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Spectrum-Aware Parameter Efficient Fine-Tuning for Diffusion Models

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arxiv 2405.21050 v1 pith:O37JTEOE submitted 2024-05-31 cs.CV cs.LG

classification cs.CVcs.LG
keywords adaptationmodelsspectrum-awareachievecapacitydiffusionefficiencyefficient
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Adapting large-scale pre-trained generative models in a parameter-efficient manner is gaining traction. Traditional methods like low rank adaptation achieve parameter efficiency by imposing constraints but may not be optimal for tasks requiring high representation capacity. We propose a novel spectrum-aware adaptation framework for generative models. Our method adjusts both singular values and their basis vectors of pretrained weights. Using the Kronecker product and efficient Stiefel optimizers, we achieve parameter-efficient adaptation of orthogonal matrices. We introduce Spectral Orthogonal Decomposition Adaptation (SODA), which balances computational efficiency and representation capacity. Extensive evaluations on text-to-image diffusion models demonstrate SODA's effectiveness, offering a spectrum-aware alternative to existing fine-tuning methods.

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  1. Noise Consistency Regularization for Improved Subject-Driven Image Synthesis

    cs.GR 2025-06 conditional novelty 6.0 of 10

    Adding consistency-to-pretrained and multiplicative-noise consistency losses to fine-tuning improves subject identity and background diversity over DreamBooth on a 30-subject benchmark.

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