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Self-Weighted Contrastive Learning among Multiple Views for Mitigating Representation Degeneration

Prepare a multi-view/modal dataset, for example:

The format of a multi-view dataset ($N$ samples and $V$ views) should be ${\mathbf{X}^1, \mathbf{X}^2, \dots, \mathbf{X}^v, \dots, \mathbf{X}^V, \mathbf{Y}}$, where the $v$-th view data is $\mathbf{X}^v\in \mathbb{R}^{N\times d_v}$ and the class label is $\mathbf{Y}\in \mathbb{R}^{N\times 1}$ (The label is leveraged to evaluate the performance of representation learning in unsupervised settings). This type of data is suitable for fully connected neural networks, otherwise the model in "network.py" needs to be modified.

The public datasets and our trained models are available at Download or 国内下载源.

Requirements:

python==3.7.11
pytorch==1.9.0
numpy==1.20.1
scikit-learn==0.22.2.post1
scipy==1.6.2

To test the trained model, run:

python test.py

To train a new model, run:

python train.py

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