EPSM: A Novel Metric to Evaluate the Safety of Environmental Perception in Autonomous Driving

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Main Authors: Gamerdinger, Jörg, Teufel, Sven, Amann, Stephan, Listl, Lukas Marc, Bringmann, Oliver
Format: Preprint
Published: 2025
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author Gamerdinger, Jörg
Teufel, Sven
Amann, Stephan
Listl, Lukas Marc
Bringmann, Oliver
author_facet Gamerdinger, Jörg
Teufel, Sven
Amann, Stephan
Listl, Lukas Marc
Bringmann, Oliver
contents Extensive evaluation of perception systems is crucial for ensuring the safety of intelligent vehicles in complex driving scenarios. Conventional performance metrics such as precision, recall and the F1-score assess the overall detection accuracy, but they do not consider the safety-relevant aspects of perception. Consequently, perception systems that achieve high scores in these metrics may still cause misdetections that could lead to severe accidents. Therefore, it is important to evaluate not only the overall performance of perception systems, but also their safety. We therefore introduce a novel safety metric for jointly evaluating the most critical perception tasks, object and lane detection. Our proposed framework integrates a new, lightweight object safety metric that quantifies the potential risk associated with object detection errors, as well as an lane safety metric including the interdependence between both tasks that can occur in safety evaluation. The resulting combined safety score provides a unified, interpretable measure of perception safety performance. Using the DeepAccident dataset, we demonstrate that our approach identifies safety critical perception errors that conventional performance metrics fail to capture. Our findings emphasize the importance of safety-centric evaluation methods for perception systems in autonomous driving.
format Preprint
id arxiv_https___arxiv_org_abs_2512_15195
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle EPSM: A Novel Metric to Evaluate the Safety of Environmental Perception in Autonomous Driving
Gamerdinger, Jörg
Teufel, Sven
Amann, Stephan
Listl, Lukas Marc
Bringmann, Oliver
Robotics
Computer Vision and Pattern Recognition
Extensive evaluation of perception systems is crucial for ensuring the safety of intelligent vehicles in complex driving scenarios. Conventional performance metrics such as precision, recall and the F1-score assess the overall detection accuracy, but they do not consider the safety-relevant aspects of perception. Consequently, perception systems that achieve high scores in these metrics may still cause misdetections that could lead to severe accidents. Therefore, it is important to evaluate not only the overall performance of perception systems, but also their safety. We therefore introduce a novel safety metric for jointly evaluating the most critical perception tasks, object and lane detection. Our proposed framework integrates a new, lightweight object safety metric that quantifies the potential risk associated with object detection errors, as well as an lane safety metric including the interdependence between both tasks that can occur in safety evaluation. The resulting combined safety score provides a unified, interpretable measure of perception safety performance. Using the DeepAccident dataset, we demonstrate that our approach identifies safety critical perception errors that conventional performance metrics fail to capture. Our findings emphasize the importance of safety-centric evaluation methods for perception systems in autonomous driving.
title EPSM: A Novel Metric to Evaluate the Safety of Environmental Perception in Autonomous Driving
topic Robotics
Computer Vision and Pattern Recognition
url https://arxiv.org/abs/2512.15195