NeurIPS 2022accept20 citations

Subquadratic Kronecker Regression with Applications to Tensor Decomposition

Matthew Fahrbach, Gang Fu, Mehrdad Ghadiri

Abstract

Kronecker regression is a highly-structured least squares problem $\min_{\mathbf{x}} \lVert \mathbf{K}\mathbf{x} - \mathbf{b} \rVert_{2}^2$, where the design matrix $\mathbf{K} = \mathbf{A}^{(1)} \otimes \cdots \otimes \mathbf{A}^{(N)}$ is a Kronecker product of factor matrices. This regression problem arises in each step of the widely-used alternating least squares (ALS) algorithm for computing the Tucker decomposition of a tensor. We present the first subquadratic-time algorithm for solving Kronecker regression to a $(1+\varepsilon)$-approximation that avoids the exponential term $O(\varepsilon^{-N})$ in the running time. Our techniques combine leverage score sampling and iterative methods. By extending our approach to block-design matrices where one block is a Kronecker product, we also achieve subquadratic-time algorithms for (1) Kronecker ridge regression and (2) updating the factor matrix of a Tucker decomposition in ALS, which is not a pure Kronecker regression problem, thereby improving the running time of all steps of Tucker ALS. We demonstrate the speed and accuracy of this Kronecker regression algorithm on synthetic data and real-world image tensors.

Linear RegressionKronecker ProductLeverage Score SamplingSketchingIterative MethodsTensor Decomposition
BibTeX
@inproceedings{
fahrbach2022subquadratic,
title={Subquadratic Kronecker Regression with Applications to Tensor Decomposition},
author={Matthew Fahrbach and Gang Fu and Mehrdad Ghadiri},
booktitle={Advances in Neural Information Processing Systems},
editor={Alice H. Oh and Alekh Agarwal and Danielle Belgrave and Kyunghyun Cho},
year={2022},
url={https://openreview.net/forum?id=lbQTJN42uea}
}
Subquadratic Kronecker Regression with Applications to Tensor Decomposition · NeurIPS 2022