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RGB-T Salient Object Detection via Fusing Multi-Level CNN Features

delete2020-01-01
delete163
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OA
AI
Q
Qiang Zhang
N
Nianchang Huang
L
Lin Yao
D
Dingwen Zhang
C
Caifeng Shan
韩军功 (Jungong Han) *
DOI:10.1109/TIP.2019.2959253delete
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Abstract

Abstract

En 中文
RGB-induced salient object detection has recently witnessed substantial progress, which is attributed to the superior feature learning capability of deep convolutional neural networks (CNNs). However, such detections suffer from challenging scenarios characterized by cluttered backgrounds, low-light conditions and variations in illumination. Instead of improving RGB based saliency detection, this paper takes advantage of the complementary benefits of RGB and thermal infrared images. Specifically, we propose a novel end-to-end network for multi-modal salient object detection, which turns the challenge of RGB-T saliency detection to a CNN feature fusion problem. To this end, a backbone network (e.g., VGG-16) is first adopted to extract the coarse features from each RGB or thermal infrared image individually, and then several adjacent-depth feature combination (ADFC) modules are designed to extract multi-level refined features for each single-modal input image, considering that features captured at different depths differ in semantic information and visual details. Subsequently, a multi-branch group fusion (MGF) module is employed to capture the cross-modal features by fusing those features from ADFC modules for a RGB-T image pair at each level. Finally, a joint attention guided bi-directional message passing (JABMP) module undertakes the task of saliency prediction via integrating the multi-level fused features from MGF modules. Experimental results on several public RGB-T salient object detection datasets demonstrate the superiorities of our proposed algorithm over the state-of-the-art approaches, especially under challenging conditions, such as poor illumination, complex background and low contrast.
Keywords:
RGB-T salient object detection
adjacent-depth feature combination
multi-branch group fusion
joint attention guided bi-directional message passing
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Journal

IEEE Transactions on Image Processing cover
IEEE Transactions on Image Processing
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Philips
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Xidian University
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Philips Research
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