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Extending Large Vision-Language Model for Diverse Interactive Tasks in Autonomous Driving
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Extending Large Vision-Language Model for Diverse Interactive Tasks in Autonomous Driving
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The Large Visual-Language Models (LVLMs) have significantly advanced image understanding. Their comprehension and reasoning capabilities enable promising applications in autonomous driving scenarios. However, existing research typically focuses on front-view perspectives and partial objects within scenes, struggling to achieve comprehensive scene understanding. Meanwhile, existing LVLMs suffer from the lack of mapping relationship between 2D and 3D and insufficient integration of 3D object localization and instruction understanding. To tackle these limitations, we first introduce NuInteract, a large-scale dataset with over 1.5M multi-view image language pairs spanning dense scene captions and diverse interactive tasks. Furthermore, we propose DriveMonkey, a simple yet effective framework that seamlessly integrates LVLMs with a spatial processor using a series of learnable queries. The spatial processor, designed as a plug-and-play component, can be initialized with pre-trained 3D detectors to improve 3D perception. Our experiments show that DriveMonkey outperforms general LVLMs, especially achieving a 9.86% notable improvement on the 3D visual grounding task. The dataset and code will be released at https://github.com/zc-zhao/DriveMonkey.
Forward citations
Cited by 4 Pith papers
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HERMES++: Toward a Unified Driving World Model for 3D Scene Understanding and Generation
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GaussianDWM uses 3D Gaussians with embedded linguistic features, language-guided sampling, and dual-condition generation for unified scene understanding and multi-modal output in driving world models.
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An interactive enhanced driving dataset for autonomous driving
A fused, interaction-labeled dataset of 7.31M driving segments with synthetic BEV videos and VQA pairs for training/evaluating driving VLMs.
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MindDrive: A Vision-Language-Action Model for Autonomous Driving via Online Reinforcement Learning
An autonomous-driving vision-language model that uses online RL over discrete language actions, with a separate action expert mapping decisions to trajectories, reports DS 78.04 and SR 55.09% on Bench2Drive.
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