江西省嵌入式系统工程技术研究中心
2025-12-11 17:10:00
1.中心简介:
中心立足于国家战略需求和江西省地方经济发展,以解决新一代嵌入式智能系统与产品急需解决的一系列共性关键技术难题和工程瓶颈为核心目标,开展宽带无线通信、可见光通信、雷达探测、智能硬件、自主无人系统、生物医学成像等方向的研究。整合南昌大学和省内龙头企业相关研究平台,组建多学科协同创新的科研和人才培养基地。与知名高校、研究机构和江西省龙头企业等紧密合作,推动成果转化与示范应用落地,助力江西省电子信息产业高质量发展。
主要研究内容包括(1)以嵌入式人工智能技术和边缘计算为突破点,开展编码调制、基带信号处理、智能天线、通信定位一体化、边缘计算、空地协同资源优化等领域智能化研究。(2)研究底层硬件到上层智能算法的软硬件协同设计,解决人工智能算法应用部署面临的计算资源、实时性能与成本之间的均衡问题。开展先进无线通信和智能感知技术研究,实现信号与信息的感知、处理、传输、存储等各个层面智能化。(3)以机器学习和数据挖掘技术为核心,开展成像重建与视觉显示的普适性表示理论研究和智能医学成像、智能计算光电成像,无人机雷达、外辐射源雷达等实际系统研究。(4)研究可见光通信照明感知一体化网络理论与方法,为可见光通信密集组网和智慧光互联的实际应用提供重要理论和技术支撑。通过建设照明传感通信定位一体化以及5G+北斗和雷达方向,持续推进“智联江西”建设。
2. 主要研究人员
雷达与智能感知技术实验室

周辉林(教授) 段荣行(教授) 刘志明(副教授) 赵志欣(副教授) 洪升(副教授)
宽带通信与新型网络实验室
王玉皞(教授) 王正海(教授) 余礼苏(副教授) 张超群(副教授) 刘晓东(副教授)
图像、视频与机器学习实验室
刘且根(教授) 朱莉(副教授) 魏庆国(教授) 张明辉(教授) 秦东(副教授)
新型光电探测与成像实验室
鄢秋荣(教授) 邓素辉(教授) 夏勇(副教授) 宋达微(特聘研究员) 王玉皞(教授)
3.承担主要课题
1. 偏振调制进一步提高超分辨成像系统的分辨率研究,2021(国家自然科学基金项目)
2. 基于阵列探测器的点扫描超分辨成像技术的研究,2024(国家自然科学基金项目)
3. 非完美硬件条件下RIS辅助毫米波定位机制与方法研究,2024(国家自然科学基金项目)
4. 基于任务驱动的无人机集群SAR构型优化与智能化三维成像技术,2025(国家自然科学基金项目)
5. 超材料智能可编程天线多性能动态编码与电磁调控研究,2025(国家自然科学基金项目)
6. 密集可见光通信网络资源鲁棒优化方法,2025(国家自然科学基金项目)
7. 混合不确定性下无人机系统可靠性分析与优化设计研究,2024(国家自然科学基金项目)
8. 面向OFDM波形外辐射源雷达微弱目标探测的智能时域数据反演方法研究,2023(国家自然科学基金项目)
9. 基于MIRFS的大型无线系统网络时间隐蔽同步理论研究,2022(国家自然科学基金项目)
10. 神经网络指导的液态基超材料天线多维性能重构研究,2022(国家自然科学基金项目)
11. 高性能宽光谱响应的钙钛矿/近红外量子点叠层太阳能电池研究,2022(国家自然科学基金项目)
12. 面相实际无线充电边缘计算网络的高能效资源优化方法,2020(国家自然科学基金项目)
13. 快速高光谱压缩宽场荧光寿命成像技术研究,2022(江西省主要学科学术和技术带头人-领军人才项目)
14. 无人机集群合成孔径雷达前视三维成像技术研究,2022(省厅级重点项目)
15. 高性能宽光谱的单片集成化近红外量子点光谱仪芯片研究,2025(省厅级重点项目)
16. 低空无人机毫米波雷达高分辨成像技术研究(南昌),2024(省厅级重点项目)
17. 轻小型应急救援无人机SAR精细化成像关键技术研究及系统研制,2024(省厅级重点研发项目)
18. RIS辅助毫米波通信系统中用户定位理论与方法研究,2024(江西省自然科学基金杰出青年基金项目)
19. 基于信号级深度学习的OFDM波形外源雷达目标探测方法研究,2024(江西省自然科学基金杰出青年项目)
20. 双基站前视合成孔径雷达时域快速成像及精准定位技术研究,2023(江西省自然科学基金杰出青年基金项目)
21. 基于硅基金黄光LED的大容量碳效可见光通信系统优化设计,2023(江西省主要学科学术和技术带头人培养项目)
22. 低空无人机高性能视频SAR关键技术研究,2025(江西省科技厅重点研发计划项目)
3.代表性论文
1. Liu, Mingping, et al. "Short-term photovoltaic power forecasting based on improved Transformer with feature enhancement." Sustainable Energy, Grids and Networks (2025): 101759.
2. Tang, Liwei, et al. "Multi-Modal Sensing and Lighting Estimation for PoE-Enabled Intelligent and Energy-Efficient Lighting Networks." IEEE Internet of Things Journal (2025).
3. Li, Tiancheng, et al. "Gates-controlled deep unfolding network for image compressed sensing." IEEE Transactions on Computational Imaging 10 (2024): 103-114.
4. Zhou, Huilin, et al. "An augmented Lagrangian method-based deep iterative unrolling network for seismic full-waveform inversion." IEEE Transactions on Geoscience and Remote Sensing 62 (2024): 1-13.
5. Yu, Lisu, et al. "Performance analysis of NOMA-based VLC system in different IoT network environments." IEEE Internet of Things Journal (2024).
6. Zhu, Jiawei, et al. "High-performance and stable Sb2S3 thin-film photodetectors for potential application in visible light communication." ACS Applied Materials & Interfaces 15.23 (2023): 28175-28183.
7. Li, Jin, et al. "Wavelet transform-assisted adaptive generative modeling for colorization." IEEE Transactions on Multimedia 25 (2022): 4547-4562.
8. Liu, Yiwen, et al. "Distribution characteristics of the plasma irregularities inside the mid‐latitude ionospheric trough based on swarm in situ measurements." Space Weather 20.3 (2022): e2021SW002991.
9. Hong, Sheng, et al. "Robust transmission design for intelligent reflecting surface-aided secure communication systems with imperfect cascaded CSI." IEEE Transactions on Wireless Communications 20.4 (2020): 2487-2501.
10. Zhiming Liu, Shaobin Liu, et al. Wideband Gain Enhancement and RCS Reduction of Fabry-Perot Antenna Using Hybrid Reflection Method. IEEE Transactions on Antennas and Propagation, April 2020.
11. Zhiming Liu, Jens Bornemann, Deisy Formiga Mamedes, et al. A Wideband Fabry-Pérot Antenna With Enhanced Gain in the High-Frequency Operating Band by Adopt ing a Truncated Field Correcting Structure, IEEE Transactions on Antennas and Propagation, 2021, 69(12): 8221-8228.
12. Jiali Yan, Zhiming Liu, Huilin Zhou, Yuhao Wang, Hao Xu. A broadband beam‐steerable Fabry–Pérot antenna employing water‐based reconfigurable partially reflective surface[J]. IET Microwaves, Antennas & Propagation, 2024, 18(12): 1175-1181.
13. H. Zhou, Y. Cheng, H. Zheng, Q. Liu and Y. Wang, "Deep Unfolding Contrast Source Inversion for Strong Scatterers via Generative Adversarial Mechanism," in IEEE Transactions on Microwave Theory and Techniques, vol. 70, no. 11, pp. 4966-4979, Nov. 2022, doi: 10.1109/TMTT.2022.3205891.
14. H. Zhou, Q. Liu, Y. Wang, and Y. Wang, “RNMF-Guided Deep Network for Signal Separation of GPR Without Labeled Data,” IEEE Geoscience and Remote Sensing Letters, vol. 19, pp. 1–5, Jan. 2022, doi: 10.1109/lgrs.2021.3099161.
15. Y. Zhou, F. Zhou, H. Zhou, D. W. K. Ng and R. Q. Hu, "Robust Trajectory and Transmit Power Optimization for Secure UAV-Enabled Cognitive Radio Networks," in IEEE Transactions on Communications, vol. 68, no. 7, pp. 4022-4034, July 2020, doi: 10.1109/TCOMM.2020.2979977.
16. L. Chen, W. Ma, Y. Wang and H. Zhou, "Array Factor Forming With Regularization for Aperture Synthesis Radiometric Imaging With an Irregularly Distributed Array," in IEEE Geoscience and Remote Sensing Letters, vol. 17, no. 1, pp. 97-101, Jan. 2020, doi: 10.1109/LGRS.2019.2914926.
17. Wei Gao, Qiu-Rong Yan, Hui-Lin Zhou, Sheng-Tao Yang, Zhe-Yu Fang, and Yu-Hao Wang, "Single photon counting compressive imaging using a generative model optimized via sampling and transfer learning," Opt. Express 29, 5552-5566 (2021)
18. Wei Chen, Zhiming Liu, Huilin Zhou, Jens Bornemann, Yuhao Wang, Fei Wang. A two‐dimensional beam steering Fabry–Pérot antenna employing a liquid‐based reconfigurable metasurface[J]. IET Microwaves, Antennas & Propagation, 2023.
19. Yuxuan Huang, Zhiming Liu, Xiangkun Kong, Huilin Zhou, Zhixin Lei, Yuhao Wang. A Dual-Polarized 3D Radiation Pattern Reconfigurable Fabry–Perot Antenna Based on Liquid-Based Partially Reflective Surface[J]. IEEE Antennas and Wireless Propagation Letters, 2025. (DOI:10.1109/LAWP.2025.3615294 )
20. Zilong Zhong; Zhiming Liu; Youming Shi; Zimin Wang; Haihe Zhu; Zhixin Lei. Wideband-RCS-Reduced High-Gain Fabry-Perot Antenna Based On Chessboard Frequency-Selective-Rasorber. IEEE Antennas and Wireless Propagation Letters, 2025. (DOI: 10.1109/LAWP.2025.3624406)
21. S. Hong*, C. Pan, H. Ren, K. Wang and A. Nallanathan, "Artificial-Noise-Aided Secure MIMO Wireless Communications via Intelligent Reflecting Surface," IEEE Transactions on Communications, 2020, 68(12): 7851-7866. (TOP期刊,JCR Q1,ESI高被引论文)
22. S. Hong*, C. Pan, H. Ren, K. Wang, K. K. Chai, and A. Nallanathan, " Robust Transmission Design for Intelligent Reflecting Surface Aided Secure Communication Systems with Imperfect Cascaded CSI," IEEE Transactions on Wireless Communications, 2021, 20(4): 2487-2501. (TOP期刊,JCR Q1,ESI高被引论文).
23. S. Hong*, C. Pan, G. Zhou, H. Ren and K. Wang, “Outage Constrained Robust Transmission Design for IRS-Aided Secure Communications With Direct Communication Links,” IEEE Transactions on Communications, 2024, 72(3):1548-1564. (TOP期刊,JCR Q1)
24. S. Zhou, M. Shi, M. Bao, Z. Wang, M. Xing and P. Wen, “Fast SCFBP Algorithm for GPR-SAR Imaging Integrated with Underground Medium Permittivity Inversion,” in IEEE Transactions on Antennas and Propagation, 2025, accept and to be published. (JCR Q1,中科院1区SCI,TOP期刊) ;
25. S. Zhou, J. Chen, Z. Wang, Y. Wang and P. Wen, “An Efficient Network Based on Conjugate Gradient Optimization and Approximate Observation Model for SAR Image Reconstruction,” in IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing, vol. 18, pp. 2464-2476, 2025, accept and to be published. (JCR Q1,中科院2区SCI);
26. Z. Wang, S. Zhou*, Y. Wang, L. Yang, M. Xing and P. Wen, “A Coherence-Oriented Fast Time-Domain Algorithm for UAV Swarm SAR Imaging With Trajectory Difference Correction and Data-Driven MOCO,” in IEEE Transactions on Geoscience and Remote Sensing, vol. 63, pp. 1-18, 2025 (JCR Q1,中科院1区SCI,TOP期刊);





