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Automatic Generation of Scenarios for System-level Simulation-based Verification of Autonomous Driving Systems

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arxiv 2311.09784 v1 pith:GFWARTNW submitted 2023-11-16 cs.LO cs.AIcs.SE

classification cs.LOcs.AIcs.SE
keywords drivingscenarioscarlasystemsvivasautomatedautonomousframework
verification ladder T0 review T1 audit T2 compute T3 formal
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With increasing complexity of Automated Driving Systems (ADS), ensuring their safety and reliability has become a critical challenge. The Verification and Validation (V&V) of these systems are particularly demanding when AI components are employed to implement perception and/or control functions. In ESA-funded project VIVAS, we developed a generic framework for system-level simulation-based V&V of autonomous systems. The approach is based on a simulation model of the system, an abstract model that describes symbolically the system behavior, and formal methods to generate scenarios and verify the simulation executions. Various coverage criteria can be defined to guide the automated generation of the scenarios. In this paper, we describe the instantiation of the VIVAS framework for an ADS case study. This is based on the integration of CARLA, a widely-used driving simulator, and its ScenarioRunner tool, which enables the creation of diverse and complex driving scenarios. This is also used in the CARLA Autonomous Driving Challenge to validate different ADS agents for perception and control based on AI, shared by the CARLA community. We describe the development of an abstract ADS model and the formulation of a coverage criterion that focuses on the behaviors of vehicles relative to the vehicle with ADS under verification. Leveraging the VIVAS framework, we generate and execute various driving scenarios, thus testing the capabilities of the AI components. The results show the effectiveness of VIVAS in automatically generating scenarios for system-level simulation-based V&V of an automated driving system using CARLA and ScenarioRunner. Therefore, they highlight the potential of the approach as a powerful tool in the future of ADS V&V methodologies.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Generating Traffic Scenarios via In-Context Learning to Learn Better Motion Planner

    cs.RO 2024-12 reject novelty 4.0 of 10

    AutoSceneGen uses LLM in-context learning to generate CARLA traffic scenarios and trains trajectory predictors on the synthetic data, but its claimed improvements are inconsistent and unsupported.

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