基于深度核主成分分析卷积映射网络的多时相甚高分辨率图像无监督变化检测

Unsupervised Change Detection in Multitemporal VHR Images Based on Deep Kernel PCA Convolutional Mapping Network

IEEE Transactions on Cybernetics · 2021
被引 152 · 同刊同年前 4%
ABS 3

中文导读

提出一种无监督的KPCA卷积映射网络,用于多时相甚高分辨率图像的二元和多元变化检测,无需标注数据,通过深度孪生网络提取特征并映射到极坐标域进行分割聚类。

Abstract

With the development of Earth observation technology, a very-high-resolution (VHR) image has become an important data source of change detection (CD). These days, deep learning (DL) methods have achieved conspicuous performance in the CD of VHR images. Nonetheless, most of the existing CD models based on DL require annotated training samples. In this article, a novel unsupervised model, called kernel principal component analysis (KPCA) convolution, is proposed for extracting representative features from multitemporal VHR images. Based on the KPCA convolution, an unsupervised deep siamese KPCA convolutional mapping network (KPCA-MNet) is designed for binary and multiclass CD. In the KPCA-MNet, the high-level spatial-spectral feature maps are extracted by a deep siamese network consisting of weight-shared KPCA convolutional layers. Then, the change information in the feature difference map is mapped into a 2-D polar domain. Finally, the CD results are generated by threshold segmentation and clustering algorithms. All procedures of KPCA-MNet do not require labeled data. The theoretical analysis and experimental results in two binary CD datasets and one multiclass CD datasets demonstrate the validity, robustness, and potential of the proposed method.

遥感图像处理变化检测深度学习无监督学习特征提取