Conditional LoRA Parameter Generation

Fuente: arXiv
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Autores principales: Jin, Xiaolong, Wang, Kai, Tang, Dongwen, Zhao, Wangbo, Zhou, Yukun, Tang, Junshu, You, Yang
Formato: Preprint
Publicado: 2024
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author Jin, Xiaolong
Wang, Kai
Tang, Dongwen
Zhao, Wangbo
Zhou, Yukun
Tang, Junshu
You, Yang
author_facet Jin, Xiaolong
Wang, Kai
Tang, Dongwen
Zhao, Wangbo
Zhou, Yukun
Tang, Junshu
You, Yang
contents Generative models have achieved remarkable success in image, video, and text domains. Inspired by this, researchers have explored utilizing generative models to generate neural network parameters. However, these efforts have been limited by the parameter size and the practicality of generating high-performance parameters. In this paper, we propose COND P-DIFF, a novel approach that demonstrates the feasibility of controllable high-performance parameter generation, particularly for LoRA (Low-Rank Adaptation) weights, during the fine-tuning process. Specifically, we employ an autoencoder to extract efficient latent representations for parameters. We then train a conditional latent diffusion model to synthesize high-performing model parameters from random noise based on specific task conditions. Experimental results in both computer vision and natural language processing domains consistently demonstrate that COND P-DIFF can generate high-performance parameters conditioned on the given task. Moreover, we observe that the parameter distribution generated by COND P-DIFF exhibits differences compared to the distribution obtained through normal optimization methods, indicating a certain level of generalization capability. Our work paves the way for further exploration of condition-driven parameter generation, offering a promising direction for task-specific adaptation of neural networks.
format Preprint
id arxiv_https___arxiv_org_abs_2408_01415
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Conditional LoRA Parameter Generation
Jin, Xiaolong
Wang, Kai
Tang, Dongwen
Zhao, Wangbo
Zhou, Yukun
Tang, Junshu
You, Yang
Artificial Intelligence
Machine Learning
Generative models have achieved remarkable success in image, video, and text domains. Inspired by this, researchers have explored utilizing generative models to generate neural network parameters. However, these efforts have been limited by the parameter size and the practicality of generating high-performance parameters. In this paper, we propose COND P-DIFF, a novel approach that demonstrates the feasibility of controllable high-performance parameter generation, particularly for LoRA (Low-Rank Adaptation) weights, during the fine-tuning process. Specifically, we employ an autoencoder to extract efficient latent representations for parameters. We then train a conditional latent diffusion model to synthesize high-performing model parameters from random noise based on specific task conditions. Experimental results in both computer vision and natural language processing domains consistently demonstrate that COND P-DIFF can generate high-performance parameters conditioned on the given task. Moreover, we observe that the parameter distribution generated by COND P-DIFF exhibits differences compared to the distribution obtained through normal optimization methods, indicating a certain level of generalization capability. Our work paves the way for further exploration of condition-driven parameter generation, offering a promising direction for task-specific adaptation of neural networks.
title Conditional LoRA Parameter Generation
topic Artificial Intelligence
Machine Learning
url https://arxiv.org/abs/2408.01415