师资队伍

新一代电子信息技术

刘小明

发布时间:2026-06-03 浏览次数:

刘小明简历

一、基本信息

籍 贯:江西省永丰县

出生年月:1983年9月

工作单位:安徽师范大学

专业类别:电子信息工程

职务职位:教授

联系方式:xiaoming.liu@ahnu.edu.cn

通讯地址:安徽省芜湖市九华南路189号物电学院,241002

二、学习与工作履历

2002.9-2006.7 南京邮电大学,应用物理学专业,获学士学位

2006.9-2009.3 北京邮电大学,电磁场与微波技术专业,获硕士学位

2009.3-2012.7 英国伦敦大学,电子工程专业,获博士学位

2012.9-2017.8 北京邮电大学,历任讲师、副教授、博士生导师

2017.9-至今 安徽师范大学,教授、博士生导师

二、学术简介

安徽省优秀教师,中国电子学会优秀科技工作者,安徽省第五届创新创业领军人才特支计划入选者,安徽省优秀青年基金获得者,安徽省教坛新秀,全国电磁屏蔽材料标准化制定委员会委员,安徽省仪器仪表学会常务理事,安徽省光学学会理事,安徽省电子学会理事。主要研究领域:毫米波与太赫兹准光技术(毫米波5G通信、太赫兹光谱)、天线技术、射频与微波器件、生物电磁学。主持国家863项目、国家自然科学基金项目(青年项目、面上项目、专项项目)、国家留学回国人员科研启动基金、国家重点实验室基金(滚动资助),参加国家“十一五”、 “十二五”、 “十三五”民用航天预先研究项目、科技部重大仪器专项、科技部国际合作专项。发表SCI论文50多篇,出版专著2部(英文专著1部),获授权专利20多项,专利成果转化5项。指导学生获挑战杯、互联网+等赛事国家级铜奖。获安徽省科技进步二等奖1项、德国纽伦堡专利金奖1项。

三、科研项目

1. 国家自然科学基金项目专项项目,62541108,毫米波信息功能材料电磁张量测量理论与关键技术,2026/01-2026/12,12万元,主持,在研;

2. 国家自然科学基金项目,61871003,低损耗毫米波材料介电参数测量新方法研究,2019/01-2022/12,66万元,主持,已结题;

3. 国家863项目,XXX,毫米波XXXXXX,2012.10-2016.10,230万,主持,已结题;

4. 国家自然科学青年基金项目,61401031,纳米材料的电磁热效应在癌症治疗中关键技术的研究,2015/01-2017/12,25万元,主持,已结题;

5. 教育部留学回国人员科研基金项目,教外司留[2013]1792,毫米波准光技术的研究,2014/01-2016/12,3万元,主持,已结题;

6. 安徽省组织部特支计划(高校创新类),50万,主持,已结题;

7. 安徽省优秀青年基金,多频宽带关键微波器件研究,2308085Y02,20万,主持,在研;

8. 安徽省高校协同创新项目, 高功率微波与典型金属、非金属材料作用机理研究, GXXT-2021-027,总经费50万(负责经费20万),子课题负责人,在研;

9. 国家重点实验室基金,模拟沙尘雨雾可控环境大气室设计及毫米波太赫兹传输测量方法实验,CEMEE2020Z0205A(重点),18万,主持,结题。

四、学术成果

1. 标准制定

[1] GB/T 35680-2017, 液体材料微波频段使用开口同轴探头的电磁参数测量方法,国家标准,2017.12

[2] 20203812-T-604,固体材料使用自由空间法的电磁参数测量方法,国家标准,2020.09(制定过程中)

[3] GB/T 44645-2024,电磁屏蔽材料高功率微波屏蔽效能测量方法,国家标准,2024.09(颁布实施)

2. 专利

[1] 王宸,刘小明,张丹,刘荷雪,汪佳佳,刘凯. 5G Planar Electromagnetic Sensor Based on Complementary Split Ring, and Measuring Method(一种基于互耦环缝的5G平面电磁传感器及测量方法). PCT/CN2023/134470, 2024/04431, South Africa, 授权,2025年1月29日

[2] 王宸,刘小明,朱承辉,王海洋,张丹,汪佳佳,刘凯,甘露, 互耦环缝谐振结构的液体复介电常数传感器及测量方法, ZL202210094395.0,授权,2024.08.27(PCT南非同时申请) 张编妹,刘小明,俞硕,一种反射型宽带和频率可重构极化转换器,ZL202311589427.5,授权,2024.06.24

[3] Xiaoming Liu(刘小明), Haiyang Wang(王海洋,学生), Shuo Yu(俞硕), Lu Gan(甘露),Dan Zhang(张丹,学生), Ran Zhang(张然,老师),A Circular Polarized Antenna Working in Beidou, GPS and 5G Frequency Bands(一种工作于北斗、GPS、5G频段的圆极化天线),2032457,荷兰,授权,2024.01.25

[4] Xiaoming Liu(刘小明), Dan Zhang(张丹,学生), Shuo Yu(俞硕), Ye Wang(王晔),Lu Gan(甘露), Haiyang Wang(王海洋,学生), Dual-Band lossless dielectric constant measuring sensor based on spiral resonator(一种基于螺旋谐振器的双频段无损介电常数测量传感器), 2032460,荷兰,授权,2024.01.25

[5] Chen Wang(王宸), Xiaoming Liu(刘小明), Lu Gan(甘露), Chenghui Zhu(朱承辉,学生), Dan Zhang(张丹,学生), Haiyang Wang(王海洋,学生), Kai Liu(刘凯,学生), Jiajia Wang(汪佳佳,学生), Liquid complex permittivity sensor and measuring method for mutually coupled annular resonant structure(互耦环缝谐振结构的液体复介电常数传感器及测量方法), 2032421,荷兰,授权,2024.01.23

[6] 刘小明,王海洋,俞硕,甘露,王晔,张然,一种多频带矩形环缝隙天线ZL202210642860.X,授权,2023.07.23

[7] 刘小明,王海洋,俞硕,甘露,王晔,张然,一种用于北斗,GPS的双频带圆极化天线,ZL202210642909.1,授权,2023.07.04王宸,刘小明,张丹,刘荷雪,汪佳佳,刘凯,一种基于互耦环缝的5G平面电磁传感器及测量方法,ZL202211079153.0,授权且转让,2023.6.13

[8] 刘小明,俞硕,张娟,一种基于多缺陷地的二端口MIMO天线, ZL202211072479.0,授权,2023.3.29

[9] 刘小明,张丹,俞硕,王晔,甘露,王海洋,一种基于螺旋谐振器的双频段无损介电常数测量传感器, ZL202110984878.3,授权且转让,2023.1.13

[10] Liu Xiaoming,Zhu Chenghui,Gan Lu,Wang Chen,Zhang Dan,Wang Haiyang,Liu Hexue,Wang Jiajia. Vortex Electromagnetic Metasurface Structure and Vortex Electromagnetic Wave Generation Method Thereof. 2022/07622, South Africa, 授权,2022.10.26

[11] Xiaoming Liu, Dan Zhang, Shuo Yu, Chen Wang, Ye Wang, Ran Zhang. High Sensitivity Dual-band Microwave Sensor for Measuring Low-Dielectric Constant,2022/07775, South Africa, 授权,2022.10.26

[12] Xiaoming Liu, Haiyang Wang, Shuo Yu, Lu Gan, Ye Wang, Ran Zhang. Multiband Rectangular Ring Slot Antenna,2022/07774, South Africa, 授权,2022.10.26

[13] 张娟,刘小明,王宸,甘露,周忆鑫,齐涛.一种基于5G频段和WLAN频段的四频带仙人掌形小型微带天线.ZL202010938235.0,授权且转让,2022.11.22

[14] 刘小明,朱承辉,甘露,王宸,张丹,王海洋,刘荷雪,汪佳佳,一种涡旋电磁超表面结构及其涡旋电磁波产生方法,ZL202210022967.4,授权,2022.11.22

[15] 刘小明,俞硕,甘露.一种设计遥感扫描天线的新方法.ZL201910852438.5,授权且转让,2021.6.30

[16] 周忆鑫,刘小明,齐涛,王宸.一种反射型双频带双旋向微波段线-圆极化转换器.ZL202010471747.0,授权且转让,2021.7.30

3. 期刊论文与专著

[1] Shengjie Chen, Xiaoming Liu(*), Shuo Yu, Aiqing Zhang, Lu Gan, Xiaojun Jing. Compact Broadband Four-Port MIMO Antenna for AAV to Assist Automotive Communication [J]. IEEE Internet of Things Journal, 2026, 13(4): 5442 - 5450. doi: 10.1109/JIOT.2025.3557957

[2] Lu Gan, He Huang, Xiaoming Liu(*), Shuo Yu, Xiaojun Jing, Yuanhao Cui. A Low-Profile Flexible Tri-band Antenna for Both Communication and Navigation Uses on AAVs [J]. IEEE Antennas and Wireless Propagation Letters, 2025, 24(12), 4920-4924. doi:10.1109/LAWP.2025.3615963

[3] Lu Gan, Bohua Mao, Xiaoming Liu(*), Shuo Yu, Xiaojun Jing, Yuanhao Cui. A Compact Antenna Array with Integrated Feeding Structure for Intelligent Vehicular Transportation Systems Application[J]. IEEE Internet of Things Journal, 2025, 12(12):22522-22532, doi: 10.1109/JIOT.2025.3553896.

[4] Chen Wang, Xiaoming Liu(*), Dan Zhang, Xiaofan Yang. A Multi-Band High-Sensitivity Microwave Sensor for Simultaneous Detection of Two Dielectric Materials [J]. Review of Scientific Instrumentation, 2025, 96, 015004. doi:10.1063/5.0235295

[5] Shengjie Chen, Xiaoming Liu(*), Xiaojun Jing, Yuanhao Cui. A Wideband Quad-Port 3D MIMO Antenna Decoupled with DGS Structure for Roadside Units[J]. IEEE Antennas and Wireless Propagation Letters, 2025,24(3):616-620, doi: 10.1109/LAWP.2024.3509869

[6] Bianmei Zhang, Xiaofan Yang, Xiaoming Liu(*).Multi-functional active frequency reconfigurable polarization converter using a simple DC bias circuit [J].Optics Express, 2024, 32(18):32015-32027,doi: 10.1364/OE.535460

[7] Chen Wang, Xiaoming Liu(*), Dan zhang, Xiaofan Yang, Ran Zhang and Ye Wang. A high sensitivity planar electric-magnetic isolated sensor for full characterization of magneto-dielectric materials[J]. Measurement, 2024, 232, 114708, doi: 10.1016/j.measurement.2024.114708

[8] 王宸, 刘小明(*), 刘志甫, 张丹. 针对不同形状和尺寸陶瓷材料的双频自适应微波介电传感器(英文)[J]. 硅酸盐学报, 2023, 51(4):842-850. DOI: 10.14062/j.issn.0454-5648.20220447

[9] Xiaoming Liu(*), Dan Zhang, Shuo Yu, Chen Wang, Xiaofan Yang, Ye Wang. A Dual-Band Resonator Sensor for Low Permittivity Characterization[J]. IEEE Transactions on Instrumentation and Measurement, 2022, 71, Art. No. 8006511, doi:10.1109/TIM.2022.3210937

[10] 刘小明(*),俞俊生,陈晓东.毫米波及太赫兹准光学技术:理论、应用与发展[J]. 太赫兹科学与电子信息学报,2022,20(7):631-652, DOI: 10.11805/TKYDA2021299

[11] Xiaoming Liu(*), Yixin Zhou, et al. Dual-Band Dual-Rotational-Direction Angular Stable Linear-to-Circular Polarization Converter[J]. IEEE Transactions on Antennas and Propagation, 2022, vol. 70, in press, doi:10.1109/TAP.2021.3138533.

[12] Chenghui Zhu, Xiaoming Liu(*), Chen Wang, Xiaofan Yang, Lu Gan, Lijun Sun. Smile face array: generating oblique incident and front output vortex beam for both TE and TM waves[J]. IET Microwave, Antennas & Propagation, 2022,16(6):350-358, doi:10.1049/mia2.12247

[13] Xiaoming Liu(*), Lu Gan, Bing Yang(*). Millimeter-Wave Free-Space Dielectric Characterization[J]. Measurement, 2021, 179:109472. DOI:10.1016/j.measurement.2021.109472.

[14] Xiaoming Liu(*), Haiyang Yu, Lu Gan, Hao Chen, Xiaofan Yang, Junsheng Yu, Xiaodong Chen. A Gaussian Beam Method for Push Broom Antenna Design[J]. IEEE Transactions on Antennas and Propagation, 2020, vol. 68, no.12, 8144-8149, doi:10.1109/TAP.2020.2985499.

[15] Xiaoming Liu(*), Shuo Yu, Lu Gan, Junsheng Yu. Broadband Quasi-Optical Dielectric Spectroscopy for Solid and Liquid Samples[J]. International Journal of Infrared, Millimeter, and Terahertz Waves, 2020, 41(7), 810–824, DOI: 10.1007/s10762-020-00710-5.

[16] Xiaoming Liu(*), Yumin Wang, Tao Zhang, Lu Gan, Jianjun Nan, Xiang Gao. A Compact Multi-Band Quasi-Optical System for Plasma Detection[J]. IEEE Transactions on Antennas and Propagation, 2020, vol. 68, no.6, 4916-4924. doi:10.1109/TAP.2020.2970126.

[17] Xiaoming Liu(*), Hui-jiu an Chen, Renjie Xu, Junsheng Yu. Dispersed Silver Nanowires Enhance Radiofrequency Heating [J]. IEEE Transactions on Nanotechnology, 2019, 18(1): 279-286. doi: 10.1109/TNANO.2019.2903109

[18] 刘小明,于海洋,王海,俞俊生,陈晓东.多模式超高斯馈源的设计与分析[J].上海航天,2018,35(2):97-102. doi:10.19328/j.cnki.1006-1630.2018.02.012

[19] Xiang Li, Xiaoming Liu(*), Kevin Ronald, Wenlong He, Yang Zeng, Yasir Alfadhl, Robert Donna, Adrain Cross, Xiaodong Chen, “Investigation of Frequency-Selective Surfaces for a THz Gyromultiplier Output System”, IEEE Transactions on Electron Devices , 2017,64(11) : 4678-4685. (SCI)

[20] Xiang Li, Xiaoming Liu, Yasir Alfadhl, Kelvin Ronald, Wenlong He, Adrain Cross, Xiaodong Chen, “A Dual-Frequency Quasi-Optical Output System for a THz Gyro-Multiplier” IEEE Transactions on Terahertz Science and Technology, 2016, 6(5): 674 – 681 (SCI)

[21] 刘小明.介电常数及其测量技术.北京:北京邮电大学出版社,2015.6

[22] Xiaoming Liu, Hui-jiuan Chen, Xiaodong Chen, Yasir Alfadhl, Junsheng Yu, and Dongsheng Wen, "Radiofrequency heating of nanomaterials for cancer treatment: Progress, controversies, and future development," Applied Physics Reviews, 2, 011103 (2015) (SCI) (IF:14.31)

[23] Xiaoming Liu, Hui-jiuan Chen, Xiaodong Chen, Yasir Alfadhl, Junsheng Yu, and Dongsheng Wen, " Electromagnetic heating effect of aggregated gold nanoparticle colloids," JOURNAL OF APPLIED PHYSICS 115(9), 094903 (2014) (SCI)

[24] Xiaoming Liu, Hui-jiuan Chen, Yasir Alfadhl, Xiaodong Chen, Clive Parini, Dongsheng Wen, “Conductivity and Frequency Dependent Specific Absorption Rate,” Journal of Applied Physics, Vol.113 , No.7 , 074902, 2013.(SCI)

[25] Xiaoming Liu, Hui-jiuan Chen, Bin Yang, Xiaodong Chen, Clive Parini, Dongsheng Wen, “Dielectric Property Measurement of Gold Nanoparticle Dispersions in the Millimeter Wave Range,” J Infrared Milli Terahz Waves, Vol. 34, No.2, pp.140–151, 2013. (SCI)

[26] X. Liu, H-J. Chen, X. Chen, et al, “Low-frequency Heating of Gold Nanoparticle Dispersions for Non-Invasive Thermal Therapies,” Royal Society of Chemistry Nanoscale,Vol.4, No.13, pp. 3945-3953,2012. (SCI)

[27] X. Liu, H-J. Chen, X. Chen, et al, “High-power calibration and measurement method for bio-electromagnetic study,” IET Measurement Science and Technology, Vol.6, No.6, pp.420-426, 2012. (SCI)

[28] 陈晓东,刘小明. 太赫兹生物分子光谱学一生命之谜的窗口,10000个科学难题-信息科学卷[M].北京:科学出版社,2011.