Score: 2

Source-Guided Flow Matching

Published: August 20, 2025 | arXiv ID: 2508.14807v1

By: Zifan Wang , Alice Harting , Matthieu Barreau and more

Potential Business Impact:

Makes AI create better pictures by changing its starting point.

Business Areas:
Guides Media and Entertainment

Guidance of generative models is typically achieved by modifying the probability flow vector field through the addition of a guidance field. In this paper, we instead propose the Source-Guided Flow Matching (SGFM) framework, which modifies the source distribution directly while keeping the pre-trained vector field intact. This reduces the guidance problem to a well-defined problem of sampling from the source distribution. We theoretically show that SGFM recovers the desired target distribution exactly. Furthermore, we provide bounds on the Wasserstein error for the generated distribution when using an approximate sampler of the source distribution and an approximate vector field. The key benefit of our approach is that it allows the user to flexibly choose the sampling method depending on their specific problem. To illustrate this, we systematically compare different sampling methods and discuss conditions for asymptotically exact guidance. Moreover, our framework integrates well with optimal flow matching models since the straight transport map generated by the vector field is preserved. Experimental results on synthetic 2D benchmarks, image datasets, and physics-informed generative tasks demonstrate the effectiveness and flexibility of the proposed framework.

Country of Origin
πŸ‡ΊπŸ‡Έ πŸ‡ΈπŸ‡ͺ United States, Sweden

Page Count
26 pages

Category
Computer Science:
Machine Learning (CS)