Paper discusses new stochastic algorithms for sparse signal recovery.
arXiv research
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New findings on community recovery in SBM with many communities.
Unified framework for pattern recovery in penalized and thresholded estimation.
Paper finds exact recovery threshold in general hypergraph model.
Guarantees sparse recovery for neural networks with iterative hard thresholding.
Improves graph recovery in Gaussian graphical modeling.
New findings support a new community recovery threshold for Stochastic Block Model with many communities.
Nuclear norm minimization (NNM) has recently gained significant attention for its use in rank minimization problems. Similar to compressed sensing, using null space characterizations, recovery thresholds for NNM have been studied in \cite{arxiv,Recht_Xu_Hassibi}. However simulations show that the thresholds are far fro…
Sharp threshold for exact recovery in non-uniform hypergraph stochastic block model.
This paper sets thresholds for recovering vertex correspondences in partially correlated graphs.
In this paper, we investigate a multivariate multi-response (MVMR) linear regression problem, which contains multiple linear regression models with differently distributed design matrices, and different regression and output vectors. The goal is to recover the support union of all regression vectors using -reg…
Detection of dense cycles in graphs reveals a gap between easy detection and hard recovery.
We study graph matching with correlated Gaussian features and find thresholds for exact recovery.
This study optimizes multi-modal learning thresholds and algorithms in high dimensions.
New model for community detection with side information improves recovery accuracy.
The stochastic block model (SBM) is a random graph model with different group of vertices connecting differently. It is widely employed as a canonical model to study clustering and community detection, and provides a fertile ground to study the information-theoretic and computational tradeoffs that arise in combinatori…
Study on sparse recovery with mixed-quality data, establishing sample-size conditions.
The thresholded feature has recently emerged as an extremely efficient, yet rough empirical approximation, of the time-consuming sparse coding inference process. Such an approximation has not yet been rigorously examined, and standard dictionaries often lead to non-optimal performance when used for computing thresholde…
In this letter, we propose an algorithm for recovery of sparse and low rank components of matrices using an iterative method with adaptive thresholding. In each iteration, the low rank and sparse components are obtained using a thresholding operator. This algorithm is fast and can be implemented easily. We compare it w…
New algorithm detects communities even with corrupted data, reaching Kesten-Stigum threshold.
We determine the information-theoretic cutoff value on separation of cluster centers for exact recovery of cluster labels in a -component Gaussian mixture model with equal cluster sizes. Moreover, we show that a semidefinite programming (SDP) relaxation of the -means clustering method achieves such sharp threshol…
In recent years, unfolding iterative algorithms as neural networks has become an empirical success in solving sparse recovery problems. However, its theoretical understanding is still immature, which prevents us from fully utilizing the power of neural networks. In this work, we study unfolded ISTA (Iterative Shrinkage…
New algorithm achieves almost exact graph matching in almost quadratic time.
SyncRank recovers global ranking from noisy comparisons with theoretical guarantees.
Resolving a conjecture of Abbe, Bandeira and Hall, the authors have recently shown that the semidefinite programming (SDP) relaxation of the maximum likelihood estimator achieves the sharp threshold for exactly recovering the community structure under the binary stochastic block model of two equal-sized clusters. The s…
This paper establishes conditions for sparse signal recovery with sparse measurements.
Study reveals efficient recovery of multi-modal signals via Bayesian methods and sequential learning.
Paper explores limits of high-order clustering with planted structures.
The binary symmetric stochastic block model deals with a random graph of vertices partitioned into two equal-sized clusters, such that each pair of vertices is connected independently with probability within clusters and across clusters. In the asymptotic regime of and for fixe…
The support recovery problem consists of determining a sparse subset of a set of variables that is relevant in generating a set of observations, and arises in a diverse range of settings such as compressive sensing, and subset selection in regression, and group testing. In this paper, we take a unified approach to supp…
A hierarchical model shows how scaling laws emerge from sequential feature recovery.
Exact recovery method for community detection in Gaussian mixtures with dependent noise.
Azure (the cloud service provided by Microsoft) is composed of physical computing units which are called nodes. These nodes are controlled by a software component called Fabric Controller (FC), which can consider the nodes to be in one of many different states such as Ready, Unhealthy, Booting, etc. Some of these state…
Recovery of low-rank matrices from a small number of linear measurements is now well-known to be possible under various model assumptions on the measurements. Such results demonstrate robustness and are backed with provable theoretical guarantees. However, extensions to tensor recovery have only recently began to be st…
Paper analyzes IHT's performance in sparse recovery problems.
Optimizes loan recovery timing across various portfolios.
Paper uses SDP for community detection with side information.
Simultaneous orthogonal matching pursuit (SOMP) and block OMP (BOMP) are two widely used techniques for sparse support recovery in multiple measurement vector (MMV) and block sparse (BS) models respectively. For optimal performance, both SOMP and BOMP require \textit{a priori} knowledge of signal sparsity or noise vari…
QAOA matches classical tensor power iteration in spiked tensor model recovery.
Binary Iterative Hard Thresholding converges with optimal number of 1-bit measurements.
In this paper, we consider the problem of compressed sensing where the goal is to recover almost all the sparse vectors using a small number of fixed linear measurements. For this problem, we propose a novel partial hard-thresholding operator that leads to a general family of iterative algorithms. While one extreme of …
This paper describes a fast algorithm for recovering low-rank matrices from their linear measurements contaminated with Poisson noise: the Poisson noise Maximum Likelihood Singular Value thresholding (PMLSV) algorithm. We propose a convex optimization formulation with a cost function consisting of the sum of a likeliho…
Study community detection in multi-view data with various types of information.
Modern scientific instruments produce vast amounts of data, which can overwhelm the processing ability of computer systems. Lossy compression of data is an intriguing solution, but comes with its own drawbacks, such as potential signal loss, and the need for careful optimization of the compression ratio. In this work, …
Community detection is considered for a stochastic block model graph of n vertices, with K vertices in the planted community, edge probability p for pairs of vertices both in the community, and edge probability q for other pairs of vertices. The main focus of the paper is on weak recovery of the community based on the …
Study of Langevin dynamics for tensor PCA recovery in high dimensions.
Nonconvex matrix recovery is known to contain no spurious local minima under a restricted isometry property (RIP) with a sufficiently small RIP constant . If is too large, however, then counterexamples containing spurious local minima are known to exist. In this paper, we introduce a proof technique that is capa…
Sharp thresholds and contiguity for community detection in contextual SBM.