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李增瑞

(中國傳媒大學通信工程系教授)

鎖定
李增瑞,男,中國傳媒大學通信工程系教授,博士生導師。主要研究領域:電磁超材料、天線電磁散射
現任中國電子學會天線分會委員、中國電影電視技術學會傳輸與覆蓋專業委員會副主任委員,曾任國際微波論壇學術會議共同主席,擔任多個IEEE學術雜誌的審稿人和國家自然科學基金評審專家。
曾作為訪問學者在日本橫濱國立大學、美國賓夕法尼亞州立大學從事電磁場數值方法和天線技術的研究。項目“數字廣播電視系統中的創新技術與應用”獲2011年北京市科學技術三等獎,項目“數字高清晰度電視地面廣播實驗用發射天線”獲廣電總局高校科研成果二等獎。 [1] 
中文名
李增瑞
國    籍
中國
學位/學歷
工學博士/研究生
職    業
教師
專業方向
電磁場與微波技術 / 天線與微波技術
職    稱
教授

李增瑞個人簡介

博士、教授、信息與通信工程學院黨委書記,任中國電子學會天線分會委員、中國電影電視技術學會傳輸與覆蓋專業委員會副主任委員,曾任國際微波論壇學術會議共同主席,擔任多個IEEE學術雜誌的審稿人和國家自然科學基金評審專家。曾作為訪問學者在日本橫濱國立大學、美國賓夕法尼亞州立大學從事電磁場數值方法和天線技術的研究。項目“數字廣播電視系統中的創新技術與應用”獲2011年北京市科學技術三等獎,項目“數字高清晰度電視地面廣播實驗用發射天線”獲廣電總局高校科研成果二等獎。 [1] 

李增瑞科研項目

[1] 國家自然科學基金面上項目:61671415,電磁超表面實現超寬帶隱身的機理與應用研究,2017/01-2020/12,主持
[2] 國家自然科學基金“重點”(合作):61331002,受限空間實現電波高效覆蓋的天線與漏泄波導理論與技術研究,2014/01-2018/12
[3] 青年科學基金項目:61201082,高速電路多維互連線信號完整性及3D場路特性研究,2013/01-2015/12,已結題,參加
[4] 青年科學基金項目:61102011,超寬帶天線陣列技術在區域電磁脈衝防護與隱身中的應用研究,2012/01-2014/12,已結題,參加
[5] 國家科技支撐計劃項目(合作): 2012BAH37F01-01,普及型無鏡立體顯示與立體視覺媒資管理與發佈系統接口規範研究,已結題
[6] 橫向項目: 頻率選擇表面研製及測試
[7] 橫向項目:中俄邊境地區地面電視全數字規劃研究
[8] 橫向項目:被動共形天饋系統
[9] 橫向項目:直播衞星超材料平板接收天線原理分析與性能評估
[10] 橫向項目:地面數字電視廣播系統分集技術研究
[11] 橫向項目:等離子體包圍目標電磁散射計算
[12] 橫向項目:CMMB補點天線設計及其室內覆蓋效果研究
[13] 橫向項目:目標低頻寬帶電磁散射特性研究

李增瑞學術成果

[1] J. X. Su, H. He, Y. Lu, H. C. Yin, G. H. Liu, and Z. R. Li, “Ultrawideband Radar Cross-Section Reduction by a Metasurface Based on Defect Lattices and Multiwave Destructive Interference,” Phys. Rev. Applied 11, 044088, 2019.
[2] Y. Lu, J. X. Su, J. B. Liu, Q. X. Guo, H. C. Yin, Z. R. Li and J. M. Song, “Ultra-Wideband Mono- and Bistatic RCS Reduction for Both Co- and Cross-Polarization Based on Polarization Conversion and Destructive Interference,” IEEE Trans. Antennas Propag., May 2019 ( Early Access ).
[3] Q. X. Guo, Z. R. Li, J. X. Su, L. Y. Yang and J. M. Song, “Dual-Polarization Absorptive/Transmissive Frequency Selective Surface Based on Tripole Elements,” IEEE Antennas Wireless Propag. Lett., vol. 18, no. 5, pp. 961-965, May 2019.
[4] Q. X. Guo, Z. R. Li, J. X. Su, J. M. Song and L. Y. Yang, “Active Frequency Selective Surface With Wide Reconfigurable Passband,” IEEE Access, vol. 7, pp. 38348-38355, 2019.
[5] J. X. Su, Y. Lu, J. Y. Liu, Y. Q (Lamar) Yang, Z. R. Li, and J. M. Song, “A Novel Checkerboard Metasurface Based on Optimized Multielement Phase Cancellation for Super-wideband RCS Reduction,” IEEE Trans. Antennas Propag., vol. 66, no. 12, pp.7091–7099, Dec. 2018.
[6] Jianxun Su, Yueyang Cui, Zengrui Li, Yaoqing (Lamar) Yang, Yongxing Che, and Hongcheng Yin, “Metasurface base on uneven layered fractal elements for ultra-wideband RCS reduction,” AIP Advances 8, 035027 (2018),29 March 2018.
[7] Jianxun Su, Huan He, Zengrui Li, Yaoqing (Lamar) Yang, Hongcheng Yin, Junhong Wang, “Uneven-layered Coding Metamaterial Tile for Ultra-wideband RCS Reduction and Diffuse Scattering,” Scientific Report | 8:8182 | DOI:10.1038/s41598-018-26386-5, pp. 1-9, 25 May 2018.
[8] Jinbo Liu, Mang He, Zengrui Li, and Jianxun Su, “The Application of Improved Spherical Harmonics Expansion-Based Multilevel Fast Multipole Algorithm in the Solution of Volume-Surface Integral Equation,” International Journal of Antennas and Propagation, Volume 2018,Article ID 8267504, 7 pages.
[9] Qingxin Guo, Lu Chen, Zengrui Li, “A pattern reconfigurable square loop antenna with 4 ports and its feeding network,” Microwave and Optical Technology Letters, pp.2964-2968, 31 October 2018.
[10] Jianxun Su, Yao Lu, Hui Zhang, Zengrui Li, Yaoqing (Lamar) Yang, Yongxing Che, Kainan Qi, “Ultra-wideband, wide angle and polarization-insensitive specular reflection reduction by metasurface based on parameter adjustable meta-atoms,” Scientific Report | 7:42283 | DOI: 10.1038/srep42283, pp. 1-11, 09 February 2017.
[11] Hui Zhang, Yao Lu, Jianxun Su, Zengrui Li, Jinbo Liu, and Yiaoqing (Lamar) Yang, “Coding diffusion metasurface for ultrawideband RCS reduction,” Electronics Letters, vol. 53, no. 3, pp.187-189, 2nd February 2017.
[12] Jianxun Su, Chuiyong Kong, Zengrui Li, Xujin Yuan, and Yaoqing (Lamar) Yang. “Ultra-wideband and Polarization-insensitive RCS Reduction of Microstrip Antenna using Polarization Conversion Metasurface.” Applied Computational Electromagnetics Society Journal, vol.32, no. 6, pp. 524-530, June 2017.
[13] Jianxun Su, Chuiyong Kong, Zengrui Li, Hongcheng Yin, and Yaoqing (Lamar) Yang, “Wideband diffuse scattering and RCS reduction of microstrip antenna array based on coding metasurface,” Electronics Letters, vol. 53, no. 16, pp. 1088-1090, 3rd August 2017.
[14] Xiaole Kang, Jianxun Su, Hui Zhang, Zengrui Li and Yaoqing (Lamar) Yang, “Ultra-wideband RCS reduction of microstrip antenna array by optimised multi-element metasurface,” Electronics Letters, Vol. 53, No. 8, pp. 520–522, 13th April 2017.
[15] J. X. Su, Z. R. Li, X. J. Yuan, Y. Q. Yang and J. H. Wang, “A Wideband and Polarization-Independent Metasurface Based on Phase Optimization for Monostatic and Bistatic Radar Cross Section Reduction,” International Journal of Antennas and Propagation, Volume 2016, Article ID 7595921, 9 pages.
[16] J. X. Su, Y. Lu, Z. Y. Zheng, Z. R. Li, Y. Q. Yang, Y. X. Che, and K. N. Qi, “Fast analysis and optimal design of metasurface for wideband monostatic and multistatic radar stealth,” J. Appl. Phys., pp.205107-1- 205107-11, Vol.120, No.20, Nov. 2016
[17] Zengrui Li, Xiaole Kang, Jianxun Su, Qingxin Guo, Yaoqing (Lamar) Yang, and Junhong Wang, “A Wideband End-Fire Conformal Vivaldi Antenna Array Mounted on a Dielectric Cone,” International Journal of Antennas and Propagation, Volume 2016, Article ID 9812642, 11 pages, http://dx.doi.org/10.1155/2016/9812642.
[18] Zengrui Li , Longdan Tan , Xiaole Kang , Jianxun Su , Qingxin Guo , Yaoqing (Lamar) Yang , and Junhong Wang, “A Novel Wideband End-Fire Conformal Antenna Array Mounted on a Dielectric Cone”, Applied Computational Electromagnetics Society Journal, pp.933-941, Vol. 31, No.8, August 2016 [1] 
參考資料