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Transactions of the Association for Computational Linguistics

Efficient Tuning of Large Language Models for Knowledge-Grounded Dialogue Generation A Systematic Review of NLP for Dementia: Tasks, Datasets and Opportunities TALE: Token-Adaptive Low-Rank KVCache Approximation with Reconstruction Elimination Large Language Models Are Human-Like Internally BenCzechMark : A Czech-centric Multitask and Multimetric Benchmark for Large Language Models with Duel Scoring Mechanism Adding Chocolate to MINT: Mitigating Metric Interference in Machine Translation Objectifying the Subjective: Cognitive Biases in Topic Interpretations Elements of World Knowledge (EWoK): A cognition-inspired framework for evaluating basic world knowledge in language models End-to-End Long Document Summarization using Gradient Caching MURI: High-Quality Instruction Tuning Datasets for Low-Resource Languages via Reverse Instructions CRAFT Your Dataset: Task-Specific Synthetic Dataset Generation Through Corpus Retrieval and Augmentation Human Choice Prediction in Language-Based Persuasion Games: Simulation-Based Off-Policy Evaluation Adversarial Defence without Adversarial Defence: Enhancing Language Model Robustness via Instance-level Principal Component Removal Exploring Practical Gaps in Using Cross Entropy to Implement Maximum Mutual Information Criterion for Rationalization Benchmarking Linguistic Diversity of Large Language Models Do Large Multimodal Models Solve Caption Generation for Scientific Figure? Lessons Learned from SciCap Challenge 2023 MTRAG: A Multi-Turn Conversational Benchmark for Evaluating Retrieval-Augmented Generation Systems Culturally Aware and Adapted NLP: A Taxonomy and a Survey of the State of the Art KEFT: Knowledge-Enhanced Fine-Tuning for Large Language Models in Domain-Specific Question Answering Active Knowledge Structuring for Large Language Models in Materials Science Text Mining How to Select Datapoints for Efficient Human Evaluation of NLG Models? A Unifying Scheme for Extractive Content Selection Tasks Early Detection and Reduction of Memorisation for Domain Adaptation and Instruction Tuning Towards More Realistic Extraction Attacks: An Adversarial Perspective The Frame Representation Hypothesis: Multi-Token LLM Interpretability and Concept-Guided Text Generation Overcoming Source Object Grounding for Semantic Image Editing Explanatory Summarization with Discourse-Driven Planning On the Effect of Instruction Tuning Loss on Generalization BharatBBQ: A Multilingual Bias Benchmark for Question Answering in the Indian Context Are Triggers Needed for Document-Level Event Extraction?
Continual Pre-training on Character-level Noisy Texts Mak...
Takeshi Koji · 2025-12-25 · via Transactions of the Association for Computational Linguistics

Abstract

Recent decoder-based pre-trained language models (PLMs) generally use subword tokenizers. However, adding character-level perturbations drastically changes the delimitation of texts by the tokenizers, leading to the vulnerability of PLMs. This study proposes a method of continual pre-training to convert decoder-based PLMs with subword tokenizers into perturbation-robust few-shot in-context learners. Our method continually trains decoder-based PLMs to predict the next tokens conditioning on artificially created character-level noisy texts. Since decoder-based language models are auto-regressive, we skip noised words from the target optimization. In addition, to maintain the same word prediction performance under noisy text as clean text, our method employs word distribution matching between the original PLMs and training models. We conducted experiments on various subword-based PLMs, including GPT2, Pythia, Mistral, Gemma2, and Llama3, ranging from 1B to 8B parameters. The results demonstrate that our method consistently improves the performance of few-shot in-context learning on downstream tasks which contain actual typos or misspellings as well as artificial noise.

Article at MIT Press Presented at ACL 2025