arXiv · 2610.05388
Semi-Supervised Kernel Ridge Fréchet Regression
Abstract
Fréchet regression provides a framework for predicting random object-valued responses by minimizing the conditional expected squared distances. We propose semi-supervised kernel ridge Fréchet regression (SS-KRFR) to exploit unlabeled covariates when labeled samples are scarce. The method learns kernel spectral features from both labeled and unlabeled covariates, then uses labeled responses to estimate the conditional Fréchet function by ridge regression. We derive prediction error bounds that distinguish the roles of labeled and unlabeled samples, and establish polynomial convergence rates under suitable conditions. Under additional kernel assumptions, a sharper analysis relaxes the sample-size requirements for learning the features. We also develop hybrid methods that combine features, predictions, or both from models fitted with and without unlabeled covariates, and establish hybrid stability uniformly over mixing weights in Hadamard spaces at common tuning, with a separate rate guarantee for prediction mixing. Simulations and an EEG application show semi-supervised gain and improvements over competing Fréchet regression methods in several settings.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Jaehee Seo, Kwangho Kim, Jisu Kim. 2026-10-04. Semi-Supervised Kernel Ridge Fréchet Regression. https://arxiv.org/abs/2610.05388
Cite the original work for its findings. Save a collection to share your selection of sources.