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From Adversarial Arms Race to Model-centric Evaluation: Motivating a Unified Automatic Robustness Evaluation Framework (2305.18503v1)

Published 29 May 2023 in cs.CL, cs.CR, and cs.LG

Abstract: Textual adversarial attacks can discover models' weaknesses by adding semantic-preserved but misleading perturbations to the inputs. The long-lasting adversarial attack-and-defense arms race in NLP is algorithm-centric, providing valuable techniques for automatic robustness evaluation. However, the existing practice of robustness evaluation may exhibit issues of incomprehensive evaluation, impractical evaluation protocol, and invalid adversarial samples. In this paper, we aim to set up a unified automatic robustness evaluation framework, shifting towards model-centric evaluation to further exploit the advantages of adversarial attacks. To address the above challenges, we first determine robustness evaluation dimensions based on model capabilities and specify the reasonable algorithm to generate adversarial samples for each dimension. Then we establish the evaluation protocol, including evaluation settings and metrics, under realistic demands. Finally, we use the perturbation degree of adversarial samples to control the sample validity. We implement a toolkit RobTest that realizes our automatic robustness evaluation framework. In our experiments, we conduct a robustness evaluation of RoBERTa models to demonstrate the effectiveness of our evaluation framework, and further show the rationality of each component in the framework. The code will be made public at \url{https://github.com/thunlp/RobTest}.

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Authors (13)
  1. Yangyi Chen (29 papers)
  2. Hongcheng Gao (28 papers)
  3. Ganqu Cui (39 papers)
  4. Lifan Yuan (22 papers)
  5. Dehan Kong (32 papers)
  6. Hanlu Wu (3 papers)
  7. Ning Shi (16 papers)
  8. Bo Yuan (151 papers)
  9. Longtao Huang (27 papers)
  10. Hui Xue (109 papers)
  11. Zhiyuan Liu (433 papers)
  12. Maosong Sun (337 papers)
  13. Heng Ji (266 papers)
Citations (5)

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