Low-Precision Random Fourier Features for Memory-Constrained Kernel Approximation

October 31, 2018 ยท Declared Dead ยท ๐Ÿ› International Conference on Artificial Intelligence and Statistics

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Authors Jian Zhang, Avner May, Tri Dao, Christopher Rรฉ arXiv ID 1811.00155 Category cs.LG: Machine Learning Cross-listed cs.AI, stat.ML Citations 29 Venue International Conference on Artificial Intelligence and Statistics Last Checked 5 months ago
Abstract
We investigate how to train kernel approximation methods that generalize well under a memory budget. Building on recent theoretical work, we define a measure of kernel approximation error which we find to be more predictive of the empirical generalization performance of kernel approximation methods than conventional metrics. An important consequence of this definition is that a kernel approximation matrix must be high rank to attain close approximation. Because storing a high-rank approximation is memory intensive, we propose using a low-precision quantization of random Fourier features (LP-RFFs) to build a high-rank approximation under a memory budget. Theoretically, we show quantization has a negligible effect on generalization performance in important settings. Empirically, we demonstrate across four benchmark datasets that LP-RFFs can match the performance of full-precision RFFs and the Nystrรถm method, with 3x-10x and 50x-460x less memory, respectively.
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