Optimal Randomized First-Order Methods for Least-Squares Problems
Jonathan Lacotte, Mert Pilanci
Abstract
We provide an exact analysis of a class of randomized algorithms for solving overdetermined least-squares problems. We consider first-order methods, where the gradients are pre-conditioned by an approximation of the Hessian, based on a subspace embedding of the data matrix. This class of algorithms encompasses several randomized methods among the fastest solvers for least-squares problems. We focus on two classical embeddings, namely, Gaussian projections and subsampled randomized Hadamard transforms (SRHT). Our key technical innovation is the derivation of the limiting spectral density of SRHT embeddings. Leveraging this novel result, we derive the family of normalized orthogonal polynomials of the SRHT density and we find the optimal pre-conditioned first-order method along with its rate of convergence. Our analysis of Gaussian embeddings proceeds similarly, and leverages classical random matrix theory results. In particular, we show that for a given sketch size, SRHT embeddings exhibits a faster rate of convergence than Gaussian embeddings. Then, we propose a new algorithm by optimizing the computational complexity over the choice of the sketching dimension. To our knowledge, our resulting algorithm yields the best known complexity for solving least-squares problems with no condition number dependence.
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Install the CLIlune papers fulltext 7d7b7d9c-2055-4863-b734-e6ea10759e2cCited by top-tier papers11
- Debiasing Distributed Second Order Optimization with Surrogate Sketching and Scaled RegularizationMichal Derezinski, Burak Bartan, Mert Pilanci, Michael W. MahoneyNeurIPS 2020 · 28 citations
- Effective Dimension Adaptive Sketching Methods for Faster Regularized Least-Squares OptimizationJonathan Lacotte, Mert PilanciNeurIPS 2020 · 26 citations
- Acceleration through spectral density estimationFabian Pedregosa, Damien ScieurICML 2020 · 23 citations
- Optimal Iterative Sketching Methods with the Subsampled Randomized Hadamard TransformJonathan Lacotte, Sifan Liu, Edgar Dobriban, Mert PilanciNeurIPS 2020 · 15 citations
- Training Quantized Neural Networks to Global Optimality via Semidefinite ProgrammingBurak Bartan, Mert PilanciICML 2021 · 10 citations
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