0

Less is More: Parameter-Efficient Selection of Intermediate Tasks for Transfer Learning

Embedding Space Maps reduce computational requirements and disk space usage for task transfer learning in NLP while maintaining task selection accuracy.

Year
2024
Venue
arXiv 2024
Authors
3
Hosting
Abstract onlyARXIV-DEFAULT

Cite

Notes

Only stored in your browser.

Attribution

Abstract & full text
arxiv.org/abs/2410.15148ARXIV-DEFAULT
TL;DR
Semantic Scholar
Attribution policy →

Abstract

Intermediate task transfer learning can greatly improve model performance. If, for example, one has little training data for emotion detection, first fine-tuning a language model on a sentiment classification dataset may improve performance strongly. But which task to choose for transfer learning? Prior methods producing useful task rankings are infeasible for large source pools, as they require forward passes through all source language models. We overcome this by introducing Embedding Space Maps (ESMs), light-weight neural networks that approximate the effect of fine-tuning a language model. We conduct the largest study on NLP task transferability and task selection with 12k source-target pairs. We find that applying ESMs on a prior method reduces execution time and disk space usage by factors of 10 and 278, respectively, while retaining high selection performance (avg. regret@5 score of 2.95).

Authors

3