Know Yourself and Know Your Neighbour : A Syntactically Informed Self-Supervised Compositional Sentence Representation Learning Framework Using a Recursive Hypernetwork

Abstract

Sentence representation learning is still an open challenge in Natural Language Processing. In this work, we propose a new self-supervised framework for learning sentence representations, using a special type of neural network called a recursive hypernetwork. Our proposed model composes the representation of a sentence from representations of words by applying a recursive composition through the parse tree. We maintain a separate syntactic and semantic representation, and the semantic composition is guided by the information from the syntactic representation. To train this model, we introduce a novel set of six self-supervised tasks. By analysing the performance on 7 probing tasks, we validate that the generated sentence representation encodes richer linguistic information than both averaging baselines and state-of-the-art alternatives. Furthermore, we assess the impact of the six proposed self-supervised training tasks through ablation studies. We also demonstrate that the representations generated by our model are stable for sentences of varying length and that the semantic composition operators adapt to different syntactic categories.

Cite

Text

Nedumpozhimana and Kelleher. "Know Yourself and Know Your Neighbour : A Syntactically Informed Self-Supervised Compositional Sentence Representation Learning Framework Using a Recursive Hypernetwork." Transactions on Machine Learning Research, 2025.

Markdown

[Nedumpozhimana and Kelleher. "Know Yourself and Know Your Neighbour : A Syntactically Informed Self-Supervised Compositional Sentence Representation Learning Framework Using a Recursive Hypernetwork." Transactions on Machine Learning Research, 2025.](https://mlanthology.org/tmlr/2025/nedumpozhimana2025tmlr-know/)

BibTeX

@article{nedumpozhimana2025tmlr-know,
  title     = {{Know Yourself and Know Your Neighbour : A Syntactically Informed Self-Supervised Compositional Sentence Representation Learning Framework Using a Recursive Hypernetwork}},
  author    = {Nedumpozhimana, Vasudevan and Kelleher, John D.},
  journal   = {Transactions on Machine Learning Research},
  year      = {2025},
  url       = {https://mlanthology.org/tmlr/2025/nedumpozhimana2025tmlr-know/}
}