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张震

发布日期:2023-02-23 浏览量:

更新日期:2025.12.31

基本信息

   名:

张震


职称职务:

讲师,硕士生导师


   位:

博士


电子邮箱

zhangzhen@kust.edu.cn


办公地点:

校区主楼814


研究方向:

高光谱遥感影像处理与应用

个人概况

张震,男,19898月出生,山东潍坊人,摄影测量与遥感专业,工学博士。主要从事高光谱遥感图像处理与应用分析、人工智能与定量反演等研究。主持国家自然科学基金、云南省应用基础研究计划自然资源部南海遥感测绘协同应用技术创新中心开放基金等项目5项。EAAIESWAIEEE TGRSIEEE JSTARS等期刊发表30余篇,其中以第一作者或通讯作者发表SCI/EI论文24篇,中科院一区5篇,中科院二区8篇,高被引2。研究方向:(1)无人机高光谱遥感;(2)人工智能与定量遥感

学习工作经历

2022.03 - 至今   昆明理工大学 测绘系,讲师

2017.09 - 2021.06 山东科技大学 摄影测量与遥感 工学博士

2013.09 - 2016.06 山东科技大学 摄影测量与遥感 工学硕士

2008.09 - 2012.06 山东科技大学 遥感科学与技术 工学学士

研究项目

[1] 国家自然科学基金:耦合物理约束与领域知识引导的西南高原湿地植被遥感精细化监测方法. 42561060,2026.01-2029.12,主持.

[2] 云南省应用基础研究计划:基于无人机高光谱遥感的高原湖泊蓝藻水华监测方法研究. 202401AT070360,2024.03-2027.02,主持.

[3] 云南省应用基础研究计划:无人机高光谱遥感农作物精细分类方法研究. 202301AU070031,2023.06-2026.05,主持.

[4] 昆明理工大学人培项目:高原湖泊水体叶绿素a高光谱遥感反演. KKZ3202421122,2024.11-2025.10,主持.

[5] 自然资源部南海遥感测绘协同应用技术创新中心开放基金:基于深度学习的海上目标遥感识别算法研究. RSSMCA-2024-B012. 2025.1-2025.12,主持.

[6] 国家自然科学基金委员会:双曲建模的无人机载红外-LiDAR山地丛林目标检测及跟踪. 62571221,2026.01-2029.12,参与.

[7] 国家自然科学基金委员会:地理先验约束与拓扑感知的异源遥感图像潜在同名点检测与自适应匹配优化. 62561034,2026.01-2029.12,参与.

[8] 国家科技支撑计划资助项目:远海岛礁地理信息监测关键技术研究与示范. 2012.01-2015.12,参与.

[9] 海洋公益性行业科研专项:滨海湿地固碳能力提升技术及应用示范. 2012.01-2015.12,参与.

[10] 国家自然科学基金:北极快速变化对北冰洋有色溶解有机物的影响机理及规律. 2021.01-2023.12,参与.

[11] 国家自然科学基金:矿物颗粒物形状特征对水体光学特性的影响研究. 2018.1-2020.12,参与.

[12] 国家自然科学基金:顾及倾斜影像透视变形的Mesh模型构建与优化方法研究. 2019.01-2021.12,参与.

代表性论文:

[1] Zhen Zhang, Lehao Huang, Yabin Hu, et al. An innovative feature clustering paradigm based on Hypergraph cooperative graph convolutional network for hyperspectral image classification[J]. Engineering Applications of Artificial Intelligence. 2026, 166, 113597. (SCI 中科院一区, TOP期刊, IF=8.0. Paper, Code

[2] Zhen Zhang, Yemao Qi, Qingwang Wang, et al. Frequency-Enhanced Spatial–Spectral Network for Hyperspectral Imagery Reconstruction from Multispectral Imagery[J]. IEEE Transactions on Geoscience and Remote Sensing. 2025, 63:1-13.SCI 中科院一区, TOP期刊, IF=8.6. Paper, Code

[3] Zhen Zhang, Lehao Huang, Bo-hui Tang*, et al. Non-Euclidean Spectral-Spatial Feature Mining Network with Gated GCN-CNN for Hyperspectral Image Classification[J]. Expert Systems with Applications. 2025, 126811.SCI 中科院一区, TOP期刊, IF=7.5. Paper, Code, 高被引

[4] Zhen Zhang, Linhuan Jiang, Bo-hui Tang*, et al. Attention Residual Hybrid Network for Unmanned Aerial Vehicles Hyperspectral Image Classification[J]. IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing. 2025, 18: 3099-3124.SCI 中科院二区, TOP期刊, IF=4.7. Paper

[5] Zhen Zhang, Lehao Huang, Qingwang Wang*, et al. UAV Hyperspectral Remote Sensing Image Classification: A Systematic Review[J]. IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing. 2025, 18: 3099-3124.SCI 中科院二区, TOP期刊, IF=4.7. Paper, 高被引

[6] Zhen Zhang, Bingru Zhang, Bo-hui Tang*, et al. A Versatile Deep Learning Architecture for Lakes Water Quality Multiparameter Retrieval Using Hyperspectral Data [J]. IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing. 2025, 18: 28157-28171.SCI 中科院二区, IF=4.7. Paper

[7] Lingyan Bao, Hua Pan, Zhen Zhang*, Mengna Li, Shengqing Guo. Fine-grained Spatial Scale Evaluation of Regional Development Based on LJ-1 01 Nighttime Light Remote Sensing Image[J]. Social Indicators Research. 2025: 1-27.SSCI 一区, TOP期刊, IF=2.8. Paper

[8] Fengnian Zhao, Zhen Zhang*, Lehao Huang, et al. MHS-Mamba: A Multi-Hierarchical Semantic Model for UAV Hyperspectral Image Classification[J]. IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing. 2025, 18: 24617-24631.SCI 中科院二区, IF=4.7. Paper, Code

[9] Qingwang Wang, Jiangbo Huang, Shunyuan Wang, Zhen Zhang, Tao Shen, Yanfeng Gu. Community Structure Guided Network for Hyperspectral Image Classification[J]. IEEE Transactions on Geoscience and Remote Sensing. 2025, 63:1-13.SCI 中科院一区, IF=7.5. Paper, Code, 高被引

[10] Lehao Huang, Jianchen Liu, Linhuan Jiang, Bingru Zhang, Zhen Zhang*. LDA-Felzenszwalb Guided Superpixel Graph Convolutional Networks for UAV Hyperspectral Image Classification[C]. ISCTech, 2025, 1-5.(EI会议)

[11] Xinliang Pan, Tao Jiang, Weifu Sun, Jiawei Xie, Pinzhen Wu, Zhen Zhang*, Tingwei Cui*. Effective Attention Model for Global Sea Surface Temperature Prediction[J]. Expert Systems with Applications. 2024, 124411.SCI 中科院一区, TOP期刊, IF=7.5. Paper

[12] Linhuan Jiang, Zhen Zhang*, Bo-hui Tang, et al. PCCN-MSS: Parallel Convolutional Classification Network Combined Multi-Spatial Scale and Spectral Features for UAV-Borne Hyperspectral with High Spatial Resolution Imagery[J]. IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing. 2024, 17:6529-6543.SCI 中科院二区, TOP期刊, IF=5.5

[13] Zhen Liu, Xue Sun, Jianchen Liu, Hao Liu, Yuhang Zhou, Fuzhi Cheng, Yilong Zi, Zhen Zhang*. MSSM-SCDNet: A Multiclass Semantic Change Detection Network Suitable for Coastal Areas Based on Multiband Spatial-spectral Attention Mechanism[J]. IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing. 2024, 17: 15816-15833.SCI 中科院二区, TOP期刊, IF=5.5

[14] Lingyan Bao, Hua Pan, Dong Fan, Mengna Li, Linhuan Jiang and Zhen Zhang*. Evaluation of Socio-Economic Development in Yunnan Province in 2018 Based on LJ-1 01 Nighttime Light Remote Sensing Image[C]. IGARSS, 2024, 1315-1318.EI会议, Oral report

[15] Linhuan Jiang, Zhen Zhang* and Yabin Hu. Unmanned Aerial Vehicle Hyperspectral Remote Sensing Image Classification Based on Parallel Convolutional Neural Network[C]. ISCTech, 2024, 526-530.(EI会议

[16] Zhen Zhang, Tao Jiang, Chenxi Liu, et al. An Effective Classification Method for Hyperspectral Image with Very High Resolution Based on Encoder-Decoder Architecture[J]. IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing. 2021, 14: 1509-1519.SCI 中科院二区, IF=3.784

[17] Baikai Sui, Tao Jiang, Zhen Zhang*, Xinliang Pan. ECGAN: An Improved Conditional Generative Adversarial Network with Edge Detection to Augment Limited Training Data for The Classification of Remote Sensing Images with High Spatial Resolution[J]. IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing. 2021, 14: 1311-1325.SCI 中科院二区, IF=3.784

[18] Zhen Zhang, Jue Huang, Tao Jiang*, et al. Semantic Segmentation of Very High-Resolution Remote Sensing Image Based on Multiple Band Combinations and Patch-wise Scene Analysis[J]. Journal of Applied Remote Sensing. 2020, 14(1): 016502.SCI 中科院四区, IF=1.53

[19] Zhen Zhang, Xinliang Pan, Tao Jiang, et al. Monthly and Quarterly Sea Surface Temperature Prediction Based on Gated Recurrent Unit Neural Network[J]. Journal of Marine Science and Engineering. 2020, 8, 249.

[20] Baikai Sui, Tao Jiang, Zhen Zhang*, Xinliang Pan. A Modeling Method for Automatic Extraction of Offshore Aquaculture Zones Based on Semantic Segmentation[J]. ISPRS International Journal of Geo-Information. 2020, 9, 145.SCI 中科院三区, IF=2.899

[21] Chenxi Liu, Tao Jiang, Zhen Zhang*, et al. Extraction Method of Offshore Mariculture Area under Weak Signal based on Multisource Feature Fusion[J]. Journal of Marine Science and Engineering. 2020, 8, 99.

[22] Zhen Zhang, Jingyu Zhang, Yi Ma, et al. Retrieval of Nearshore Bathymetry around Ganquan Island from LiDAR Waveform and QuickBird Image[J]. Applied Sciences. 2019, 9, 4375.

[23] Yi Ma, Jie Zhang, Zhen Zhang*, et al. Bathymetry Retrieval Method of LiDAR Waveform Based on Multi-Gaussian Functions[J]. Journal of Coastal Research 90(sp1), 2019, 324-331.

[24] 马毅, 张杰, 张靖宇, 张震, 王锦锦. 浅海水深光学遥感研究进展[J].海洋科学进展, 2018, 36(03): 331-351.

[25] 张震, 马毅, 张靖宇, 梁建, 张杰. 基于水体回波信号仿真的激光雷达水深探测模型研究[J].海洋技术学报, 2015,34(06):13-18.

[26] 张震, 马毅, 张靖宇, 梁建. 激光雷达水体回波信号仿真模型研究[C]. “一带一路”战略与海洋科技创新——中国海洋学会2015年学术论文集, 2015:6.

[27] Junyi Chen, Xiaojie Liu, Bo-Hui Tang, Yunshan Xu, Dong Fan, Liang Huang, Zhongxi Ge, Zhen Zhang, Yu Zhong, & Chao Yang. An Integrated Object- and Pixel-Based Residual Compensation Framework for Land Surface Temperature Downscaling[J]. IEEE Transactions on Geoscience and Remote Sensing, 2025, 63: 1-16. SCI 中科院, IF=7.5

[28] Dong Wang, Bo-Hui Tang, Yingyun Li, Wei Fu, Zhitao Fu, Zhen Zhang, Zhongxi Ge. GRACE-derived spatiotemporal changes of terrestrial water storage in the major plateaus of China[J]. Global and Planetary Change. 2025, 255, 105102. SCI 中科院, IF=4.0

[29] Wenjiao Mao, Zhongxi Ge, Yuhan Chen, Bo-Hui Tang, Zhen Zhang, Liang Huang. Exploration of Spatial Scaling Effects on Remote Sensing Phenology in the Qinghai–Tibetan Plateau Grassland[J]. IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing, 2025,18: 15863-15875. SCI 中科院二区, IF=4.7

获奖情况

[1] 西南山地耕地遥感影像智能解译关键技术及应用,地理信息科技进步奖一等奖,12/20,2025.11.

[2] 北斗+多模态遥感协同的作物全生育期监测关键技术及应用,河南省地理信息科技进步奖特等奖,7/15,2025.7

授权国家专利:

[1] 唐伯惠, 蔡方亮, 司马欧阳, 付志涛, 张震, 樊东. 一种基于高分辨率遥感影像高原湿地智能精细提取方法. ZL 2023 1 0682476.7[P], 2024年.

[2] 张靖宇, 马毅, 张震, 等. 浅海水深多源遥感融合反演方法. ZL 2015 1 0975396.6[P], 2018年.

[3] 马毅, 崔廷伟, 张震, 等. 激光雷达水体回波信号仿真系统. ZL 2015 2 1081950.8[P], 2016年.

指导学生获奖

[1] 研究生国家奖学金.(黄乐豪,2025

[2] 全国大学生测绘学科创新创业智能大赛——科技论文竞赛二等奖.(赵丰年,2025

[3] 一带一路暨金砖国家技能发展与技术创新大赛——时空智能应用创新赛三等奖. (张浩,杨焌杉,林家轩,唐晓当,2025

[4] 国家级大学生创新训练计划项目. 基于低空无人机遥感的农作物病虫害监测系统.(赵丰年,2024

[5] 校级优秀本科毕业论文. 基于CNN的高光谱遥感影像滨海湿地分类方法研究.(杨昭君,2023

[6] 校级先进班集体(地信221班,20232025

招生信息

科研是站在巨人肩膀上的事业,希望广泛阅读学习专业经典与前沿科研要有独立思考质疑精神鼓励你具备批判性思维,保持不卑不亢的钻研精神科研需要专注,保持好奇心和创造力希望你能注重探索的乐趣与价值一起完成有意义、有趣味的科研工作。


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