ICASSP 2019accepted0 citations

Solving Quadratic Equations via Amplitude-based Nonconvex Optimization

Vincent Monardo, Yuanxin Li, Yuejie Chi

Abstract

In many signal processing tasks, one seeks to recover an rcolumn matrix object X ϵ ℂ <sup xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">n×r</sup> from a set of nonnegative quadratic measurements up to orthonormal transforms. Example applications include coherence retrieval in optical imaging and covariance sketching for high-dimensional streaming data. To this end, efficient nonconvex optimization methods are quite appealing, due to their computational efficiency and scalability to large-scale problems. There is a recent surge of activities in designing nonconvex methods for the special case r = 1, known as phase retrieval; however, very little work has studied the general rank-r setting. Motivated by the success of phase retrieval, in this paper we derive several algorithms which utilize the quadratic loss function based on amplitude measurements, including (stochastic) gradient descent and alternating minimization. Numerical experiments demonstrate their computational and statistical performances, highlighting the superior performance of stochastic gradient descent with appropriate mini-batch sizes.

BibTeX
@inproceedings{icassp2019_solvingquadratic,
  title = {Solving Quadratic Equations via Amplitude-based Nonconvex Optimization},
  author = {Vincent Monardo and Yuanxin Li and Yuejie Chi},
  booktitle = {ICASSP 2019},
  year = {2019}
}