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Learning Flow Fields in Attention for Controllable Person Image Generation

About

Controllable person image generation aims to generate a person image conditioned on reference images, allowing precise control over the person's appearance or pose. However, prior methods often distort fine-grained textural details from the reference image, despite achieving high overall image quality. We attribute these distortions to inadequate attention to corresponding regions in the reference image. To address this, we thereby propose learning flow fields in attention (Leffa), which explicitly guides the target query to attend to the correct reference key in the attention layer during training. Specifically, it is realized via a regularization loss on top of the attention map within a diffusion-based baseline. Our extensive experiments show that Leffa achieves state-of-the-art performance in controlling appearance (virtual try-on) and pose (pose transfer), significantly reducing fine-grained detail distortion while maintaining high image quality. Additionally, we show that our loss is model-agnostic and can be used to improve the performance of other diffusion models.

Zijian Zhou, Shikun Liu, Xiao Han, Haozhe Liu, Kam Woh Ng, Tian Xie, Yuren Cong, Hang Li, Mengmeng Xu, Juan-Manuel P\'erez-R\'ua, Aditya Patel, Tao Xiang, Miaojing Shi, Sen He• 2024

Related benchmarks

TaskDatasetResultRank
Virtual Try-OnVITON-HD paired
LPIPS0.048
58
Virtual Try-OnVITON-HD unpaired
FID8.52
50
Virtual Try-OnDressCode Dresses (unpaired)
FID4.48
25
Virtual Try-OnVITON paired HD (test)
FID4.54
19
Virtual Try-OnVITON-HD high-resolution (test)
FID10.446
18
Virtual Try-OnDressCode Paired
SSIM92.4
16
Virtual Try-OnVITON-HD unpaired 1.0 (test)
FID8.52
14
Virtual Try-OnVITON-HD Paired 1024x768 (test)
SSIM87.2
14
Virtual Try-OnVITON-HD Unpaired 1024x768 (test)
FID9.442
14
Virtual Try-OnTstars-VTON Single-Garment 1.0 (test)
Overall Score6.048
12
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