English

WarmFed: Federated Learning with Warm-Start for Globalization and Personalization Via Personalized Diffusion Models

Machine Learning 2026-03-24 v1 Computer Vision and Pattern Recognition

Abstract

Federated Learning (FL) stands as a prominent distributed learning paradigm among multiple clients to achieve a unified global model without privacy leakage. In contrast to FL, Personalized federated learning aims at serving for each client in achieving persoanlized model. However, previous FL frameworks have grappled with a dilemma: the choice between developing a singular global model at the server to bolster globalization or nurturing personalized model at the client to accommodate personalization. Instead of making trade-offs, this paper commences its discourse from the pre-trained initialization, obtaining resilient global information and facilitating the development of both global and personalized models. Specifically, we propose a novel method called WarmFed to achieve this. WarmFed customizes Warm-start through personalized diffusion models, which are generated by local efficient fine-tunining (LoRA). Building upon the Warm-Start, we advance a server-side fine-tuning strategy to derive the global model, and propose a dynamic self-distillation (DSD) to procure more resilient personalized models simultaneously. Comprehensive experiments underscore the substantial gains of our approach across both global and personalized models, achieved within just one-shot and five communication(s).

Keywords

Cite

@article{arxiv.2503.03110,
  title  = {WarmFed: Federated Learning with Warm-Start for Globalization and Personalization Via Personalized Diffusion Models},
  author = {Tao Feng and Jie Zhang and Xiangjian Li and Rong Huang and Huashan Liu and Zhijie Wang},
  journal= {arXiv preprint arXiv:2503.03110},
  year   = {2026}
}
R2 v1 2026-06-28T22:07:14.493Z