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BAPO: Base-Anchored Preference Optimization for Overcoming Forgetting in Large Language Models Personalization

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arxiv 2407.00693 v2 pith:MG5U572U submitted 2024-06-30 cs.AI cs.CLcs.LG

classification cs.AIcs.CLcs.LG
keywords bapoknowledgepreferencepreferencesalignmentmodelmodelsoptimization
verification ladder T0 review T1 audit T2 compute T3 formal
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While learning to align Large Language Models (LLMs) with human preferences has shown remarkable success, aligning these models to meet the diverse user preferences presents further challenges in preserving previous knowledge. This paper examines the impact of personalized preference optimization on LLMs, revealing that the extent of knowledge loss varies significantly with preference heterogeneity. Although previous approaches have utilized the KL constraint between the reference model and the policy model, we observe that they fail to maintain general knowledge and alignment when facing personalized preferences. To this end, we introduce Base-Anchored Preference Optimization (BAPO), a simple yet effective approach that utilizes the initial responses of reference model to mitigate forgetting while accommodating personalized alignment. BAPO effectively adapts to diverse user preferences while minimally affecting global knowledge or general alignment. Our experiments demonstrate the efficacy of BAPO in various setups.

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  1. Aligning VLM Assistants with Personalized Situated Cognition

    cs.AI 2025-06 conditional novelty 6.0 of 10

    The authors present PCogAlignBench, an 18k-sample benchmark of visual scenes with role-based users, and PCogAlign, a framework using a cognition-aware reward model to produce responses aligned with each user's roles.

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