Accelerated Sinkhorn Algorithms for Partial Optimal Transport
Nghia Truong, Qui Pham, Quang Nguyen, Dung Luong, Mai Tran
Abstract
Partial Optimal Transport (POT) addresses the problem of transporting only a fraction of the total mass between two distributions, making it suitable when marginals have unequal size or contain outliers. While Sinkhorn-based methods are widely used, their complexity bounds for POT remain suboptimal and can limit scalability. We introduce Accelerated Sinkhorn for POT (ASPOT), which integrates alternating minimization with Nesterov-style acceleration in the POT setting, yielding a complexity of $\mathcal{O}(n^{7/3}\varepsilon^{-5/3})$. We also show that an informed choice of the entropic parameter $γ$ improves rates for the classical Sinkhorn method. Experiments on real-world applications validate our theories and demonstrate the favorable performance of our proposed methods.
BibTeX
@inproceedings{icassp2026_acceleratedsinkh,
title = {Accelerated Sinkhorn Algorithms for Partial Optimal Transport},
author = {Nghia Truong and Qui Pham and Quang Nguyen and Dung Luong and Mai Tran},
booktitle = {ICASSP 2026},
year = {2026}
}