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EAN-MapNet: Efficient Vectorized HD Map Construction with Anchor Neighborhoods

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arxiv 2402.18278 v2 pith:HM7CRINL submitted 2024-02-28 cs.CV

classification cs.CV
keywords queriesanchorean-mapnetinteractionneighborhoodsself-attentionanchorscentral
verification ladder T0 review T1 audit T2 compute T3 formal
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High-definition (HD) map is crucial for autonomous driving systems. Most existing works design map elements detection heads based on the DETR decoder. However, the initial queries lack explicit incorporation of physical positional information, and vanilla self-attention entails high computational complexity. Therefore, we propose EAN-MapNet for Efficiently constructing HD map using Anchor Neighborhoods. Firstly, we design query units based on the anchor neighborhoods, allowing non-neighborhood central anchors to effectively assist in fitting the neighborhood central anchors to the target points representing map elements. Then, we propose grouped local self-attention (GL-SA) by leveraging the relative instance relationship among the queries. This facilitates direct feature interaction among queries of the same instances, while innovatively employing local queries as intermediaries for interaction among queries from different instances. Consequently, GL-SA significantly reduces the computational complexity of self-attention while ensuring ample feature interaction among queries. On the nuScenes dataset, EAN-MapNet achieves a state-of-the-art performance with 63.0 mAP after training for 24 epochs, surpassing MapTR by 12.7 mAP. Furthermore, it considerably reduces memory consumption by 8198M compared to MapTRv2.

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  1. End-to-End Generation of City-Scale Vectorized Maps by Crowdsourced Vehicles

    cs.RO 2025-07 conditional novelty 6.0 of 10

    Fusing vectorized map elements from multiple crowdsourced vehicles with a trip-aware transformer improves online HD map accuracy over single-vehicle methods on the Navinfo Dataset.

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