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长期从事面向5G/B5G/6G的人工智能驱动的天线、射频电路及芯片设计的理论与技术研究。主持包括国家重点研发计划课题、国家自然科学基金委面上项目、青年项目、江苏省自然科学基金青年基金项目、中兴通讯-东南大学B5G/6G技术联合实验室项目(长期项目)、江苏省双创计划(双创博士)、南京市留学人员科技创新择优资助项目等多个项目,作为主要人员参与了国家863计划等多个课题与项目。已在包括IEEE Trans. on AP、IEEE AWPL等领域权威刊物或会议上发表论文50余篇,并撰写书稿章节1篇,出版专著一本,获得国内外专利授权10余项,并多次进入包括IEEE APS-URSI、IEEE EuCAP和iWat在内的国际顶尖学术会议最佳论文竞赛的Finalist及获得最佳学生论文竞赛荣誉奖。曾赴日本东京工业大学Ando&Hirokawa实验室接受博士联合培养。长期担任包括IEEE Trans. on AP、 IEEE AWPL和IEEE MWCL等领域权威刊物的特约审稿人。与业内顶尖企业中兴通讯、华为、VIVO等保持长期合作交流。
欢迎志向人工智能、天线射频芯片优化设计等方向的学硕及专硕同学前来交流、保送及报考。
联系方式:13776566630(微信同号)。提供充裕科研经费、课题项目、办公空间及计算机资源,并执行一对一课题指导和每周深入交流。
主持包括国家重点研发计划课题、国家自然科学基金委面上项目、青年项目、江苏省自然科学基金青年基金项目、中兴通讯-东南大学B5G/6G技术联合实验室项目、江苏省双创计划(双创博士)、南京市留学人员科技创新择优资助项目等多个项目。
非定拓扑天线与射频电路智能设计理论方法国家自然科学基金委员会,面上项目2024-01-01至2027-12-31主持
基于机器学习的天线与阵列多目标设计理论与方法研究国家自然科学基金委员会, 青年科学基金项目2021-01-01至 2023-12-31主持
基于机器学习的移动终端天线容差分析与设计研究江苏省科技厅, 省基础研究计划项目2020-07至 2023-06主持
中兴通讯-东南大学B5G/6G技术联合实验室2022-2023年天线智能设计技术项目中兴通讯2022-2023主持
中兴通讯-东南大学B5G/6G技术联合实验室2021-2022年天线智能设计技术项目中兴通讯2021-2022主持
中兴通讯-东南大学B5G/6G技术联合实验室2020-2021年天线智能设计技术项目中兴通讯2020-2021主持
智能反射表面研究VIVO 2020-2021主持
专著:
[1]《智能微波工程》,王海明、无奇,科学出版社,2023
[2]Qi Wu, Haiming Wang, Wei Hong, “Millimeter-wave antenna designs”, Wiley 5G Ref: The Essential 5G Reference Online, John Wiley & Sons, October, 2019
在IEEE TAP及IEEE AWPL等电磁领域顶级刊物,及IEEE AP-S及IEEE EuCAP等顶级会议等,共发表期刊及会议论文50余篇,其中代表性期刊论文包括:
[1]Qi Wu, Weiqi Chen, Chen Yu, Haiming Wang, and Wei Hong. “Knowledge-guided active-base-element modeling in machine-learning-assisted antenna-array design,” IEEE Trans. Antennas Propag., vol. 71, no. 2, pp. 1578-1589, 2023.
[2]Qi Wu, Haipeng Yu, Yiming Yu, Songtao Gao, Chen Yu, and Haiming Wang, “Multi-resonance dual-polarised symmetrically cross-slotted square patch antenna for 5G millimetre-wave broadband applications,” Electron. Lett., vol. 59, no. 6, 2023.
[3]Qi Wu, Weiqi Chen, Chen Yu, Haiming Wang, and Wei Hong. “Machine learning-assisted array synthesis using active base element modeling”, IEEE Trans. Antennas Propag., vol.70, no. 7, pp. 5054-5065, 2022.
[4]Qi Wu, Xiaohua Long, Jiexi Yin, Haiming Wang and Wei Hong. “Single-layer 1-bit prephased single-beam metasurface using true time delayed unit cells”, IEEE Antennas Wireless Propag. Lett., vol. 21, no. 6, pp. 1095-1099, 2022.
[5]Qi Wu, Weiqi Chen, Chen Yu, Haiming Wang, and Wei Hong. “Multilayer machine learning-assisted optimization-based robust design and its applications to antennas and arrays”, IEEE Trans. Antennas Propag., vol. 69, no. 9, pp. 6052 - 6057, 2021.
[6]Qi Wu, Haiming Wang, and Wei Hong. “Multi-stage collaborative machine learning and its application to antenna modeling and optimization”, IEEE Trans. Antennas Propag., vol. 68, no. 5, pp. 3397-3409, 2020.
[7]Qi Wu, Yi Cao, Haiming Wang, and Wei Hong. “Machine-learning-assisted optimization and its application to antenna designs: opportunities and challenges”, China Communications, pp. 164-176, 2020.
[8]Qi Wu, Jiexi Yin, Haiming Wang, Chen Yu, and Wei Hong. “Broadband planar multi-resonance substrate integrated waveguide-like cavity-backed slot antennas using unbalanced shorting vias”, IEEE Antennas Wireless Propag. Lett., vol. 18, no. 2, pp. 363-367, 2019.
[9]Qi Wu, Jiro Hirokawa, Haiming Wang, Chen Yu, and Wei Hong. “Millimeter-wave multibeam endfire dual circularly polarized antenna array for 5G applications”, IEEE Trans. Antennas Propag., vol. 66, no. 09, pp.4930-4935, 2018.
[10]Qi Wu, Haiming Wang, Chen Yu, and Wei Hong. “Low-profile millimeter-wave SIW cavity-backed dual-band CP antenna,” IEEE Trans. Antennas Propag., vol. 65, no. 12, pp. 7310-7315, 2017.
[11]Qi Wu, Jiro Hirokawa, Haiming Wang, Chen Yu, and Wei Hong. “Low-profile millimeter-wave broadband circularly polarized antenna array using stacked curl elements and full corporate-feeding network”, IEEE Trans. Antennas Propag., vol. 65, no. 12, pp. 7052-7062, 2017.
[12]Qi Wu, Haiming Wang, Chen Yu, and Wei Hong. “Low-profile circularly polarized cavity-backed antennas using SIW techniques”, IEEE Trans. Antennas Propag., vol. 64, no. 7, pp. 2832-2839, 2016.
[13]Qi Wu, Haiming Wang, Chen Yu, Xiaowei Zhang, and Wei Hong. “L/S-band dual circularly polarized antenna fed by 3-dB coupler,” IEEE Antennas Wireless Propag. Lett., vol. 14, pp. 426-429, 2015.
[14]Qi Wu, Haiming Wang, Chen Yu, Xiaowei Zhang and Wei Hong. “Dual-band SICL branch-line coupler,” Microw. Opt. Tech. Lett., vol. 57, issue 5, pp. 1246-1249, 2015.
[15]M. Cheng, Qi Wu, C. Yu, H. Wang and W. Hong, “A Prephased Electronically Steered Phased Array That Uses Very-Low-Resolution Phase Shifters and a Hybrid Phasing Method,” IEEE Trans. Antennas Propag., vol. 71, no. 9, pp. 7310-7322, Sept. 2023.
[16]J. Yin, Qi Wu, H. Wang and Z. N. Chen, “Prephase-Based Equivalent Amplitude Tailoring for Low Sidelobe Levels of 1-Bit Phase-Only Control Metasurface Under Plane Wave Incidence,” IEEE Trans. Antennas Propag., vol. 70, no. 11, pp. 10604-10613, Nov. 2022
[17]B. Han, Qi Wu, C. Yu, H. Wang, X. Gao and N. Ma, “Ultracompact Dual-Polarized Cross-Dipole Antenna for a 5G Base Station Array With a Low Wind Load,” IEEE Trans. Antennas Propag., vol. 70, no. 10, pp. 9315-9325, Oct. 2022.
[18]Weiqi Chen, Qi Wu, Chen Yu, Haiming Wang and Wei Hong. “Multibranch machine learning-assisted optimization and its application to antenna design”, IEEE Trans. Antennas Propag., vol. 70, no. 7, pp. 4985-4996, 2022.
[19]Jiexi Yin, Qi Wu, Qun Lou, Haiming Wang, Zhining Chen, and Wei Hong. “Single-Beam 1-Bit Reflective Metasurface Using Pre-Phased Unit Cells for Normally Incident Plane Waves”, IEEE Trans. Antennas Propag., vol. 68, no. 7, pp. 5496-5504, 2020.
[20]Jiexi Yin, Qi Wu, Haiming Wang, Chen Yu, and Wei Hong. “Broadband symmetrical E-shaped patch antenna with multimode resonance for 5G millimeter-wave applications”, IEEE Trans. Antennas Propag., vol. 67, no. 7, 2019.
[21]Jiexi Yin, Qi Wu, Haiming Wang, Chen Yu, and Wei Hong. “Broadband endfire magneto-electric dipole antenna array using SICL feeding network for 5G millimeter-wave wireless”, IEEE Trans. Antennas Propag. vol. 67, no. 7, pp. 4895-4900 2019.
[22]Hengfei Xu, Jianyi Zhou, Qi Wu, Zhiqiang Yu, and Wei Hong. “Wideband Low-Profile SIW Cavity-Backed Circularly Polarized Antenna for High Gain and Conical-Beam Radiation”, IEEE Trans. Antennas Propag., vol. 66, no. 3, pp. 1179-1188, 2018.
[23]Hengfei Xu, Jianyi Zhou, Ke Zhou, Qi Wu, Zhiqiang Yu, and Wei Hong. “Planar Wideband Circularly Polarized Cavity-backed Stacked Patch Antenna Array for Millimeter-Wave Applications”, IEEE Trans. Antennas Propag., vol. 66, no. 10, pp. 5170-5179, 2018.
[24]Jiexi Yin, Qi Wu, Chen Yu, Haiming Wang and Wei Hong, “Low Sidelobe Level Series-Fed Microstrip Antenna Array of Unequal Inter-Element Spacing,” IEEE Antennas Wireless Propag. Lett., vol. 16, pp. 1695 - 1698, 2017.
[25]Xiaoyue Xia, Qi Wu, Haiming Wang, Chen Yu, and Wei Hong. “Wideband Millimeter-Wave Microstrip Reflectarray Using Dual-Resonance Unit Cells,” IEEE Antennas Wireless Propag. Lett., vol. 16, pp.4-7, 2017.
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