Hybrid Reciprocal Transformer with Triplet Feature Alignment for Scene Graph Generation
Jiawei Fu, Tiantian Zhang, Kai Chen, Qi Dou
Abstract
Scene graph generation is a pivotal task in computer vision, focusing on comprehensive identification of visual relation tuples embedded within images. The advancement of methods involving triplets has sought to enhance task performance by integrating triplets as contextual features for more precise predicate identification from component level. However, challenges remain due to interference from multirole objects in overlapping tuples within complex environments, which impairs the model's ability to distinguish and align specific triplet features for reasoning diverse semantics of multi-role objects. To address these issues, we introduce a novel framework that incorporates a triplet alignment model into a hybrid reciprocal transformer architecture, starting from using triplet mask features to guide the learning of component-level relation graphs. To effectively distinguish multi-role objects characterized by overlapping visual relation tuples, we introduce a triplet alignment loss, which provides multi-role objects with aligned features from triplet and helps customize them. Additionally, we explore the inherent connectivity between hybrid aligned triplet and component features through a bidirectional refinement module, which enhances feature interaction and reciprocal reinforcement. Experimental results demonstrate that our model achieves state-of-the-art performance on the Visual Genome and Action Genome datasets, underscoring its effectiveness and adaptability. Project page: hq-sg.github.io.
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Cited by top-tier papers3
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- APT: Towards Universal Scene Graph Generation via Plug-in Adaptive Prompt TuningRuikun Luo, Changwei Gu, Jing Yang, Yuan Gao et al.ICLR 2026
- Learning Gaussian Mixture-distributed Prototypes for 3D Scene Graph Generation from RGB-D SequencesRongxing Ding, Hongyu Qu, Xinguang Xiang, Pengpeng Li et al.ICML 2026
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- Learning of Visual Relations: The Devil is in the TailsAlakh Desai, Tz-Ying Wu, Subarna Tripathi, Nuno VasconcelosICCV 2021 · 100 citations
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