An Assurance Case Driven Development Paradigm for Autonomous Vehicles: An F1TENTH Racing Car Case Study

Ioannis Nearchou, Lance Rafalko, Ryan Phillips, Matthew Anderson, Wuwei Shen, S. Drager
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Abstract

Autonomous driving has drawn great interest from both industry and academia. Due to some serious consequences such as loss of life caused by autonomous vehicles, assurance certification has been proposed in the automotive industry to ensure safe self-adaptive behaviors at run-time in autonomous cars. Central to assurance certification are assurance cases that provide compelling, comprehensive, and valid argument structures showing a system is safe in a given environment. However, many existing approaches generate assurance cases as a by-product of a system. In this paper, we will present a novel development paradigm that employs assurance cases to guide an autonomous vehicle to operate correctly and safely at run-time. Specifically, we consider an F1TENTH racing car as an example to illustrate how the assurance case driven paradigm can guide the vehicle to achieve safe and reliable self-adaptive behavior at run-time.
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自动驾驶汽车的保障案例驱动开发范式:第110届赛车案例研究
自动驾驶已经引起了业界和学术界的极大兴趣。由于自动驾驶汽车会造成生命损失等严重后果,汽车行业提出了保证认证,以确保自动驾驶汽车在运行时的安全自适应行为。保证认证的核心是保证用例,它提供了引人注目的、全面的和有效的论证结构,表明系统在给定环境中是安全的。然而,许多现有的方法作为系统的副产品生成保证案例。在本文中,我们将提出一种新的开发范例,该范例采用保证案例来指导自动驾驶车辆在运行时正确安全地运行。具体来说,我们以f110赛车为例,说明保证案例驱动范式如何指导车辆在运行时实现安全可靠的自适应行为。
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