Heterogeneous Dual-Task Clustering with Visual-Textual Information

Xiaoqiang Yan, Yiqiao Mao, Shizhe Hu, Yangdong Ye · Society for Industrial and Applied Mathematics eBooks · 2020

Existing visual-textual cross-modal clustering techniques focus on finding a clustering partition of different modalities by dealing with each modality dependently or integrating multiple modalities into a shared space, which may results in unsatisfactory performance due to the heterogeneous gap of different modalities. Aiming at this problem, we propose a novel heterogeneous dual-task clustering (HDC) method, which is capable of exploring high-level relatedness between visual and textual data to improve the performance of individual task. Our intuition is that although the visual and textual data are heterogenous to each other, they may share related high-level semantics and rich latent correlations, which can lead to improved performance if we treat the clustering of visual and textual data as different but related learning tasks. Specifically, the problem of heterogeneous dual-task clustering is formulated as an information-theoretic function, in which the low-level information in each modality and high-level relatedness between multiple modalities are maximally preserved. Then, a progressive optimization method is proposed to ensure a local optimal solution. Extensive experiments show noticeable performance of the HDC approach in comparison with several state-of-the-art baselines.

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