A Hierarchical Test Platform for Vision Language Model (VLM)-Integrated Real-World Autonomous Driving
Zhou, Yupeng, Cui, Can, Peng, Juntong, Yang, Zichong, Lu, Juanwu, Panchal, Jitesh H, Yao, Bin, Wang, Ziran
–arXiv.org Artificial Intelligence
Vision-Language Models (VLMs) have demonstrated notable promise in autonomous driving by offering the potential for multimodal reasoning through pretraining on extensive image-text pairs. However, adapting these models from broad web-scale data to the safety-critical context of driving presents a significant challenge, commonly referred to as domain shift. Existing simulation-based and dataset-driven evaluation methods, although valuable, often fail to capture the full complexity of real-world scenarios and cannot easily accommodate repeatable closed-loop testing with flexible scenario manipulation. In this paper, we introduce a hierarchical real-world test platform specifically designed to evaluate VLM-integrated autonomous driving systems. Our approach includes a modular, low-latency on-vehicle middleware that allows seamless incorporation of various VLMs, a clearly separated perception-planning-control architecture that can accommodate both VLM-based and conventional modules, and a configurable suite of real-world testing scenarios on a closed track that facilitates controlled yet authentic evaluations. We demonstrate the effectiveness of the proposed platform`s testing and evaluation ability with a case study involving a VLM-enabled autonomous vehicle, highlighting how our test framework supports robust experimentation under diverse conditions.
arXiv.org Artificial Intelligence
Jun-18-2025
- Country:
- Europe (0.92)
- North America > United States
- Indiana > Tippecanoe County
- West Lafayette (0.14)
- Lafayette (0.14)
- Indiana > Tippecanoe County
- Genre:
- Research Report (1.00)
- Industry:
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- Transportation > Ground
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- Technology:
- Information Technology > Artificial Intelligence
- Vision (1.00)
- Robots > Autonomous Vehicles (1.00)
- Natural Language (1.00)
- Machine Learning > Neural Networks
- Deep Learning (0.93)
- Information Technology > Artificial Intelligence