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Adapting Pre-trained Language Models to African Languages via Multilingual Adaptive Fine-Tuning

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arxiv 2204.06487 v3 pith:G4XLV4EI submitted 2022-04-13 cs.CL

classification cs.CL
keywords languagelanguagesmultilingualfine-tuningafricanadaptivecross-lingualmodels
verification ladder T0 review T1 audit T2 compute T3 formal
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Multilingual pre-trained language models (PLMs) have demonstrated impressive performance on several downstream tasks for both high-resourced and low-resourced languages. However, there is still a large performance drop for languages unseen during pre-training, especially African languages. One of the most effective approaches to adapt to a new language is \textit{language adaptive fine-tuning} (LAFT) -- fine-tuning a multilingual PLM on monolingual texts of a language using the pre-training objective. However, adapting to a target language individually takes a large disk space and limits the cross-lingual transfer abilities of the resulting models because they have been specialized for a single language. In this paper, we perform \textit{multilingual adaptive fine-tuning} on 17 most-resourced African languages and three other high-resource languages widely spoken on the African continent to encourage cross-lingual transfer learning. To further specialize the multilingual PLM, we removed vocabulary tokens from the embedding layer that corresponds to non-African writing scripts before MAFT, thus reducing the model size by around 50%. Our evaluation on two multilingual PLMs (AfriBERTa and XLM-R) and three NLP tasks (NER, news topic classification, and sentiment classification) shows that our approach is competitive to applying LAFT on individual languages while requiring significantly less disk space. Additionally, we show that our adapted PLM also improves the zero-shot cross-lingual transfer abilities of parameter efficient fine-tuning methods.

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  1. KinyaColBERT: A Lexically Grounded Retrieval Model for Low-Resource Retrieval-Augmented Generation

    cs.CL 2025-07 conditional novelty 5.0 of 10

    KinyaColBERT, a morphology-aware two-tier ColBERT retriever, reports large MRR gains over multilingual baselines and commercial APIs on a new Kinyarwanda agricultural retrieval benchmark.

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