors, ECU and electronic actuators. The proper functioning of these electronic components could save the hazard from happening. We have determined the ASIL level, we determine safety goal and safety requirement, Fault Tree Analysis (FTA), Failure mode and Effect analysis. Also, we performed an HW safety analysis. Keywords: Electronic Sensors, functional safety, ISO 26262, Automatic Emergency Braking, Medini Analyze, Fault Tree analysis (FTA), Electro-Hydraulic Braking System, Failure Mode and Effect Analysis, Model-Based Safety Analysis, Safety Goals, HARA, FTA
基于ISO 26262的自动紧急制动功能安全
电子系统在汽车上的普及程度有所提高。汽车系统中使用了大量的电子控制单元、电子传感器、总线,使系统变得复杂。应进行安全分析,确保功能安全。IEC推出了汽车电气/电子/可编程系统安全分析标准ISO 26262,以减少和控制系统故障。ISO 26262为车辆的整个产品生命周期提供了战略定义和遵循技术的指导方针。它没有解释功能安全是如何完成的,但它将在整个过程中指导我们。本文根据ISO 26262标准对自动紧急制动系统进行了分析。AEB是一种非常重要的主动安全系统,它依赖于电子传感器、电子控制单元和电子执行器。这些电子元件的正常工作可以避免危险的发生。我们确定了ASIL级别,我们确定了安全目标和安全要求,故障树分析(FTA),故障模式和影响分析。此外,我们还进行了HW安全性分析。关键词:电子传感器、功能安全、ISO 26262、自动紧急制动、Medini分析、故障树分析(FTA)、电液制动系统、失效模式及影响分析、基于模型的安全分析、安全目标、HARA、FTA
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