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Asymptotic Statistical Analysis of Sparse Group LASSO via Approximate Message Passing Algorithm

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arxiv 2107.01266 v2 pith:PDPWREIM submitted 2021-07-02 math.ST stat.MEstat.TH

classification math.STstat.MEstat.TH
keywords groupinformationlassosparsealgorithmanalysisapproximateeffects
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abstract

Sparse Group LASSO (SGL) is a regularized model for high-dimensional linear regression problems with grouped covariates. SGL applies $l_1$ and $l_2$ penalties on the individual predictors and group predictors, respectively, to guarantee sparse effects both on the inter-group and within-group levels. In this paper, we apply the approximate message passing (AMP) algorithm to efficiently solve the SGL problem under Gaussian random designs. We further use the recently developed state evolution analysis of AMP to derive an asymptotically exact characterization of SGL solution. This allows us to conduct multiple fine-grained statistical analyses of SGL, through which we investigate the effects of the group information and $\gamma$ (proportion of $\ell_1$ penalty). With the lens of various performance measures, we show that SGL with small $\gamma$ benefits significantly from the group information and can outperform other SGL (including LASSO) or regularized models which do not exploit the group information, in terms of the recovery rate of signal, false discovery rate and mean squared error.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Multi-Environment GLAMP: Approximate Message Passing for Transfer Learning with Applications to Lasso-based Estimators

    math.ST 2025-05 conditional novelty 6.0 of 10

    Multi-environment GLAMP yields exact asymptotic risk formulas for three Lasso-based transfer learning estimators under Gaussian designs, validated by simulations.

  2. Approximate Message Passing for Multi-Preamble Detection in OTFS Random Access

    eess.SP 2025-09 conditional novelty 5.0 of 10

    A complex-domain AMP algorithm with a denoiser combining elementwise and group sparsity is proposed for OTFS preamble detection, achieving simulated gains over existing methods.

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