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Unlocking the Transferability of Tokens in Deep Models for Tabular Data

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arxiv 2310.15149 v1 pith:5Y3IKVRZ submitted 2023-10-23 cs.LG

classification cs.LG
keywords featuresmodelstaskstokensdeeppre-trainedtabtokentabular
verification ladder T0 review T1 audit T2 compute T3 formal
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Fine-tuning a pre-trained deep neural network has become a successful paradigm in various machine learning tasks. However, such a paradigm becomes particularly challenging with tabular data when there are discrepancies between the feature sets of pre-trained models and the target tasks. In this paper, we propose TabToken, a method aims at enhancing the quality of feature tokens (i.e., embeddings of tabular features). TabToken allows for the utilization of pre-trained models when the upstream and downstream tasks share overlapping features, facilitating model fine-tuning even with limited training examples. Specifically, we introduce a contrastive objective that regularizes the tokens, capturing the semantics within and across features. During the pre-training stage, the tokens are learned jointly with top-layer deep models such as transformer. In the downstream task, tokens of the shared features are kept fixed while TabToken efficiently fine-tunes the remaining parts of the model. TabToken not only enables knowledge transfer from a pre-trained model to tasks with heterogeneous features, but also enhances the discriminative ability of deep tabular models in standard classification and regression tasks.

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  1. TabPFN Unleashed: A Scalable and Effective Solution to Tabular Classification Problems

    cs.LG 2025-02 conditional novelty 6.0 of 10

    BETA augments TabPFN with encoder fine-tuning and bagging to reduce both bias and variance, achieving SOTA accuracy on 200+ tabular benchmarks while scaling to larger and higher-dimensional data.

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