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A simulation-based methodology for aiding advanced driver assistance systems hazard analysis and risk assessment

机译:基于仿真的方法,用于辅助先进的驾驶辅助系统危害分析和风险评估

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摘要

The increasing complexity of the Advanced Driver Assistance Systems (ADAS) is making more difficult to perform the Hazard Analysis and Risk Assessment (HARA). These items require high-performance Electronic Control Units (ECU) with extensive software functionalities. To correctly operate they interact with the driver, environment and other vehicle functions through high-speed in-vehicle networks, as well as a wide range of sensors and actuators. As a result, they implement complex behaviors whose outcome in presence of faults is not trivial to identify and classify as requested by the concept phase included in the most recent functional safety standards. In this paper we present a simulation-based methodology to perform the HARA of a vehicle function by mixing the usual industrial approach, based on the designers' knowledge, with one that makes use of a vehicle-level simulator. The simulation-based approach provides an automatic and systematic method to assess the complex interaction of the item under analysis with other vehicle functions in possibly complex operational situations, thus making the prediction of hazards easier. We choose to demonstrate the approach by applying it to a well-known automotive industry case study: an Advanced Emergency Braking System (AEBS). In this way, it is possible to analyze the effects of the function provided by the item, keeping into account the simulations results and comparing them to similar situations analysis available in literature. Thanks to the obtained simulation-based results, safety engineers can formulate a more objective hypothesis, in particular during the hazard classification subphase.
机译:先进的驾驶员辅助系统(ADA)的复杂性越来越复杂,使危害分析和风险评估(HARA)更加困难。这些项目需要具有广泛的软件功能的高性能电子控制单元(ECU)。要正确操作,他们通过高速车载网络以及广泛的传感器和执行器互动与驾驶员,环境和其他车辆功能相互作用。结果,它们实施了由于最近的功能安全标准中包含的概念阶段所要求的识别和分类,因此实现了故障的结果的复杂性行为。在本文中,我们提出了一种基于模拟的方法,通过将通常的工业方法基于设计人员的知识,利用了利用车辆级模拟器来执行常规的工业方法来执行哈拉。基于仿真的方法提供了一种自动和系统的方法,以评估在可能复杂的操作情况下的其他车辆功能下的项目的复杂相互作用,从而使对危险的预测更容易。我们选择通过将其应用于知名汽车行业案例研究:先进的紧急制动系统(AEB)来展示该方法。以这种方式,可以分析项目提供的功能的效果,以考虑模拟结果并将它们与文献中可用的相似情况进行比较。由于获得了基于模拟的结果,安全工程师可以制定更客观的假设,特别是在危害分类子相期间。

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