Optimization can force BLIP, Flux, Whisper, and Chatterbox to hit textual targets, but the inverted inputs are perceptually incoherent and the recovered text embeddings are semantically meaningless.
Landscape Learning for Neural Network Inversion
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abstract
Many machine learning methods operate by inverting a neural network at inference time, which has become a popular technique for solving inverse problems in computer vision, robotics, and graphics. However, these methods often involve gradient descent through a highly non-convex loss landscape, causing the optimization process to be unstable and slow. We introduce a method that learns a loss landscape where gradient descent is efficient, bringing massive improvement and acceleration to the inversion process. We demonstrate this advantage on a number of methods for both generative and discriminative tasks, including GAN inversion, adversarial defense, and 3D human pose reconstruction.
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Investigating the Invertibility of Multimodal Latent Spaces: Limitations of Optimization-Based Methods
Optimization can force BLIP, Flux, Whisper, and Chatterbox to hit textual targets, but the inverted inputs are perceptually incoherent and the recovered text embeddings are semantically meaningless.