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余晨 职称:副研究员 办公室:无线谷A3-209 学习经历: 1997年9月-2001年6月东南大学本科 2001年9月-2004年4月东南大学硕士研究生 2006年3月-2011年7月东南大学博士研究生 工作经历: 2004年5月-至今东南大学 教授课程: 微波工程基础——本科 获奖情况: 2008年江苏省科技进步一等奖 科研项目: 项目名称 项目类别 项目时间 工作类别 项目金额 毫米波滤波天线 毫米波国际重点实验室自主课题 2011.09-2013.08 应用基础研究 10w 60GHz射频CMOS芯片与模块研制 国家863项目子课题 2012.01-2013.12 关键技术研发 91w 毫米波差分馈电平面天线 江苏省自然科学基金项目 2013.07-2016.06 应用基础研究 20w 基片集成同轴线及应用研究 毫米波国际重点实验室自主课题 2016.01-2017.12 应用基础研究 10w 基片集成同轴线及应用研究 国家自然科学基金项目 2016.01-2018.12 应用基础研究 25.2w 5GQ波段通信技术方案和试验系统研发 国家科技重大专项子课题 2016.01-2017.12 关键技术研发 132.69w 专利: 专利号 专利名称 专利类型 ZL200710024486.2 基片集成波导馈电的印刷天线 发明专利授权 ZL201410064487.X 一种适用于无线局域网的2.4/5GHz双频全向天线 发明专利授权 ZL201410156074.4 一种采用基片集成同轴线馈电的双频双圆极化天线 发明专利授权 ZL201410342931.X 一种采用基片集成同轴线技术的紧凑型双频枝节线耦合器 发明专利授权

研究领域

电磁场与微波技术

近期论文

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[1] C. Yu, W. Hong, and Z. Q. Kuai, “Multiple Stopbands Ultra Wide Band Antenna,” 2008 International Conf. on Microwave and Millimeter Wave Technology (ICMMT 2008), Nanjing, Apr. 21-24, 2008. [2] C. Yu, W. Hong, Z. Q. Kuai, J. X. Chen, L. Tian, and P. P. Yan, “Substrate integrated waveguide fed printed dipole array antenna for isolating the RF front-end from the antenna,” Microw. Opt. Technol. Lett., vol. 51, no. 2, pp. 557-562, Feb. 2009. [3] C. Yu, W. Hong, and Z. Q. Kuai, “Substrate Integrated Waveguide Power Divider Fed Dual-Dipole Array Antenna,” Journal of the Korean Institute of Electromagnetic Engineering and Science (JKIEES), vol. 10, no. 3, pp. 171-174, Sep. 2010. [4] C. Yu, W. Hong, X. W. Zhu, and Z. Q. Kuai, “A new printed dipole array omnidirectional antenna with bandwidth enhancement,” 2010 International Symposium on Signals, Systems and Electronics (ISSSE 2010), Nanjing, Sep. 17-20, 2010. [5] 余晨,洪伟,翟国华,蒯振起. “基片集成波导混合功率分配器馈电印刷对数周期天线,”电波科学学报,2011年,第26卷,第3期,437-442页。 [6] 余晨,洪伟,周健义. “基片集成波导全向滤波天线多天线阵列,”,电波科学学报, 2012年,第2期,301-306页。 [7] C. Yu and W. Hong, “37-38GHz Substrate Integrated Filtenna for Wireless Communication Application,” Microw. Opt. Technol. Lett., vol. 54, no. 2, pp. 346-351, Feb. 2012. [8] C. Yu, W. Hong,Z. Q. Kuai, and H. M. Wang, “Ku-band linearly polarized omnidirectional printed filtenna,”IEEE Antenna Wireless Propag. Lett. vol.11, pp.310-313, 2012. [9] Y. Zhang, W. Hong, C. Yu, Z. Q. Kuai, Y. D. Dong, and J. Y. Zhou, “Planar ultra wideband antennas with multiple notched bands based on etched slots on the patch and/or split ring resonators on the feed line,” IEEE Trans. Antennas Propag., vol. 56, no. 9, pp. 3063-3068, 2008. [10] W. Hong, Y. Zhang, C. Yu, Z. Q. Kuai, J. Y. Zhou, Z. Q. Wang, Y. D. Dong, “Compact ultra-wideband antenna with multiple stop bands,” 2008 IEEE International Workshop on Antenna Technology, 2008, pp.32-34. [11] Y. Zhang, W. Hong, C. Yu, J. Y. Zhou, and Z. Q. Kuai, “Design and implementation of planar ultra-wideband antennas with multiple notched bands based on stepped impedance resonators,” IET Microwaves Antennas & Propagation, vol.3, no.7, pp.1051-1059, 2009. [12] W. Hong, Chao Yu, C. Yu, G. H. Zhai, W. Qin, L. Chiu, and Z. Q. Kuai, “Frequency notched wideband printed directional antennas,” IEEE iWAT’2010, 1-3 March, Lisbon, PORTUGAL, 2010. [13] S. H. Yu, W. Hong, C. Yu, H. J. Tang and Z. Q. Kuai, “Integrated Millimeter Wave Filtenna for Q-LINKPAN Application,” The 6th European Conference on Antennas and Propagation,March 2012. [14] Q. Wu, H. M. Wang, C. Yu, X. W. Zhang, and W. Hong, “L/S-band dual circularly polarized antenna fed by 3-dB coupler,” IEEE Antennas Wireless Propag. Lett., vol. 14, pp. 426-429, 2015. [15] Qi Wu, Haiming Wang, Chen Yu, Xiaowei Zhang, and Wei Hong, “Dual-band SICL Branch-line Coupler,” Microwave and Optical Technology Letters, vol. 57, no. 5, pp. 1246-1249, 2015. [16] Q. Wu, H. M. Wang, C. Yu, and W. Hong, “Low-profile circularly polarized cavity-backed antennas using SIW techniques,” IEEE Trans. Antennas Propag., vol. 64, no. 7, pp. 2832-2839, July 2016. [17] J. X. Yin, Q. Wu, C. Yu, H. M. Wang, and W. Hong, “Low-sidelobe-level series-fed microstrip antenna array of unequal interelement spacing,” IEEE Antennas Wireless Propag. Lett., vol. 16, pp. 1695-1698, 2017. [18] Q. Wu, H. M. Wang, C. Yu, and W. Hong, “Low-profile millimeter-wave siw cavity-backed dual-band circularly polarized antenna,” IEEE Trans. Antennas Propag., vol. 65, no. 12, Dec. 2017.

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