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Simple ReFlow: Improved Techniques for Fast Flow Models
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Simple ReFlow: Improved Techniques for Fast Flow Models
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Diffusion and flow-matching models achieve remarkable generative performance but at the cost of many sampling steps, this slows inference and limits applicability to time-critical tasks. The ReFlow procedure can accelerate sampling by straightening generation trajectories. However, ReFlow is an iterative procedure, typically requiring training on simulated data, and results in reduced sample quality. To mitigate sample deterioration, we examine the design space of ReFlow and highlight potential pitfalls in prior heuristic practices. We then propose seven improvements for training dynamics, learning and inference, which are verified with thorough ablation studies on CIFAR10 $32 \times 32$, AFHQv2 $64 \times 64$, and FFHQ $64 \times 64$. Combining all our techniques, we achieve state-of-the-art FID scores (without / with guidance, resp.) for fast generation via neural ODEs: $2.23$ / $1.98$ on CIFAR10, $2.30$ / $1.91$ on AFHQv2, $2.84$ / $2.67$ on FFHQ, and $3.49$ / $1.74$ on ImageNet-64, all with merely $9$ neural function evaluations.
Forward citations
Cited by 2 Pith papers
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IB-Flow: Information Bottleneck-Guided CFG Distillation for Few-Step Text-to-Image Generation
Information-Bottleneck closed forms for adaptive CFG supervisor timestep and strength yield SOTA 2-NFE text-to-image fidelity across FLUX, OpenUni, and Qwen-Image.
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IB-Flow: Information Bottleneck-Guided CFG Distillation for Few-Step Text-to-Image Generation
IB-Flow adds a norm-based injection-time selector and an SNR-decayed guidance schedule to CFG distillation, reporting improved 2-step text-to-image scores on three backbones.
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