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Yanming Guo

Researcher at National University of Defense Technology

Publications -  47
Citations -  2758

Yanming Guo is an academic researcher from National University of Defense Technology. The author has contributed to research in topics: Computer science & Feature (computer vision). The author has an hindex of 13, co-authored 37 publications receiving 1867 citations. Previous affiliations of Yanming Guo include Leiden University & Zhejiang University.

Papers
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Journal ArticleDOI

Deep learning for visual understanding

TL;DR: The state-of-the-art in deep learning algorithms in computer vision is reviewed by highlighting the contributions and challenges from over 210 recent research papers, and the future trends and challenges in designing and training deep neural networks are summarized.
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A review of semantic segmentation using deep neural networks

TL;DR: The field of semantic segmentation as pertaining to deep convolutional neural networks is reviewed and comprehensive coverage of the top approaches is provided and the strengths, weaknesses and major challenges are summarized.
Proceedings ArticleDOI

Learning a Recurrent Residual Fusion Network for Multimodal Matching

TL;DR: This work introduces a novel bridge between the modality-specific representations by creating a co-embedding space based on a recurrent residual fusion (RRF) block that adapts the recurrent mechanism to residual learning, so that it can recursively improve feature embeddings while retaining the shared parameters.
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CNN-RNN: a large-scale hierarchical image classification framework

TL;DR: A high performance network based on the CNN-RNN paradigm is built which outperforms the original CNN and also the current state-of-the-art and is built on top of any CNN architecture which is primarily designed for leaf-level classification.
Journal ArticleDOI

Colloidal chemically fabricated ZnO : Cu-based photodetector with extended UV-visible detection waveband

TL;DR: Polycrystalline ZnO : Cu-based film photodetectors with extended detection waveband (UV and visible light) were fabricated using facile colloidal chemistry and a post-annealing process to understand this complex photoconduction behaviour.