Fast(er) Exact Decoding and Global Training for Transition-Based Dependency Parsing via a Minimal Feature Set
Abstract
We first present a minimal feature set for transition-based dependency parsing, continuing a recent trend started by Kiperwasser and Goldberg (2016a) and Cross and Huang (2016a) of using bi-directional LSTM features. We plug our minimal feature set into the dynamic-programming framework of Huang and Sagae (2010) and Kuhlmann et al. (2011) to produce the first implementation of worst-case O(n^3) exact decoders for arc-hybrid and arc-eager transition systems. With our minimal features, we also present O(n^3) global training methods. Finally, using ensembles including our new parsers, we achieve the best unlabeled attachment score reported (to our knowledge) on the Chinese Treebank and the "second-best-in-class" result on the English Penn Treebank.
Cite
@article{arxiv.1708.09403,
title = {Fast(er) Exact Decoding and Global Training for Transition-Based Dependency Parsing via a Minimal Feature Set},
author = {Tianze Shi and Liang Huang and Lillian Lee},
journal= {arXiv preprint arXiv:1708.09403},
year = {2017}
}
Comments
Proceedings of EMNLP, 2017. 12 pages