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Wide-minima Density Hypothesis and the Explore-Exploit Learning Rate Schedule

About

Several papers argue that wide minima generalize better than narrow minima. In this paper, through detailed experiments that not only corroborate the generalization properties of wide minima, we also provide empirical evidence for a new hypothesis that the density of wide minima is likely lower than the density of narrow minima. Further, motivated by this hypothesis, we design a novel explore-exploit learning rate schedule. On a variety of image and natural language datasets, compared to their original hand-tuned learning rate baselines, we show that our explore-exploit schedule can result in either up to 0.84% higher absolute accuracy using the original training budget or up to 57% reduced training time while achieving the original reported accuracy. For example, we achieve state-of-the-art (SOTA) accuracy for IWSLT'14 (DE-EN) dataset by just modifying the learning rate schedule of a high performing model.

Nikhil Iyer, V Thejas, Nipun Kwatra, Ramachandran Ramjee, Muthian Sivathanu• 2020

Related benchmarks

TaskDatasetResultRank
Image ClassificationCIFAR-10 (test)
Accuracy95.26
3381
Machine TranslationWMT En-De 2014 (test)
BLEU27.53
379
Question AnsweringSQuAD v1.1 (test)
F1 Score91.51
260
Image ClassificationImageNet (test)--
235
Machine TranslationIWSLT De-En 2014 (test)
BLEU37.78
146
Machine TranslationIWSLT German-to-English '14 (test)
BLEU Score36.6
110
Machine TranslationWMT En-De '14
BLEU27.53
89
Machine TranslationIWSLT14 DE-EN
BLEU Score35.53
22
Machine TranslationIWSLT (test)--
19
Machine TranslationIWSLT'14 DE-EN (val)
Validation PPL4.13
12
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