Bridging Past and Future: End-to-End Autonomous Driving with Historical Prediction and Planning

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Hauptverfasser: Zhang, Bozhou, Song, Nan, Jin, Xin, Zhang, Li
Format: Preprint
Veröffentlicht: 2025
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author Zhang, Bozhou
Song, Nan
Jin, Xin
Zhang, Li
author_facet Zhang, Bozhou
Song, Nan
Jin, Xin
Zhang, Li
contents End-to-end autonomous driving unifies tasks in a differentiable framework, enabling planning-oriented optimization and attracting growing attention. Current methods aggregate historical information either through dense historical bird's-eye-view (BEV) features or by querying a sparse memory bank, following paradigms inherited from detection. However, we argue that these paradigms either omit historical information in motion planning or fail to align with its multi-step nature, which requires predicting or planning multiple future time steps. In line with the philosophy of future is a continuation of past, we propose BridgeAD, which reformulates motion and planning queries as multi-step queries to differentiate the queries for each future time step. This design enables the effective use of historical prediction and planning by applying them to the appropriate parts of the end-to-end system based on the time steps, which improves both perception and motion planning. Specifically, historical queries for the current frame are combined with perception, while queries for future frames are integrated with motion planning. In this way, we bridge the gap between past and future by aggregating historical insights at every time step, enhancing the overall coherence and accuracy of the end-to-end autonomous driving pipeline. Extensive experiments on the nuScenes dataset in both open-loop and closed-loop settings demonstrate that BridgeAD achieves state-of-the-art performance.
format Preprint
id arxiv_https___arxiv_org_abs_2503_14182
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Bridging Past and Future: End-to-End Autonomous Driving with Historical Prediction and Planning
Zhang, Bozhou
Song, Nan
Jin, Xin
Zhang, Li
Robotics
Computer Vision and Pattern Recognition
End-to-end autonomous driving unifies tasks in a differentiable framework, enabling planning-oriented optimization and attracting growing attention. Current methods aggregate historical information either through dense historical bird's-eye-view (BEV) features or by querying a sparse memory bank, following paradigms inherited from detection. However, we argue that these paradigms either omit historical information in motion planning or fail to align with its multi-step nature, which requires predicting or planning multiple future time steps. In line with the philosophy of future is a continuation of past, we propose BridgeAD, which reformulates motion and planning queries as multi-step queries to differentiate the queries for each future time step. This design enables the effective use of historical prediction and planning by applying them to the appropriate parts of the end-to-end system based on the time steps, which improves both perception and motion planning. Specifically, historical queries for the current frame are combined with perception, while queries for future frames are integrated with motion planning. In this way, we bridge the gap between past and future by aggregating historical insights at every time step, enhancing the overall coherence and accuracy of the end-to-end autonomous driving pipeline. Extensive experiments on the nuScenes dataset in both open-loop and closed-loop settings demonstrate that BridgeAD achieves state-of-the-art performance.
title Bridging Past and Future: End-to-End Autonomous Driving with Historical Prediction and Planning
topic Robotics
Computer Vision and Pattern Recognition
url https://arxiv.org/abs/2503.14182