ICLR 2024poster15 citations

GRANDE: Gradient-Based Decision Tree Ensembles for Tabular Data

Sascha Marton, Stefan Lüdtke, Christian Bartelt, Heiner Stuckenschmidt

Abstract

Despite the success of deep learning for text and image data, tree-based ensemble models are still state-of-the-art for machine learning with heterogeneous tabular data. However, there is a significant need for tabular-specific gradient-based methods due to their high flexibility. In this paper, we propose $\text{GRANDE}$, $\text{GRA}$die$\text{N}$t-Based $\text{D}$ecision Tree $\text{E}$nsembles, a novel approach for learning hard, axis-aligned decision tree ensembles using end-to-end gradient descent. GRANDE is based on a dense representation of tree ensembles, which affords to use backpropagation with a straight-through operator to jointly optimize all model parameters. Our method combines axis-aligned splits, which is a useful inductive bias for tabular data, with the flexibility of gradient-based optimization. Furthermore, we introduce an advanced instance-wise weighting that facilitates learning representations for both, simple and complex relations, within a single model. We conducted an extensive evaluation on a predefined benchmark with 19 classification datasets and demonstrate that our method outperforms existing gradient-boosting and deep learning frameworks on most datasets. The method is available under: https://github.com/s-marton/GRANDE

Tabular DataArchitecturesEnsemblesDecision TreesGradient Descent
BibTeX
@inproceedings{
marton2024grande,
title={{GRANDE}: Gradient-Based Decision Tree Ensembles for Tabular Data},
author={Sascha Marton and Stefan L{\"u}dtke and Christian Bartelt and Heiner Stuckenschmidt},
booktitle={The Twelfth International Conference on Learning Representations},
year={2024},
url={https://openreview.net/forum?id=XEFWBxi075}
}
GRANDE: Gradient-Based Decision Tree Ensembles for Tabular Data · ICLR 2024