
副教授(特别研究员),博士生导师
邮箱:zdbao@bit.edu.cn
天线与阵列、相控阵校准技术、海面目标检测等。
一、个人简介:
包增娣,副教授(特别研究员),博士生导师。1989年生,安徽合肥人。当前主要从事天线与阵列、相控阵雷达校准、海面目标检测等方面研究。发表论文30余篇,其中以第一/通信作者在IEEE TAP、IEEE IoTJ等领域顶级期刊上发表论文11篇,单篇最高被引用200余次。担任SCI期刊IEEE J-ERM副主编(Associate Editor),多次在国际学术会议中担任分会场主席,是教育部博士论文评审专家、国家自然科学基金评审专家。
二、教育背景
2018,获工学博士学位,新加坡国立大学 电气与计算机工程系
2014,获工学硕士学位,电子科技大学 电子工程学院
2011,获工学学士学位,电子科技大学 电子工程学院
三、职业经历
2021.08 – 至今 副教授 北京理工大学 信息与电子学院
2018.08 – 2021.07 博士后研究员 新加坡国立大学 电气与计算机工程系
四、研究方向:
天线与阵列、相控阵校准技术、海面目标检测等。
五、研究概况:
a) 天线与阵列:研究用于不同场景的高性能天线,如用于汽车/交通雷达的波束赋形毫米波天线,用于飞行器平台的高增益共形端射天线;
b) 相控阵校准技术:研究有源相控阵通道幅相校准技术、波束指向快速校准技术等;
c) 海面目标检测:研究强杂波条件下的目标检测,海面回波数据增广等。
六、职业活动
Associate Editor, IEEE Journal of Electromagnetics, RF and Microwaves in Medicine and Biology
七、讲授课程
(双语)现代雷达与通信中的微波技术,本科生专业选修课
(英)雷达与通信系统中的高等微波技术,研究生专业选修课
[1] Z. Bao, Y. Liu, Y. Li, and C. Liang, “Efficient 2-D Pattern Synthesis for Planar Series-Fed Microstrip Antenna Arrays Using Physics-Informed Graph Convolutional Networks,” IEEE Trans. Antennas Propag., vol. 74, no. 4, pp. 2963-2973, 2026.
[2] Y. Zhao, Z. Bao, and Y. Li, “Low-Profile High-Gain Surface Wave-Based Endfire Antenna With No Beam Tilt,” IEEE Trans. Antennas Propag., vol. 74, no. 4, pp. 3109-3118, 2026.
[3] Z. B. Kexin Chen, Yitao Liu, and Yang Li, “Accurate and Efficient Pattern Synthesis Using Generative Adversarial Network for Series-Fed Microstrip Antenna Array With New Elements,” IEEE Trans. Antennas. Propag., vol. 74, no. 3, pp. 2833 - 2838, 2026.
[4] Z. Bao, Y. Zhao, K. Chen, Y. Zhao, Y. Li, X. Hu, and Z. Nie, “Compact Center-Fed SIW Slot Array Antenna With Low Sidelobe Level,” IEEE Trans. Antennas Propag., vol. 73, no. 11, pp. 9589-9594, 2025.
[5] Z. Bao, K. Chen, Y. Zhao, L. Zhang, Y. Li, Z. Shen, and Z. Nie, “W-Band Traveling-Wave Microstrip Comb-Line Antenna With Shaped Radiation Pattern for Intelligent Transportation Systems,” IEEE Internet of Things Journal, vol. 11, no. 15, pp. 26492-26502, 2024.
[6] Z. Bao, and Y.-X. Guo, “Novel Miniaturized Antenna With a HighlyTunable Complex Input Impedance for Capsules,” IEEE Trans Antennas Propag., vol. 69, 2021.
[7] Z. Bao, “Comparative Study of Dual-Polarized and Circularly-Polarized Antennas at 2.45 GHz for Ingestible Capsules,” IEEE Trans. Antennas Propag., vol. 67, no. 3, pp. 1488-1500, 2019.
[8] Z. Bao, Y.-X. Guo, and R. Mittra, “Conformal Capsule Antenna with Reconfigurable Radiation Pattern for Robust Communications,” IEEE Trans. Antennas Propag., vol. 66, no. 7, pp. 3354-3365, 2018.
[9] Z. Bao, Y.-X. Guo, and R. Mittra, “An Ultra-Wideband Conformal Capsule Antenna with Stable Impedance Matching,” IEEE Trans. Antennas Propag., vol. 65, no. 10, pp. 5086-5094, 2017.
[10] Z. Bao, Y.-X. Guo, and R. Mittra, “Single-Layer Dual-/Tri-Band Inverted-F Antennas for Conformal Capsule Type of Applications,” IEEE Trans. Antennas Propag., vol. 65, no. 12, pp. 7257-7265, 2017.
[11] Z. Bao, X. Zong, Z. Nie, and S. Yang, “Design and discussion of a broadband cross-dipole with high isolation and low cross-polarisation utilising strong mutual coupling,” IET Microw. Antennas Propag., vol. 8, no. 5, pp. 315-322, 2014.
[12] Z. Bao, Z. Nie, and X. Zong, “A Novel Broadband Dual-Polarization Antenna Utilizing Strong Mutual Coupling,” IEEE Trans. Antennas Propag., vol. 62, no. 1, pp. 450-454, 2014.
2024指导学生获得IEEE IMWS-AMP 最佳学生论文奖
2018 IEEE Singapore MTT/AP Joint Chapter最佳学生论文竞赛奖
2014电子科技大学优秀硕士学位论文
2014省级优秀毕业生
2012亚太天线与传播会议(新加坡)最佳学生论文奖