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Link to original content: https://dblp.org/pid/07/10352-2.rss
dblp: Xingyu Zhou https://dblp.org/pid/07/10352-2.html dblp person page RSS feed Wed, 30 Oct 2024 20:31:39 +0100 en-US daily 1 released under the CC0 1.0 license dblp@dagstuhl.de (dblp team) dblp@dagstuhl.de (dblp team) Computers/Computer_Science/Publications/Bibliographies http://www.rssboard.org/rss-specification https://dblp.org/img/logo.144x51.pngdblp: Xingyu Zhouhttps://dblp.org/pid/07/10352-2.html14451 Transferable Sparse Adversarial Attack on Modulation Recognition With Generative Networks.https://doi.org/10.1109/LCOMM.2024.3373222, , , , :
Transferable Sparse Adversarial Attack on Modulation Recognition With Generative Networks. IEEE Commun. Lett. 28(5): 999-1003 ()]]>
https://dblp.org/rec/journals/icl/JiangZZCY24Wed, 01 May 2024 01:00:00 +0200
Boosting Adversarial Transferability with Shallow-Feature Attack on SAR Images.https://doi.org/10.3390/rs15102699, , , , , , , , :
Boosting Adversarial Transferability with Shallow-Feature Attack on SAR Images. Remote. Sens. 15(10): 2699 ()]]>
https://dblp.org/rec/journals/remotesensing/LinP0DBZZZL23Sun, 01 Jan 2023 00:00:00 +0100
Adversarial attack via dual-stage network erosion.https://doi.org/10.1016/j.cose.2022.102888, , , , , , , :
Adversarial attack via dual-stage network erosion. Comput. Secur. 122: 102888 ()]]>
https://dblp.org/rec/journals/compsec/DuanZZZHZZP22Sat, 01 Jan 2022 00:00:00 +0100
Enhancing transferability of adversarial examples via rotation-invariant attacks.https://doi.org/10.1049/cvi2.12054, , , , , :
Enhancing transferability of adversarial examples via rotation-invariant attacks. IET Comput. Vis. 16(1): 1-11 ()]]>
https://dblp.org/rec/journals/iet-cvi/DuanZZZZP22Sat, 01 Jan 2022 00:00:00 +0100
Learning Coated Adversarial Camouflages for Object Detectors.https://doi.org/10.24963/ijcai.2022/125, , , , , , , :
Learning Coated Adversarial Camouflages for Object Detectors. IJCAI : 891-897]]>
https://dblp.org/rec/conf/ijcai/DuanC0ZHZZP22Sat, 01 Jan 2022 00:00:00 +0100
Adversarial Attack via Dual-Stage Network Erosion.https://arxiv.org/abs/2201.00097, , , , , :
Adversarial Attack via Dual-Stage Network Erosion. CoRR abs/2201.00097 ()]]>
https://dblp.org/rec/journals/corr/abs-2201-00097Sat, 01 Jan 2022 00:00:00 +0100
Mask-guided noise restriction adversarial attacks for image classification.https://doi.org/10.1016/j.cose.2020.102111, , , , , :
Mask-guided noise restriction adversarial attacks for image classification. Comput. Secur. 100: 102111 ()]]>
https://dblp.org/rec/journals/compsec/DuanZZQZP21Fri, 01 Jan 2021 00:00:00 +0100
Robust and label efficient bi-filtering graph convolutional networks for node classification.https://doi.org/10.1016/j.knosys.2021.106891, , , , , , :
Robust and label efficient bi-filtering graph convolutional networks for node classification. Knowl. Based Syst. 224: 106891 ()]]>
https://dblp.org/rec/journals/kbs/WangPZZCHP21Fri, 01 Jan 2021 00:00:00 +0100
A data independent approach to generate adversarial patches.https://doi.org/10.1007/s00138-021-01194-6, , , , :
A data independent approach to generate adversarial patches. Mach. Vis. Appl. 32(3): 67 ()]]>
https://dblp.org/rec/journals/mva/ZhouPDZW21Fri, 01 Jan 2021 00:00:00 +0100
Learning Indistinguishable and Transferable Adversarial Examples.https://doi.org/10.1007/978-3-030-88013-2_13, , , , :
Learning Indistinguishable and Transferable Adversarial Examples. PRCV (4) : 152-164]]>
https://dblp.org/rec/conf/prcv/ZhangZDZP21Fri, 01 Jan 2021 00:00:00 +0100
DPA: Learning Robust Physical Adversarial Camouflages for Object Detectors.https://arxiv.org/abs/2109.00124, , , , , , :
DPA: Learning Robust Physical Adversarial Camouflages for Object Detectors. CoRR abs/2109.00124 ()]]>
https://dblp.org/rec/journals/corr/abs-2109-00124Fri, 01 Jan 2021 00:00:00 +0100
X-Net: A Binocular Summation Network for Foreground Segmentation.https://doi.org/10.1109/ACCESS.2019.2919802, , , , , , :
X-Net: A Binocular Summation Network for Foreground Segmentation. IEEE Access 7: 71412-71422 ()]]>
https://dblp.org/rec/journals/access/ZhangLCPZLJ19Tue, 01 Jan 2019 00:00:00 +0100
DDoS Traffic Control Using Transfer Learning DQN With Structure Information.https://doi.org/10.1109/ACCESS.2019.2923993, , , , :
DDoS Traffic Control Using Transfer Learning DQN With Structure Information. IEEE Access 7: 81481-81493 ()]]>
https://dblp.org/rec/journals/access/XiaZBZP19Tue, 01 Jan 2019 00:00:00 +0100
Densely Connected Convolutional Networks With Attention LSTM for Crowd Flows Prediction.https://doi.org/10.1109/ACCESS.2019.2943890, , , , , :
Densely Connected Convolutional Networks With Attention LSTM for Crowd Flows Prediction. IEEE Access 7: 140488-140498 ()]]>
https://dblp.org/rec/journals/access/LiTQLZP19Tue, 01 Jan 2019 00:00:00 +0100
Attributed network representation learning via DeepWalk.https://doi.org/10.3233/IDA-184121, , , , , :
Attributed network representation learning via DeepWalk. Intell. Data Anal. 23(4): 877-893 ()]]>
https://dblp.org/rec/journals/ida/WeiPHHYLZ19Tue, 01 Jan 2019 00:00:00 +0100
可伸缩模块化CNN人群计数方法 (Crowd Counting Method via Scalable Modularized Convolutional Neural Network).https://doi.org/10.11896/j.issn.1002-137X.2018.08.004, , , :
可伸缩模块化CNN人群计数方法 (Crowd Counting Method via Scalable Modularized Convolutional Neural Network). 计算机科学 45(8): 17-21 ()]]>
https://dblp.org/rec/journals/jsjkx/LiTZP18Mon, 01 Jan 2018 00:00:00 +0100
Joint Optimization of Perceptual Gain Function and Deep Neural Networks for Single-Channel Speech Enhancement.https://doi.org/10.1587/transfun.E100.A.714, , , , :
Joint Optimization of Perceptual Gain Function and Deep Neural Networks for Single-Channel Speech Enhancement. IEICE Trans. Fundam. Electron. Commun. Comput. Sci. 100-A(2): 714-717 ()]]>
https://dblp.org/rec/journals/ieicet/HanZMZS17Sun, 01 Jan 2017 00:00:00 +0100
Detecting Semantic Communities in Social Networks.https://doi.org/10.1587/transfun.E100.A.2507, , , , :
Detecting Semantic Communities in Social Networks. IEICE Trans. Fundam. Electron. Commun. Comput. Sci. 100-A(11): 2507-2512 ()]]>
https://dblp.org/rec/journals/ieicet/LiPHLZ17Sun, 01 Jan 2017 00:00:00 +0100