论文标题

对于RGB-T显着对象检测,热量真的很重要吗?

Does Thermal Really Always Matter for RGB-T Salient Object Detection?

论文作者

Cong, Runmin, Zhang, Kepu, Zhang, Chen, Zheng, Feng, Zhao, Yao, Huang, Qingming, Kwong, Sam

论文摘要

近年来,RGB-T显着对象检测(SOD)引起了连续的关注,这使得可以通过引入热图像在诸如低光的环境中识别明显的对象。但是,大多数现有的RGB-T SOD模型都集中在如何执行交叉模式特征融合上,而忽略了SOD任务中热图像是否真的很重要。从此任务的定义和性质开始,本文重新考虑了热模式的含义,并提出了一个名为TNET的网络来解决RGB-T SOD任务。在本文中,我们介绍了一个全球照明估计模块,以预测图像的全球照明评分,以调节这两种方式的作用。此外,考虑到热模态的作用,我们在编码阶段和解码阶段建立了不同的跨模式相互作用机制。一方面,我们引入了语义约束提供商,以在编码阶段丰富热图像的语义,这使得热方式更适合SOD任务。另一方面,我们在解码阶段引入了一个两阶段的定位和补充模块,以将对象定位提示和内部完整性提示在热特征中传递到RGB模式。在三个数据集上进行的广泛实验表明,与20种最先进的方法相比,所提出的TNET实现了竞争性能。

In recent years, RGB-T salient object detection (SOD) has attracted continuous attention, which makes it possible to identify salient objects in environments such as low light by introducing thermal image. However, most of the existing RGB-T SOD models focus on how to perform cross-modality feature fusion, ignoring whether thermal image is really always matter in SOD task. Starting from the definition and nature of this task, this paper rethinks the connotation of thermal modality, and proposes a network named TNet to solve the RGB-T SOD task. In this paper, we introduce a global illumination estimation module to predict the global illuminance score of the image, so as to regulate the role played by the two modalities. In addition, considering the role of thermal modality, we set up different cross-modality interaction mechanisms in the encoding phase and the decoding phase. On the one hand, we introduce a semantic constraint provider to enrich the semantics of thermal images in the encoding phase, which makes thermal modality more suitable for the SOD task. On the other hand, we introduce a two-stage localization and complementation module in the decoding phase to transfer object localization cue and internal integrity cue in thermal features to the RGB modality. Extensive experiments on three datasets show that the proposed TNet achieves competitive performance compared with 20 state-of-the-art methods.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源