Isometric Gaussian Process Latent Variable Model for Dissimilarity Data
Martin Jørgensen, Søren Hauberg
Abstract
We present a probabilistic model where the latent variable respects both the distances and the topology of the modeled data. The model leverages the Riemannian geometry of the generated manifold to endow the latent space with a well-defined stochastic distance measure, which is modeled locally as Nakagami distributions. These stochastic distances are sought to be as similar as possible to observed distances along a neighborhood graph through a censoring process. The model is inferred by variational inference based on observations of pairwise distances. We demonstrate how the new model can encode invariances in the learned manifolds.
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- Matérn Gaussian Processes on Riemannian ManifoldsViacheslav Borovitskiy, Alexander Terenin, Peter Mostowsky, Marc Peter DeisenrothNeurIPS 2020 · 151 citations
- Rate-distortion optimization guided autoencoder for isometric embedding in Euclidean latent spaceKeizo Kato, Jing Zhou, Tomotake Sasaki, Akira NakagawaICML 2020 · 16 citations
- Learning Weighted Submanifolds With Variational Autoencoders and Riemannian Variational AutoencodersNina Miolane, Susan P. HolmesCVPR 2020
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