Convolutional Analysis Operator Learning: Acceleration, Convergence, Application, and Neural Networks

02/15/2018
by   Il Yong Chun, et al.
0

Convolutional operator learning is increasingly gaining attention in many signal processing and computer vision applications. Learning kernels has mostly relied on so-called local approaches that extract and store many overlapping patches across training signals. Due to memory demands, local approaches have limitations when learning kernels from large datasets -- particularly with multi-layered structures, e.g., convolutional neural network (CNN) -- and/or applying the learned kernels to high-dimensional signal recovery problems. The so-called global approach has been studied within the "synthesis" signal model, e.g., convolutional dictionary learning, overcoming the memory problems by careful algorithmic designs. This paper proposes a new convolutional analysis operator learning (CAOL) framework in the global approach, and develops a new convergent Block Proximal Gradient method using a Majorizer (BPG-M) to solve the corresponding block multi-nonconvex problems. To learn diverse filters within the CAOL framework, this paper introduces an orthogonality constraint that enforces a tight-frame (TF) filter condition, and a regularizer that promotes diversity between filters. Numerical experiments show that, for tight majorizers, BPG-M significantly accelerates the CAOL convergence rate compared to the state-of-the-art method, BPG. Numerical experiments for sparse-view computational tomography show that CAOL using TF filters significantly improves reconstruction quality compared to a conventional edge-preserving regularizer. Finally, this paper shows that CAOL can be useful to mathematically model a CNN, and the corresponding updates obtained via BPG-M coincide with core modules of the CNN.

READ FULL TEXT

page 11

page 12

page 18

research
08/04/2019

BCD-Net for Low-dose CT Reconstruction: Acceleration, Convergence, and Generalization

Obtaining accurate and reliable images from low-dose computed tomography...
research
05/12/2017

Gabor Filter Assisted Energy Efficient Fast Learning Convolutional Neural Networks

Convolutional Neural Networks (CNN) are being increasingly used in compu...
research
07/26/2019

Momentum-Net: Fast and convergent iterative neural network for inverse problems

Iterative neural networks (INN) are rapidly gaining attention for solvin...
research
09/04/2015

Conjugate Gradient Acceleration of Non-Linear Smoothing Filters

The most efficient signal edge-preserving smoothing filters, e.g., for d...
research
07/03/2017

Deep Convolutional Framelets: A General Deep Learning Framework for Inverse Problems

Recently, deep learning approaches have achieved significant performance...
research
10/28/2022

Learning with Multigraph Convolutional Filters

In this paper, we introduce a convolutional architecture to perform lear...
research
10/17/2022

Signal Processing for Implicit Neural Representations

Implicit Neural Representations (INRs) encoding continuous multi-media d...

Please sign up or login with your details

Forgot password? Click here to reset