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Axiomatic Preference Modeling for Longform Question Answering (arxiv.org)
1 point by PaulHoule on Dec 11, 2023 | hide | past | pdf | discuss on HN

In plain words: Clear rules for what makes one long answer better than another were turned into practice pairs that train a small scoring model. The 220-million-parameter scorer matched human preference judgments more often than GPT-4.

Abstract

The remarkable abilities of large language models (LLMs) like GPT-4 partially stem from post-training processes like Reinforcement Learning from Human Feedback (RLHF) involving human preferences encoded in a reward model. However, these reward models (RMs) often lack direct knowledge of why, or under what principles, the preferences annotations were made. In this study, we identify principles that guide RMs to better align with human preferences, and then develop an axiomatic framework to generate a rich variety of preference signals to uphold them. We use these axiomatic signals to train a model for scoring answers to longform questions. Our approach yields a Preference Model with only about 220M parameters that agrees with gold human-annotated preference labels more often than GPT-4. The contributions of this work include: training a standalone preference model that can score human- and LLM-generated answers on the same scale; developing an axiomatic framework for generating training data pairs tailored to certain principles; and showing that a small amount of axiomatic signals can help small models outperform GPT-4 in preference scoring. We release our model on huggingface: https://huggingface.co/corbyrosset/axiomatic_preference_model

Corby Rosset, Guoqing Zheng, Victor Dibia, Ahmed Awadallah, Paul Bennett
arXiv:2312.02206 · cs.AI, cs.CL · submitted Dec 2, 2023
abstract · pdf · html · Accepted to EMNLP 2023

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