Safety in the automotive domain is a well-known topic, which has been in constant development in the past years. The complexity of new systems that add more advanced components in each function has opened new trends that have to be covered from the safety perspective. In this case, not only specifications and requirements have to be covered but also scenarios, which cover all relevant information of the vehicle environment. Many of them are not yet still sufficient defined or considered. In this context, Safety of the Intended Functionality (SOTIF) appears to ensure the system when it might fail because of technological shortcomings or misuses by users. An identification of the plausibly insufficiencies of ADAS/ADS functions has to be done to discover the potential triggering conditions that can lead to these unknown scenarios, which might effect a hazardous behaviour. The main goal of this publication is the definition of an use case to identify these triggering conditions that have been applied to the collision avoidance function implemented in our self-developed mobile Hardware-in-Loop (HiL) platform.
翻译:汽车领域安全是一个众所周知的议题,过去几年来一直处于不断发展之中。在每个功能中增加更先进部件的新系统的复杂性带来了新的趋势,必须从安全角度加以涵盖。在这种情况下,不仅必须涵盖规格和要求,而且还要涵盖各种设想,涵盖车辆环境的所有相关信息,其中许多尚未得到充分界定或考虑。在这方面,由于技术缺陷或用户的滥用,预期功能的安全似乎能够确保该系统在可能失败时得到保证。必须查明ADAS/ADS功能可能无法满足的潜在触发条件,这些条件可能造成一种危险行为。这一出版物的主要目的是界定一种使用案例,用以确定适用于我们自行开发的移动硬件在Loop(HIL)平台上实施的避免碰撞功能的触发条件。