教授
刘强,男,教授、博士生导师、岳麓学者、IEEE Senior Member。2014年博士毕业于北京邮电大学电子工程学院,获电子科学与技术专业博士学位;2017年新加坡国立大学访问学者。近年来,针对微波无线通信5G/6G、高能微波军事与国防应用,主要开展射频微波电路、高功率微波技术、天线技术研究。担任IEEE Transactions on Antennas and Propagation、IEEE Transactions on Microwave Theory and Techniques等微波与天线领域TOP期刊的审稿人。主持装备预研基金、国家自然科学基金、博士后特别资助等科研项目20余项,发表SCI论文40余篇,授权中国发明专利10余项。
Email:lq_gfkd@126.com
[1]装备预研基金,2024/07---2026/12
[2]湖南省自然科学基金,2024/01---2026/12
[3]长沙市自然科学基金,2024/01---2025/12
[4]国家自然科学基金,2016/01---2018/12
[5]博士后科学基金特别资助,2017/07---2018/12
[6]博士后科学基金面上项目,2016/07---2017/12
[1]中国人民解放军国防科技大学第63研究所:基于基于知识图谱的智能语义问答研究(2021/07-2022/06)
[2]中国航发株洲动力机械研究所:基于计算机视觉的发动机部件损失识别研究(2020/12-2022/12)
[3]军事医学研究院生物安全处:炭疽事件早期决策支持工具软件研发(2021-07/2022-06)
[4]中国人民解放军国防科技大学计算机学院:飞腾众核处理器面向人工智能和科学工程计算的共性支撑软件开发(2020/01-2021/01)
[5]装备发展部空军预先研究项目:基于机器学习的航空发动机典型气路故障智能诊断和预测技术研究(2020/09-2021/07)
[6]国防基础科研核科学挑战:百万核数值模拟性能优化与预测方法研究(2019/01-2021/01)
[7]国家重点研发计划:基于国家高性能计算环境的教育实践平台二期(2018/07-2020/06)
[8]国家重点研发计划:基于国家高性能计算环境的教育实践平台(2016/07-2018/08)
[9]国家重点研发计划:HPC教育实践软件支撑平台研发项目(2018/09-2021/08)
[10]国家自然科学青年基金项目:基于SAT编码的最大团并行算法的设计、优化及其应用研究(2017/01-2019/12)
发表论文
[1] Liu, Wang; Liu, Qiang*; et al., “Losses behavior explanation and its impact on the performance of load-modulated power amplifiers”, IEEE Transactions on Microwave Theory and Techniques, Early Access, 2026.
[2] Liu, Qiang*; Zhao, Min; et al., “A novel compact circular waveguide TM01–TE11 mode converter for high-power microwave applications”, IEEE Transactions on Microwave Theory and Techniques,Vol. 74, No. 3, pp. 2880-2887, 2026.
[3] Wu, Huawei; Liu, Qiang*; et al.,“A wideband high-efficiency continuous-mode class-GF-1 power amplifier with second harmonic suppression,”IEEE Microwave and Wireless Technology Letters, Vol. 34, No. 10, pp. 1166-1169, 2024.
[4] Liu, Qiang*; Zhang, Chen; et al., “A compact wideband high-power microwave circular waveguide TM01–TE11 mode converter”, IEEE Microwave and Wireless Technology Letters, Vol. 33, No. 12, pp. 1603-1606, 2023.
[5] Liu, Wang; Liu, Qiang*; et al., “Dual-band high-efficiency power amplifier based on a series of inverse continuous modes with second-harmonic control”, IEEE Microwave and Wireless Technology Letters, Vol. 33, No. 8, pp. 1199-1202, 2023.
[6] Yang, Canye; Liu, Qiang*; et al., “Compact ultrawideband high-efficiency rectifier using an exponential tapered transmission line”, IEEE Microwave and Wireless Technology Letters. Vol. 33, No. 5, pp. 595-598, 2023.
[7] Wan, Zipeng; Liu, Qiang*; et al.,“Dual-band high-efficiency power amplifier with adjustable transmission zero”, IEEE Transactions on Circuits and Systems II: Express Briefs, Vol. 70, No. 2, pp. 536-540, 2023.
[8] Liu, Wang; Liu, Qiang*; et al., “Analytical dual-band matching approach for concurrent high-efficiency power amplifiers”, IEEE Transactions on Circuits and Systems II: Express Briefs, Vol. 69, No. 12, pp. 4769-4773, 2022.
[9] Xiao, Yang; Liu, Qiang*; et al., “A planar low-profile meander antenna (PLMA) design for wireless terminal achieving low RF interference and high isolation in multi-antenna systems”, IEEE Transactions on Electromagnetic Compatibility, Vol. 64, No. 3, pp. 674-682, 2022.
[10] Li, Guolin; Liu, Qiang*; et al., “A low standing-wave-ratio wideband mode-transducing antenna for high power microwaves”, IEEE Transactions on Antennas and Propagation, Vol. 68, No. 7, pp. 5182-5187, 2020.
[11] Liu, Qiang*; Chen, Zhining; et al., “Circular polarization and mode reconfigurable wideband orbital angular momentum patch array antenna”, IEEE Transactions on Antennas and Propagation, Vol. 66, No. 4, pp. 1796-1804, 2018.
[12] Liu, Qiang*; Chen, Zhining; et al., “Compact ultra-wideband circularly-polarized weakly coupled patch array antenna”, IEEE Transactions on Antennas and Propagation, Vol. 65, No. 4, pp. 2129-2134, 2017.
[13] Liu, Qiang*; Shen, Junyu; et al., “Compact 0.92/2.45 GHz dual-band directional circularly polarized microstrip antenna for handheld RFID reader applications”, IEEE Transactions on Antennas and Propagation, Vol. 63, No. 9, pp. 3849-3856, 2015.
[14] Liu, Qiang*; Shen, Junyu; et al., “Dual-band circularly-polarized unidirectional patch antenna for RFID reader applications”, IEEE Transactions on Antennas and Propagation, Vol. 62, No. 12, pp. 6428-6434, 2014.
[15] Liu, Qiang*; Liu, Yuanan; et al., “Wideband single-layer 90° phase shifter using stepped impedance open stub and coupled-line with weak coupling”, IEEE Microwave and Wireless Components Letters, Vol. 24, No. 3, pp. 176-178, 2014.
[16] Liu, Qiang*; Shen, Junyu; et al., “Low-cost compact circularly polarised directional antenna for universal UHF RFID handheld reader applications”, IEEE Antennas and Wireless Propagation Letters, Vol. 14, pp. 1326-1329, 2015.
[17] Liu, Qiang*; Liu, Yuanan; et al., “Compact wideband circularly polarized patch antenna for CNSS applications”, IEEE Antennas and Wireless Propagation Letters, Vol. 12, pp. 1280-1283, 2013.
授权发明专利
[1]基于耦合微带线耦合器的紧凑型宽带双圆极化贴片天线,2015.02,中国,201310120397.3
[2]基于大功率应用的平面微带平衡到平衡的功率分配器,2014.12,中国,201210567670.2
[3]集成平面阻抗匹配巴伦的射频识别近场天线,2014.09,中国,201310019616.9
[4]一种天线,2020.07,中国,201711081492.1
[5]一种天线,2020.09,中国,201910126139.3
[6]一种近场/远场可重构RFID读写天线,2022.05,中国,201911247520.1
[7]一种高功率微波圆波导TM01-TE11模式转换器,2022.11,中国,202210229227.8
[8]一种高功率微波同轴TEM-圆波导TE11模式转换器,2023.01,中国,202210717089.8
[9]一种UHF频段RFID近场读写器天线,2025.09,中国,202211470119.6
[10]一种高功率微波圆波导TM01-TE11模式转换器,2025.10,中国,202211648532.7
[1]面向宽带非恒包络信号的射频功放高线性高能效机理与实现方法,中国通信学会自然科学一等奖,部省级,2023年4月
[2]低导热材料高稳定连续式微波加热关键技术及成套装备,中国机械工程学会科技进步一等奖,部省级,2025年12月
湖南大学-国家卓越工程师学院 版权所有
校址:湖南省长沙市岳麓区麓山南路麓山门 | 邮箱:zgxy@hnu.edu.cn | 邮编:410082
湘教QS4-201312-010059 湘ICP备09007699号

微信公众号