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CAFuser: Condition-Aware Multimodal Fusion for Robust Semantic Perception of Driving Scenes

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arxiv 2410.10791 v2 pith:VYF2D2FC submitted 2024-10-14 cs.CV

CAFuser: Condition-Aware Multimodal Fusion for Robust Semantic Perception of Driving Scenes

classification cs.CV
keywords fusionsensorcafusersemanticdrivingmultimodalperceptionrobust
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Leveraging multiple sensors is crucial for robust semantic perception in autonomous driving, as each sensor type has complementary strengths and weaknesses. However, existing sensor fusion methods often treat sensors uniformly across all conditions, leading to suboptimal performance. By contrast, we propose a novel, condition-aware multimodal fusion approach for robust semantic perception of driving scenes. Our method, CAFuser, uses an RGB camera input to classify environmental conditions and generate a Condition Token that guides the fusion of multiple sensor modalities. We further newly introduce modality-specific feature adapters to align diverse sensor inputs into a shared latent space, enabling efficient integration with a single and shared pre-trained backbone. By dynamically adapting sensor fusion based on the actual condition, our model significantly improves robustness and accuracy, especially in adverse-condition scenarios. CAFuser ranks first on the public MUSES benchmarks, achieving 59.7 PQ for multimodal panoptic and 78.2 mIoU for semantic segmentation, and also sets the new state of the art on DeLiVER. The source code is publicly available at: https://github.com/timbroed/CAFuser.

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Cited by 2 Pith papers

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