Data Amplification: A Unified and Competitive Approach to Property Estimation
Abstract
Estimating properties of discrete distributions is a fundamental problem in statistical learning. We design the first unified, linear-time, competitive, property estimator that for a wide class of properties and for all underlying distributions uses just samples to achieve the performance attained by the empirical estimator with samples. This provides off-the-shelf, distribution-independent, "amplification" of the amount of data available relative to common-practice estimators. We illustrate the estimator's practical advantages by comparing it to existing estimators for a wide variety of properties and distributions. In most cases, its performance with samples is even as good as that of the empirical estimator with samples, and for essentially all properties, its performance is comparable to that of the best existing estimator designed specifically for that property.
Cite
@article{arxiv.1904.00070,
title = {Data Amplification: A Unified and Competitive Approach to Property Estimation},
author = {Yi Hao and Alon Orlitsky and Ananda T. Suresh and Yihong Wu},
journal= {arXiv preprint arXiv:1904.00070},
year = {2019}
}
Comments
In NeurIPS 2018