Research Interests

Research interests:

Electromagnetic waves in radar and communication systems

Electromagnetic inverse scattering and radar target recognition

Electromagnetic imaging and planetary exploration

Ground-penetrating radar imaging and subsurface target detection

Computational electromagnetics

Ongoing projects:

NSFC General Programme: "Modelling of electromagnetic scattering mechanisms and data interpretation for Tianwen-1 subsurface radar in probing the subsurface structure of Mars", National Natural Science Foundation of China, No. 62271152, 2023–2026, RMB 540,000.

MOST National Key R&D Programme: "Research on integrated retrieval and application of atmosphere–ocean parameters based on a Chinese-developed fast radiative-transfer model", Ministry of Science and Technology, No. 2021YFB3900401, 2021–2025, RMB 6,900,000.

MOST National Key R&D Programme: "Active–passive microwave detection technology for the polar cryosphere at high resolution", Ministry of Science and Technology, No. 2021YFB3900100, 2021–2025, RMB 800,000.

NSFC General Programme: "Electromagnetic scattering modelling and parameter inversion for imaging radar detection of multi-rock planets", National Natural Science Foundation of China, No. 61871424, 2019–2022, RMB 780,000.

CMA Cooperation Project: "Optical-simulation accuracy testing for vegetation scattering and polarisation characteristics", National Meteorological Centre, China Meteorological Administration, 2025–2026, RMB 300,000.

Aerospace Pre-Research Project: Target *** characteristics, China Aerospace Science and Technology Innovation Research Institute, RMB 300,000.

Aerospace 2nd Academy Cooperation Project: Forward-looking *** verification, Beijing Simulation Center, 2025–2026, RMB 280,000.

CAS Joint Project: Multi-factor coupled modelling of target–environment electromagnetic scattering, National Space Science Center, CAS, 2022–2023, RMB 200,000.

Aerospace 8th Academy Cooperation Project: Typical-terrain parameter database and interface, Shanghai Radio Equipment Research Institute, 2021–2022, RMB 750,000.

Aerospace 8th Academy Cooperation Project: Inversion of ground-clutter echo data under narrow-beam conditions, Shanghai Radio Equipment Research Institute, 2021–2022, RMB 850,000.

Recruitment directions:

Information and Communication Engineering; Radar Signal Processing and Target Recognition; Scattering from Rough Surfaces and Ocean Remote Sensing

Electromagnetic Field and Microwave Technology; AI for Science

Computational Electromagnetics; High-Performance Computing

Academic Service

Senior Member, Chinese Institute of Electronics

Member, Academic Committee of Shanghai Key Laboratory of Electromagnetic Environment Effects for Aerospace Vehicles

Committee Member, Microwave Branch, Chinese Institute of Electronics

Committee Member, Radio Wave Propagation Branch, Chinese Institute of Electronics

Reviewer for international journals (IEEE TGRS, IEEE TAP, etc.) and domestic journals (Acta Physica Sinica, Acta Electronica Sinica, etc.)

IEEE Senior Member

Awards and Honours

Third Prize, 12th ZTE Proud Elite Global Challenge – “Diviner” (Supervisor), 2022

Advanced Electromagnetic Field Theory selected as Ministry of Education Model Course for Ideological and Political Education (Instructor), 2021

Second Prize, ACES-2021 International Conference Student Paper Competition (Supervisor), 2021

Best Paper Award, PIERS-2021 International Conference (Supervisor), 2021

Second Prize, International Applied Computational Electromagnetics Society Modelling Competition (Supervisor), 2021

Excellence Award, Deep Perspective – 2020 Urban Underground Space Structure Detection System Challenge (Supervisor), 2020

Second Prize, International Applied Computational Electromagnetics Society Modelling Competition (Supervisor), 2019

Third Prize, China “Internet+” College Student Innovation and Entrepreneurship Competition (Supervisor), 2019

Fudan University Women’s Innovation Award, 2012

First Prize of Natural Science Award, Ministry of Education, 2010

Shanghai Outstanding Doctoral Dissertation Award, 2008

Education and Work Experience

Sept. 1996 – Jul. 2000: Undergraduate, School of Electronic and Information Engineering, Xi’an Jiaotong University (Information and Communication Engineering)

Sept. 2000 – May 2003: Master’s student, School of Electronic and Information Engineering, Xi’an Jiaotong University (Information and Communication Engineering)

Sept. 2003 – Jun. 2007: PhD student, School of Information Science and Technology, Fudan University (Circuits and Systems)

Jul. 2007 – Jan. 2010: Lecturer, School of Information Science and Technology, Fudan University

Feb. 2010 – present: Associate Professor, School of Information Science and Technology, Fudan University

Teaching

Undergraduate courses: Electromagnetic Field and Microwave Technology; Computer Simulation and Modelling.

Postgraduate courses: Advanced Electromagnetic Theory; Computational Electromagnetics.

Selected Publications

Patent:

Ye Hongxia 、Jiang Yu、Wang Yi’anran,Patent Certificate — A neural-network-based method for radar-target characteristic data representation,Invention Patent,Patent No.: ZL 2021 1 0502556.0

Ye Hongxia, Lin Zesheng,A surface-defect detection method based on augmented training of deep neural networks,Invention Patent,Patent No.: ZL 2019 1 1144016.9

Ye Hongxia, Zhu Chengke,A GUI-based method for ground-penetrating-radar subsurface-pipeline parameter inversion, Invention Patent, Application No.: 2023100557902

Ye Hongxia, Han Kebao,A fusion-positioning method based on 5G carrier phase, Invention Patent, Application No.: 2023102125960

Journal Articles:

Shu Xin, Hongxia Ye (2025). " Parameters Inversion of Sedimentary Layers in Martian North Polar Region Based on a CNN-BiGRU Network". IEEE Transactions on Geoscience and Remote Sensing . vol.63. Art no. 4504616. DOI: 10.1109/TGRS.2025.3562444.

Hongxia Ye , Chenyu Guo (2024). "A Backscattering Model of Rain-affected Sea Surface with Two-Scale Method". IEEE Transactions on Geoscience and Remote Sensing . DOI: 10.1109/TGRS.2024.3428470

Hongxia Ye , Haiyue Xiang, Feng Xu (2024). "Cycle-GAN network incorporated with Atmospheric Scattering Model for Dust Removal of Martian Optical Images". IEEE Transactions on Geoscience and Remote Sensing . DOI: 10.1109/TGRS.2024.3432601.

Xin Shu, Hongxia Ye (2024). "Automatic Extraction of Martian Subsurface Layer from Radargrams Based on PDE Denoising and KL Filter". Remote Sensing . DOI: 10.3390/rs16071123.

Yaqi Zhao, Hongxia Ye (2024). "Crater Detection and Population Statistics in Tianwen-1 Landing Area Based on Segment Anything Model (SAM)". Remote Sensing . 16, 1743. DOI: 10.3390/rs16101743.

Yaqi Zhao, Hongxia Ye (2023). "SqUNet An High-performance Network for Lunar Crater Detection " . IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing . DOI: 10.1109/JSTARS.2023.3314128.

Chengke Zhu, Hongxia Ye (2023) . " A Modular Method for GPR Hyperbolic Feature Detection and Quantitative Parameter Inversion of Underground Pipelines " . Remote Sensing . 15(8), 2114. D OI: 10.3390/rs15082114 .

Longxiang Wang, Hongxia Y e (2023). "A new approach to retrieve total electron content based on dual-band echoes of MARSIS radar sounder ". Advances in Space Researc h. DOI: 10.1016/j.asr.2023.01.032 .

Longxiang Wang, Hongxia Ye , Feng Xu(2022). "A Dual-Band Difference Ionosphere Compensation Algorithm for Mars Orbiter Subsurface Investigation Radar". IEEE Transactions on Geoscience and Remote Sensin g. vol. 60, pp.1-13. DOI: 10.1109/TGRS.2022.3144271

Jiaxin Wan, Hongxia Ye (2022). "An E fficient ISAR Image Simulation Method for 3D Electric-Large PEC Rough Surface". IEEE Transactions on Antennas and Propagation . DOI: 10.1109/TAP.2022.3168651.

Chenyu Guo, Hongxia Ye , et al(2022). "Scaled Sea Surface design and RCS Measurement Based on Rough Film Medium". Sen sors . 22, 6290. DOI : 10.3390/s22166290

Jianrong Geng, Juan He, Zhan Bin, Ye Hongxia ( 2022 ). "A Clutter Suppression Method Based on LSTM Network for Ground Penetrating Radar". Applied Science . DOI : 10.3390/app12136457.

He Juan, Wang Longxiang, Ye Hongxia (2021). "A new Wavelet Prediction method for GPR clutter elimination Based on LSTM network". ACES-2021 in Chengdu , July 31-Aug 3. DOI: 10.23919/ACES-China52398.2021.9581488 (Outstanding Paper, 2nd Prize).

Jiaxin Wan, Hong-Xia Ye , Zihao Zhao(2020). "An Analytical Method for High Frequency Electromagnetic Scattering of Arbitrary Undulating Rough Surfaces". IEEE Transactions on Geoscience and Remote Sensing . vol.58, no.10, pp.7371-7379. DOI: 10.1109/TGRS.2020.2982206

Zesheng Lin, Hongxia Ye , et.al (2020). "An Efficient Network for Surface Defect Detection". Applied Sciences . vol.10, no.6085. DOI: 10.3390/app10176085