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Comparative Analysis of Efficient Adapter-Based Fine-Tuning of State-of-the-Art Transformer Models

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arxiv 2501.08271 v1 pith:5LWSDAVJ submitted 2025-01-14 cs.CL cs.AI

Comparative Analysis of Efficient Adapter-Based Fine-Tuning of State-of-the-Art Transformer Models

classification cs.CL cs.AI
keywords classificationfine-tuningadapterarchitecturesperformanceadaptersanalysisefficient
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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In this work, we investigate the efficacy of various adapter architectures on supervised binary classification tasks from the SuperGLUE benchmark as well as a supervised multi-class news category classification task from Kaggle. Specifically, we compare classification performance and time complexity of three transformer models, namely DistilBERT, ELECTRA, and BART, using conventional fine-tuning as well as nine state-of-the-art (SoTA) adapter architectures. Our analysis reveals performance differences across adapter architectures, highlighting their ability to achieve comparable or better performance relative to fine-tuning at a fraction of the training time. Similar results are observed on the new classification task, further supporting our findings and demonstrating adapters as efficient and flexible alternatives to fine-tuning. This study provides valuable insights and guidelines for selecting and implementing adapters in diverse natural language processing (NLP) applications.

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Cited by 1 Pith paper

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  1. DP-FedLoRA: Privacy-Enhanced Federated Fine-Tuning for On-Device Large Language Models

    cs.CR 2025-09 reject novelty 3.0

    DP-FedLoRA clips and adds Gaussian noise to per-client LoRA matrices in federated LLM fine-tuning, claiming unbiased updates and bounded variance, but the privacy calibration and experiments have significant gaps.