Data-Independent Feature Learning with Markov Random Fields in Convolutional Neural Networks

被引:3
作者
Peng, Yao [1 ]
Hankins, Richard [1 ]
Yin, Hujun [1 ]
机构
[1] Univ Manchester, Sch Elect & Elect Engn, Manchester M13 9PL, Lancs, England
关键词
Convolutional neural networks; Image representation; Markov random fields; Gibbs distribution; Self-organising maps; Image classification; Image features; SPATIAL-INTERACTION; CONVERGENCE; MODELS; SPACE;
D O I
10.1016/j.neucom.2019.03.107
中图分类号
TP18 [人工智能理论];
学科分类号
081104 ; 0812 ; 0835 ; 1405 ;
摘要
In image classification, deriving robust image representations is a key process that determines the performance of vision systems. Numerous image features and descriptors have been developed manually over the years. As an alternative, however, deep neural networks, in particular convolutional neural networks (CNNs), have become popular for learning image features or representations from data and have demonstrated remarkable performance in many real-world applications. But CNNs often require huge amount of labelled data, which may be prohibitive in many applications, as well as long training times. This paper considers an alternative, data-independent means of obtaining features for CNNs. The proposed framework makes use of the Markov random field (MRF) and self-organising map (SOM) to generate basic features and model both intra- and inter-image dependencies. Various MRF textures are synthesized first, and are then clustered by a convolutional translation-invariant SOM, to form generic image features. These features can be directly applied as early convolutional filters of the CNN, leading to a new way of deriving effective features for image classification. The MRF framework also offers a theoretical and transparent way to examine and determine the influence of image features on performance of CNNs. Comprehensive experiments on the MNIST, rotated MNIST, CIFAR-10 and CIFAR-100 datasets were conducted with results outperforming most state-of-the-art models of similar complexity. (C) 2019 Elsevier B.V. All rights reserved.
引用
收藏
页码:24 / 35
页数:12
相关论文
共 50 条
[21]   Stochastic approach to texture analysis using probabilistic neural networks and Markov random fields [J].
Dehmeshki, J ;
Daemi, F ;
Hatfield, F ;
Rashidi, M .
APPLICATIONS OF DIGITAL IMAGE PROCESSING XX, 1997, 3164 :346-358
[22]   Hyperspectral Image Classification With Transfer Learning and Markov Random Fields [J].
Jiang, Xuefeng ;
Zhang, Yue ;
Li, Yi ;
Li, Shuying ;
Zhang, Yanning .
IEEE GEOSCIENCE AND REMOTE SENSING LETTERS, 2020, 17 (03) :544-548
[23]   Environmental microorganism classification using conditional random fields and deep convolutional neural networks [J].
Kosov, Sergey ;
Shirahama, Kimiaki ;
Li, Chen ;
Grzegorzek, Marcin .
PATTERN RECOGNITION, 2018, 77 :248-261
[24]   Research on adaptive local feature enhancement in convolutional neural networks [J].
Sun, Tongfeng ;
Shao, Changlong ;
Liao, Hongmei ;
Ding, Shifei ;
Xu, Xinzheng .
IET IMAGE PROCESSING, 2020, 14 (16) :4306-4315
[25]   Feature Correlation Loss in Convolutional Neural Networks for Image Classification [J].
Zhou, Jiahuan ;
Xiao, Di ;
Zhang, Mengyi .
PROCEEDINGS OF 2019 IEEE 3RD INFORMATION TECHNOLOGY, NETWORKING, ELECTRONIC AND AUTOMATION CONTROL CONFERENCE (ITNEC 2019), 2019, :219-223
[26]   Measuring Feature Importance of Convolutional Neural Networks [J].
Zhang, Xiaohang ;
Gao, Jiuyi .
IEEE ACCESS, 2020, 8 :196062-196074
[27]   Convolutional Fuzzy Neural Networks With Random Weights for Image Classification [J].
Wang, Yifan ;
Ishibuchi, Hisao ;
Pedrycz, Witold ;
Zhu, Jihua ;
Cao, Xiangyong ;
Wang, Jun .
IEEE TRANSACTIONS ON EMERGING TOPICS IN COMPUTATIONAL INTELLIGENCE, 2024, 8 (05) :3279-3293
[28]   Data Dropout: Optimizing Training Data for Convolutional Neural Networks [J].
Wang, Tianyang ;
Huan, Jun ;
Li, Bo .
2018 IEEE 30TH INTERNATIONAL CONFERENCE ON TOOLS WITH ARTIFICIAL INTELLIGENCE (ICTAI), 2018, :39-46
[29]   A Methodology for Redesigning Networks by Using Markov Random Fields [J].
Cabello, Julia Garcia ;
Castillo, Pedro A. ;
Aguilar-Luzon, Maria-del-Carmen ;
Chiclana, Francisco ;
Herrera-Viedma, Enrique .
MATHEMATICS, 2021, 9 (12)
[30]   A Coupling Support Vector Machines with the Feature Learning of Deep Convolutional Neural Networks for Classifying Microarray Gene Expression Data [J].
Phuoc-Hai Huynh ;
Van-Hoa Nguyen ;
Thanh-Nghi Do .
MODERN APPROACHES FOR INTELLIGENT INFORMATION AND DATABASE SYSTEMS, 2018, 769 :233-243