Aligner: Efficient Alignment by Learning to Correct

Fuente: arXiv
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Hauptverfasser: Ji, Jiaming, Chen, Boyuan, Lou, Hantao, Hong, Donghai, Zhang, Borong, Pan, Xuehai, Dai, Juntao, Qiu, Tianyi, Yang, Yaodong
Format: Preprint
Veröffentlicht: 2024
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author Ji, Jiaming
Chen, Boyuan
Lou, Hantao
Hong, Donghai
Zhang, Borong
Pan, Xuehai
Dai, Juntao
Qiu, Tianyi
Yang, Yaodong
author_facet Ji, Jiaming
Chen, Boyuan
Lou, Hantao
Hong, Donghai
Zhang, Borong
Pan, Xuehai
Dai, Juntao
Qiu, Tianyi
Yang, Yaodong
contents With the rapid development of large language models (LLMs) and ever-evolving practical requirements, finding an efficient and effective alignment method has never been more critical. However, the tension between the complexity of current alignment methods and the need for rapid iteration in deployment scenarios necessitates the development of a model-agnostic alignment approach that can operate under these constraints. In this paper, we introduce Aligner, a novel and simple alignment paradigm that learns the correctional residuals between preferred and dispreferred answers using a small model. Designed as a model-agnostic, plug-and-play module, Aligner can be directly applied to various open-source and API-based models with only one-off training, making it suitable for rapid iteration. Notably, Aligner can be applied to any powerful, large-scale upstream models. Moreover, it can even iteratively bootstrap the upstream models using corrected responses as synthetic human preference data, breaking through the model's performance ceiling. Our experiments demonstrate performance improvements by deploying the same Aligner model across 11 different LLMs, evaluated on the 3H dimensions (helpfulness, harmlessness, and honesty). Specifically, Aligner-7B has achieved an average improvement of 68.9% in helpfulness and 23.8% in harmlessness across the tested LLMs while also effectively reducing hallucination. In the Alpaca-Eval leaderboard, stacking Aligner-2B on GPT-4 Turbo improved its LC Win Rate from 55.0% to 58.3%, surpassing GPT-4 Omni's 57.5% Win Rate (community report).
format Preprint
id arxiv_https___arxiv_org_abs_2402_02416
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Aligner: Efficient Alignment by Learning to Correct
Ji, Jiaming
Chen, Boyuan
Lou, Hantao
Hong, Donghai
Zhang, Borong
Pan, Xuehai
Dai, Juntao
Qiu, Tianyi
Yang, Yaodong
Computation and Language
Artificial Intelligence
Machine Learning
With the rapid development of large language models (LLMs) and ever-evolving practical requirements, finding an efficient and effective alignment method has never been more critical. However, the tension between the complexity of current alignment methods and the need for rapid iteration in deployment scenarios necessitates the development of a model-agnostic alignment approach that can operate under these constraints. In this paper, we introduce Aligner, a novel and simple alignment paradigm that learns the correctional residuals between preferred and dispreferred answers using a small model. Designed as a model-agnostic, plug-and-play module, Aligner can be directly applied to various open-source and API-based models with only one-off training, making it suitable for rapid iteration. Notably, Aligner can be applied to any powerful, large-scale upstream models. Moreover, it can even iteratively bootstrap the upstream models using corrected responses as synthetic human preference data, breaking through the model's performance ceiling. Our experiments demonstrate performance improvements by deploying the same Aligner model across 11 different LLMs, evaluated on the 3H dimensions (helpfulness, harmlessness, and honesty). Specifically, Aligner-7B has achieved an average improvement of 68.9% in helpfulness and 23.8% in harmlessness across the tested LLMs while also effectively reducing hallucination. In the Alpaca-Eval leaderboard, stacking Aligner-2B on GPT-4 Turbo improved its LC Win Rate from 55.0% to 58.3%, surpassing GPT-4 Omni's 57.5% Win Rate (community report).
title Aligner: Efficient Alignment by Learning to Correct
topic Computation and Language
Artificial Intelligence
Machine Learning
url https://arxiv.org/abs/2402.02416