EMNLP 2022main102 citations

COLD: A Benchmark for Chinese Offensive Language Detection

Jiawen Deng, Jingyan Zhou, Hao Sun, Chujie Zheng, Fei Mi, Helen Meng, Minlie Huang

Abstract

Offensive language detection is increasingly crucial for maintaining a civilized social media platform and deploying pre-trained language models. However, this task in Chinese is still under exploration due to the scarcity of reliable datasets. To this end, we propose a benchmark –COLD for Chinese offensive language analysis, including a Chinese Offensive Language Dataset –COLDATASET and a baseline detector –COLDETECTOR which is trained on the dataset. We show that the COLD benchmark contributes to Chinese offensive language detection which is challenging for existing resources. We then deploy the COLDETECTOR and conduct detailed analyses on popular Chinese pre-trained language models. We first analyze the offensiveness of existing generative models and show that these models inevitably expose varying degrees of offensive issues. Furthermore, we investigate the factors that influence the offensive generations, and we find that anti-bias contents and keywords referring to certain groups or revealing negative attitudes trigger offensive outputs easier.

BibTeX
@inproceedings{deng-etal-2022-cold,
    title = "{COLD}: A Benchmark for {C}hinese Offensive Language Detection",
    author = "Deng, Jiawen  and
      Zhou, Jingyan  and
      Sun, Hao  and
      Zheng, Chujie  and
      Mi, Fei  and
      Meng, Helen  and
      Huang, Minlie",
    editor = "Goldberg, Yoav  and
      Kozareva, Zornitsa  and
      Zhang, Yue",
    booktitle = "Proceedings of the 2022 Conference on Empirical Methods in Natural Language Processing",
    month = dec,
    year = "2022",
    address = "Abu Dhabi, United Arab Emirates",
    publisher = "Association for Computational Linguistics",
    url = "https://aclanthology.org/2022.emnlp-main.796/",
    doi = "10.18653/v1/2022.emnlp-main.796",
    pages = "11580--11599"
}
COLD: A Benchmark for Chinese Offensive Language Detection · EMNLP 2022