通知公告
教师风采

鲍秀娥


                     鲍秀娥

                             预聘副研究员,博士生导师

                                         办公电话:15901014833

                                         电子邮件:xiue.bao@bit.edu.cn

                                         办公地点:4号教学楼218



所在学科

电子科学与技术、集成电路科学与工程

研究方向

①微波毫米波太赫兹精密测量:高频探针、芯片测量与建模、校准芯片与算法、芯片测试系统自动化设计;

②微波传感理论与应用:材料介电特性和磁导率表征、微波传感、生物医疗探测;

③基于增材制造和微纳加工工艺的微波太赫兹器件与芯片;

④机器学习/优化算法+①②③。

个人简历

2021/09-至今:北京理工大学,集成电路与电子学院,预聘副研究员

2020/07-2021/09:北京理工大学,信息与电子学院,助理教授

2020/11-2021/07:西安交通大学,信息与通信工程学院,研究员,博导

2020/03-2020/11:鲁汶大学(KU Leuven),电气工程学院,博士后

2015/12-2020/03:鲁汶大学(KU Leuven),电气工程学院,博士

2014/11-2015/11:鲁汶大学(KU Leuven),电气工程学院,研究助理

代表性论著

[1] L. Wang, X. Bao*, C. Liu, W. Yan, B. Jiang, Y. Wang, L. Si, D. Schreurs, Z. Shi, and A. Zhang, “Highly Compact Time-Domain Borehole Radar With Time-Varying Gain Equivalent Sampling,” IEEE Transactions on Microwave Theory and Techniques, Early Access, pp. 1-13, 2024. (SCI期刊论文,Top期刊)

[2] L. Wang, X. Bao*, C. Liu, Y. Wang, L. Si, D. Schreurs, and A. Zhang, “Adaptive Microwave Ablation System for Localized Tumor Treatment,” IEEE Transactions on Microwave Theory and Techniques, vol. 71, no. 7, pp. 3114-3125, 2023. (SCI期刊论文,Top期刊)

[3] L. Wang, X. Bao*, Y. Liu, S. Li, D.Schreurs, L. Si, A. Zhang, and Z. Shi, “Development of a Compact Subnanosecond Pulse Transmitter With a Single Low-Power Supply,” IEEE Microwave and Wireless Technology Letters, vol. 33. no. 8, pp. 1235-1238, 2023. (SCI期刊论文,重要期刊)

[4] H. Yuan, Z. Liu, L. Wang, L. Si, G. Crupi, D. Schreurs, and X. Bao*, “SLM Printed Wideband Circularly Polarized Multilayer Antenna Array With Reduced Impact by the Manufacturing Imperfection,” IEEE Access, vol. 11, pp. 105368-105378, 2023. (SCI期刊论文,重要期刊;邀请论文)

[5] Y. Wei, L. Si, L. Dong, Q. Shen, T. Ma, H. Sun and X. Bao, “Mid-IR tunable graphene metasurface for ultrasensitive molecular fingerprint retrieval and refractive index sensing,” Journal of Materials Chemistry C, vol. 11, pp. 16501-16508, 2023. (SCI期刊论文,Top期刊)

[6] G. Cheng, L. Si, Q. Shen, N. Rong, Q. Yuan, X. Bao, H. Sun, J. Ding, “Transmissive Pancharatnam-Berry Metasurfaces with Stable Amplitude and Precise Phase Modulations using Dartboard Discretization Configuration,” Optics Express, vol.31, no.19, pp. 30815-30831, 2023. (SCI期刊论文,Top期刊)

[7] W. Xing, L. Si, L. Dong, H. Zhang, T. Ma, H. Sun, X. Bao, and J. Ding, “Rapid Design of Hybrid Mechanism Metasurfacewith Random Coding for Terahertz Dual-BandRCS Reduction,” Optics Express, vol.31, no.17, pp. 28444-28458, 2023. (SCI期刊论文,Top期刊)

[8] M. Wei, P. Li, Y. Lei, X. Bao, and J. Ma, ”Biothermal Heating on Human Skin by Millimeter and Sub-Terahertz Waves in Outdoor Environment-A Theoretical Study,” Applied Sciences, vol.13, no.14, pp. 8305, 2023.

[9] P. Tang, X. Zheng, T. Ma, G. Cheng, G. Wu, X. Bao, H. Sun, J. Ding, and L. Si, “Terahertz Dual-Band Dual-Polarization 3-Bit Coding Metasurface for Multiple Vortex Beams Generation,” Electronics, vol. 12, no. 8, pp. 1868, 2023. (SCI期刊论文,重要期刊)

[10] H. Yuan, J. Li, Z. Zhao, Z. Wang, M. Bruno Lodi, G.Gugliandolo, N. Donato, G. Crupi, L. Si, and X. Bao*, “Development of a Wideband Slotted Antenna Array with Low Profile and Low Sidelobe,” Electronics, vol. 12, no. 2, pp. 278, 2023. (SCI期刊论文,重要期刊;邀请论文)

[11] L. Wang, X. Bao*, S. Yan, Y. Wang, and A.Zhang, “A Minimally Invasive Microwave Ablation Antenna With Highly Localized Ablation Zone,” IEEE Antennas and Wireless Propagation Letters, vol. 21, no. 8, pp. 1587-1591, 2022. (SCI期刊论文,重要期刊)

[12] H. Zhang, L. Si, T.Ma, L. Dong, R.Niu, X. Bao, H. Sun, and J. Ding, “Triple-Band Terahertz Chiral Metasurface for Spin-Selective Absorption and Reflection Phase Manipulation,” Electronics, vol. 11, no. 24, pp. 4195, 2022. (SCI期刊论文,重要期刊)

[13] Z. Zhao, J. Li, H. Yuan, Z. Wang, G. Gugliandolo, N. Donato, G. Crupi, L. Si, and X. Bao*, “Electrical Characterization of Through-Silicon-via-Based Coaxial Line for High-Frequency 3D Integration,” Electronics, vol. 11, no. 20, pp. 3417, 2022. (SCI期刊论文,重要期刊;邀请论文)

[14] L. Wang, X. Bao*, S. Yan, Y. Wang, and A. Zhang, “A minimally invasive microwave ablation antenna with highly localized ablation zone,” IEEE Antennas and Wireless Propagation Letters, vol. 21, no. 8, Aug. 2022. (SCI期刊论文,重要期刊)

[15] X. Bao*, L. Wang, Z. Wang, J. Zhang, G. Crupi, A. Zhang, “Simple, fast, and accurate broadband complex permittivity characterization algorithm: methodology and experimental validation from 140 GHz up to 220 GHz,” Electronics, Vol. 11, no. 3, pp. 366, Jan. 2022. (SCI期刊论文,重要期刊;邀请论文)

[16] M. Zhang, X. Bao*, P. Barmuta, J. Bao, T. Markovic, I. Ocket, D. Schreurs, and B. Nauwelaers, “Fully automated electrically controlled tunable broadband interferometric dielectric spectroscopy for aqueous solutions,” IEEE Transactions on Microwave Theory and Techniques, vol. 70, no. 1, pp. 532-541, Jan. 2022. (SCI期刊论文,Top期刊)

[17] M. Zhang, H. E. Ghannudi, L. Marcaccioli, S. Montori, X. Bao*, T. Markovic, I. Ocket, R. Sorrentino, and B. Nauwelaers, “High-sensitivity large-throughput broadband tunable microwave wear debris sensing system,” IEEE Sensors Journal, vol. 22, no. 1, pp.304-314, Jan. 2022. (SCI期刊论文,重要期刊)

[18] X. Bao, M. Zhang*, I. Ocket, Z. Liu, B. Nauwelaers and D. Schreurs, “Impact of measurement uncertainty on modeling of dielectric relaxation in aqueous solutions,” IEEE Transactions on Microwave Theory and Techniques, vol. 69, no. 9, pp. 4082-4092, July 2021. (SCI期刊论文,Top期刊)

[19] X. Bao*, G. Crupi, J. Bao, M. Kraft, B. Nauwelaers, and D. Schreurs, “Numerical modeling of two microwave sensors for biomedical applications,” International Journal of Numerical Modelling: Electronic Networks Devices and Fields, vol. 34, no. 1, pp. e2810, Jan. 2021. (邀请论文)

[20] G. M. Rocco, P. Barmuta, X. Bao, D. Schreurs*, and M. Bozzi, “Efficient approach for dielectric permittivity measurements of liquids adopting a 3D-printed cavity resonator,” Microwave and Optical Technology Letters, vol, 63, no. 11, pp. 3797-2802, Nov. 2021.

[21] G. Crupi*, X. Bao, O. Babarinde, D. Schreurs and B. Nauwelaers, “Biosensor using a one-port interdigital capacitor: a resonance-based investigation of the permittivity sensitivity for microfluidic broadband bioelectronics applications,” Electronics, vol. 9, no. 2, pp. 340, 2020. (SCI期刊论文,重要期刊)

[22] X. Bao*, M. Zhang, I. Ocket, J. Bao, D. Kil, Z. Liu, B. Puers, D. Schreurs, and B. Nauwelaers, “Integration of interdigital electrodes in split ring resonator for detecting liquid mixtures,” IEEE Transactions on Microwave Theory and Techniques, vol. 68, no. 6, pp. 2080-2089, Mar. 2020. (SCI期刊论文,Top期刊)

[23] X. Bao*, I. Ocket, J. Bao, Z. Liu, B. Puers, D. Schreurs, and B. Nauwelaers, “Modelling of coplanar interdigital capacitor for microwave microfluidic application,” IEEE Transactions on Microwave Theory and Techniques, vol. 67, no. 7, pp. 2674-2683, July 2019. (SCI期刊论文,Top期刊)

[24] X. Bao*, J. Bao, I. Ocket, S. Liu, D. Schreurs, D. Kil, Z. Liu, M. Zhang, B. Puers, and B. Nauwelaers, “A simplified dielectric material characterization algorithm for both liquids and solids,” IEEE Transactions on Electromagnetic Compatibility, vol. 61, no. 5, pp. 1639-1646, Oct. 2019. (SCI期刊论文,重要期刊)

[25] X. Bao*, I. Ocket, J. Bao, J. Doijen, J Zheng, D. Kil, Z. Liu, B. Puers, D. Schreurs, and B. Nauwelaers, “Broadband dielectric spectroscopy of cell cultures,” IEEE Transactions on Microwave Theory and Techniques, vol. 66, no. 12, pp. 5750-5759, Dec. 2018. (SCI期刊论文,Top期刊)

[26] X. Bao*, S. Liu, I. Ocket, J. Bao, D. Kil, M. Zhang, B. Puers, D. Schreurs, and B. Nauwelaers, “A multiline multimaterial calibration method for liquid characterization,” IEEE Microwave and Wireless Components Letters, vol. 28, no. 8, pp. 732-734, Aug. 2018. (SCI期刊论文,重要期刊)

[27] X. Bao*, S. Liu, I. Ocket, J. Bao, D. Schreurs, S. Zhang, C. Cheng, K. Feng, and B. Nauwelaers, “A general line-line method for dielectric material characterization using conductors with the same cross-sectional geometry,” IEEE Microwave and Wireless Components Letters, vol. 28, no. 4, pp. 356-358, Apr. 2018. (SCI期刊论文,重要期刊)

[28] X. Bao*, S. Liu, I. Ocket, Z. Liu, D. Schreurs, and B. Nauwelaers, “A modeling procedure of the broadband dielectric spectroscopy for ionic liquids,” IEEE Transactions on NanoBioscience, vol. 17, no. 4, pp. 387-393, Oct. 2018.

[29] X. Bao*, I. Ocket, G. Crupi, D. Schreurs, J. Bao, D. Kil, B. Puers, and B. Nauwelaers, “A Planar one-port microwave microfluidic sensor for microliter liquids characterization,” IEEE Journal of Electromagnetics, RF and Microwaves in Medicine and Biology, vol. 2, no. 1, pp. 10-17, Mar. 2018.

[30] 鲍秀娥等,一种用于芯片高频测试的共面波导校准件设计方案,国家发明专利,CN118226229A

[31] 鲍秀娥等,一种宽频带亚毫米波介电谱测试芯片,国家发明专利,CN117990991A

[32] 鲍秀娥等,一种基于功率分配的双频段复介电常数测量装置,国家发明专利,CN117706207A

[33] 鲍秀娥等,一种低副瓣背腔缝隙阵列天线,国家发明专利,CN116130979A

[34] 鲍秀娥等,一种紧凑型抑制带外的高Q 腔体滤波器及其制作方法,国家发明专利,CN115939705A

[35] 鲍秀娥等,一种基于金属增材制造技术的液体浓度检测仪及检测方法,国家发明专利,CN116297725A

[36] 鲍秀娥等,一种可实现矢量网络分析仪去嵌入的校准设备及方法,国家发明专利,CN117233681A

[37] 鲍秀娥等,一种具有时变增益的探地雷达等效采样方法及系统,国家发明专利,CN113805172A

[38] 鲍秀娥等,液体毫米波宽频带介电谱表征软件,软件著作权,2024SR0218665

[39] 鲍秀娥等,矢量网络分析仪SOLT校准软件,软件著作权,2024SR0222353

[40] 鲍秀娥等,矢量网络分析仪TRL校准软件,软件著作权,2024SR0223567

[41] 鲍秀娥等,矢量网络分析仪单端口校准软件,软件著作权,2024SR0227753

[42] 鲍秀娥等,矢量网络分析仪十六项校准软件,软件著作权,2024SR0220812

[43] 鲍秀娥等,液体复介电常数提取软件,软件著作权,2024SR0222522

[44] 鲍秀娥等,矢量网络分析仪LRM校准软件,软件著作权,2024SR0220861

[45] 鲍秀娥等,基于深度学习的增材制造加工的金属器件裂纹识别系统,软件著作权,2023SR0579565

[46] 鲍秀娥等,矢量网络分析仪MTRL校准软件,软件著作权,2023SR0579564

研究成果

负责或参与北京理工大学的《射频电路综合设计(课赛结合)》、《电磁场与微波课程设计》、《微波测量方法与技术》和《毫米波传感器及应用》,西安交通大学的《电磁场与波》和《微波综合测量》,以及比利时鲁汶大学的《数字通信系统》等本科或者研究生教学。长期从事微波毫米波太赫兹器件设计与建模、片上精密测量系统优化与校准技术、基于微波和微流控技术的材料电磁性能表征、电磁传感器件与系统设计等相关研究。获得2018年度IEEE MTT-S Fellowship,2019年度“国家优秀自费留学生”,2021年度西安交通大学“青年拔尖人才”,2020年度西安交通大学“思源学者”。 主持和参与国家自然科学基金、科技部重点研发项目、比利时弗兰德研究基金等科研项目10余项。在国内外学术刊物上发表SCI/EI收录学术论文70余篇,申请和授权专利及软件著作权近20项,受邀作学术报告10余次。

主持课题

*《毫米波段细胞液宽频带介电谱测量技术基础研究》(国家自然科学基金,编号:62201037,负责人)

*《太赫兹微流控芯片介电谱测试应用开发》(国家重点研发计划,编号:2023YFF0717504,负责人)

* 《太赫兹波导探针及校准片研制》(国家重点研发计划,编号:2023YFF0717502,子课题负责人)

*《高性能集成太赫兹超表面阵列构筑及电磁波调控机理研究》(国家自然科学基金,编号:62271056,参与人)

*《Development of Flexible Microwave Sensors for Characterizing Biological Materials》(比利时弗拉芒政府,编号:0419052173,负责人)

*《Broadband electrical sensing and ablation devices for endoscopic cancer diagnostics and treatment》(比利时佛兰德研究基金会,编号:0419052173,参与人)

*《XXX模型构建》(横向,负责人)

*《面向复杂三维方向图合成问题的多频天线阵列设计》(横向,负责人)

* 《基于微流体技术的吸波材料电磁参数测试基片设计及加工》(横向,负责人)

*《吸波材料测量平台(含探针)及样片加工、仿真分析》(横向,负责人)

*《基于微波微流控的香味喷发技术》(横向,负责人)

荣获奖项

*2021年获得西安交通大学“思源学者”

*2020年获得西安交通大学“青年拔尖人才”

*2020年获得比利时PDM基金

*2019年国家优秀自费留学生

*2018年国际微波理论和技术协会(IEEE MTT-S)科研奖

*2017年欧洲天线学校(ESoA)技术交流奖

学术兼职

* IEEE会员,IEEE MTT-S会员

* SCI期刊《Applied Sciences》专刊客座编辑

* SCI期刊《Electronics》专刊客座编辑

* 国家自然科学基金通信评审专家

*《IEEE Transactions on Microwave Theory and Techniques》、《IEEE Transactions on Antennas and Propagation》、《IEEE Microwave and Wireless Components Letters》、《IEEE Antennas and Wireless Propagation Letters》、《IEEE Transactions on Instrumentation and Measurement》《IEEE Electron Device Letters》、《IEEE Sensors Journal》、《IEEE Journal of Electromagnetics, RF and Microwaves in Medicine and Biology》等期刊审稿专家

“IEEE国际集成电路技术与应用学术会议(ICTA)”、“国际无线会议(IWS)”、全国微波毫米波会议(NCMMW)、“JS微波太赫兹电磁兼容技术学术会议”等国内外学术会议TPC成员和分会主席