葉德信,男,博士,浙江大學教授、博士生導師。
基本介紹
- 中文名:葉德信
- 學位/學歷:博士
- 職業:教師
- 專業方向:· 5G毫米波智慧型天線及Massive MIMO技術· 新機制雷達隱身技術
- 職務:浙江大學博士生導師
- 職稱:教授
- 任職院校:浙江大學
個人經歷,研究方向,學術成果,工作研究項目,研究成果,發表論文,專利成果,
個人經歷
2013年獲得浙江大學信息與電子工程學系電磁場與微波技術專業工學博士學位。
研究方向
· 5G毫米波智慧型天線及Massive MIMO技術
· 新機制雷達隱身技術
學術成果
已經在Science、PNAS、Nature communications、Physical Review Letters、IEEE Transactions on Microwave Theory and Techniques等雜誌上發表三十餘篇論文,授權及公開十餘項國家發明專利。
工作研究項目
6. 浙江省傑出青年基金,研究時間:2018.01-2021.12;
5. 國家自然科學基金面上項目,研究時間:2018.01-2021.12;
4. 中國航天科技集團創CACS重點項目,研究時間:2016.01-2017.12;
3. 國家自然科學基金青年項目,研究時間:2015.01-2017.12;
2. 中國博士後科學基金面上一等資助,研究時間:2014.05-2016.04;
1. CAST創新基金項目,研究時間:2013.12-2014.12;
研究成果
1. 基於空間色散人工電磁材料的構造方法,物理實 現了超寬頻符合K-K關係的完美匹配吸波媒質,該成果於2017年發表在Nature communications。
2. 提出並實現了可等價於自由空間電磁回響的完美匹配隱形、透明材料,並利用3D列印技術進行了物理實現和演示,該成果於2016年發表在美國科學院院刊PNAS。
3. 首次從能量守恆角度提出了滿足因果律的增益人工媒質構造方法,並在微波頻段實驗演示了同時具有增益和負折射率的人工微波材料,該成果於2014年發表在Nature communications。
4. 提出了基於Krammers-Kronig關係的色散工程概念,物理實現了超寬頻完美匹配吸波材料,相關成果於2013年發表在Physical review letters。
發表論文
26. A. Zhu, C. Wang, K. Xu, Z. Wang, D. Ye, Y. Sun, S. Qiao, C. Li, and L. Ran, 'Non‐Foster immittance observed in the full‐\range frequency response,' Microwave and Opical Technology Letters, Vol. 59, pp. 2045, August 2017.
25. T. Zhou, H. Li, D. Ye, J. Huangfu, S. Qiao, Y. Sun, W. Zhu, C. Li, and L. Ran*, 'Short-Range Wireless Localization Based on Meta-Aperture Assisted Compressed Sensing,' IEEE Transactions on Microwave Theory and Techniques, Vol. 65, pp. 2516, July 2017
24. M. Zhang, C. Zheng, X. Wang, X. Chen, W. Cui, J. Li, J. Huangfu, D. Ye, S. Qiao, C. Li, and L. Ran*, 'Localization of Passive Intermodulation Based on the Concept of k-Space Multicarrier Signal,' IEEE Transactions on Microwave Theory and Techniques, Vol. PP, pp. 1, June 2017.
23. C. Wang, Z. Zhu, C. Cao, S. Qiao, C. Li, and D. Ye*, ' Compensating group delay distortion of signals based on engineered material dispersion,' AIP Advances, Vol. 7, pp. 045208, April 2017.
22. D. Ye*, C. Cao, T. Zhou, J. Huangfu, G. Zheng, and L. Ran, 'Observation of reflectionless absorption due to spatial Kramers–Kronig profile,' Nature communications, Vol. 8, pp. 51, March 2017.
21. X. Qi, D. Ye, Y. Sun, C. Li, and L. Ran, 'Simulations to True Animals’ Long-Distance Geomagnetic Navigation,' IEEE Transactions on Magnetics, Vol. 53, pp. 1, January 2017.
20. T. Fan, C. Ma, Z. Gu, Q. Lv, J. Chen, D. Ye, J. Huangfu, Y. Sun, C. Li, and L. Ran, 'Wireless Hand Gesture Recognition Based on Continuous-wave Doppler Radar Sensors,' IEEE Transactions on Microwave Theory and Techniques, Vol. 64, pp. 4012, July 2016.
19. J. Dong, F. Shen, Y. Dong, Y. Wang, W. Fu, H. Li, D. Ye, B. Zhang, J. Huangfu, S. Qiao, Y. Sun, C. Li, and L. Ran, 'Non-contact Measurement of Complex Permittivity of Electrically Small Samples at Microwave Frequencies,' IEEE Transactions on Microwave Theory and Techniques, Vol. PP, pp. 99, July 2016.
18. D. Ye, L. Lu, J. D. Joannopoulos, S. Marin, L. Ran, ' Invisible metallic mesh,' PNAS, Vol. 113, pp. 289, March 2016.
17. Z. Peng, J. Chen, Y. Dong, B. Zhang, S. Qiao, D. Ye, J. Huangfu, Y. Sun, C. Li, and L. Ran, 'Radio Frequency Beamforming Based on a Complex Domain Frontend,' IEEE Transactions on Microwave Theory and Techniques, Vol. 63, pp. 289, January 2016.
16. L. Lu, Z. Wang, D. Ye, L. Ran, F. Liang, S. G, Johnson, J. D. Joannopoulos, and S. Marin, 'Experimental observation of weyl points,' Science, Vol. 349, pp. 622, July 2015.
15. D. Ye, S. Yannick, J. Huangfu, S. Qiao, G. Zheng, and L. Ran, 'Observation of wave packet distortion during a negative-group-velocity transmission,' Scientific Reports, Vol. 5, pp. 8100, January 2015.
14. H. Li, D. Ye*, F. Shen, B. Zhang, Y. Sun, W. Zhu, C. Li, and L. Ran, 'Reconfigurable diffractive antenna based on switchable electrically induced transparency,' IEEE Transactions on Microwave Theory and Techniques, Vol. 63, pp. 925, March 2015.
13. K. Xu, D. Ye*, Z. Zhu, J. Huangfu, S. Qiao, Y. Sun, C. Li, and L. Ran, 'Analytical beam forming for circularly symmetric conformal apertures,' IEEE Transactions on Antennas and Propagation, Vol. 63, pp. 1458, March 2015.
12. J. Zhao, Z. Zhu, W. Cui, K. Xu, B. Zhang, D. Ye*, C. Li, and L. Ran, 'Power synthesis for millimeter wave frequencies based on discrete sources,' IEEE Transactions on Microwave Theory and Techniques, Vol. 63, pp. 112 March 2015.
11. D. Ye, K. Chang, L. Ran, and H. Xin, 'Microwave gain medium with negative refractive index,' Nature communications, Vol. 5, pp. 5841, December 2014.
10. Y. Shen*, D. Ye, C. Ivan, S. G, Johnson, J. D. Joannopoulos, and S. Marin, 'Metamaterial broadband angular selectivity,' Physical Review B, Vol. 90, pp. 125422, September 2014.
9. Q. Lv, D. Ye*, S. Qiao, S. Yannick, J. Huangfu, C. Li, and L. Ran, ''High-dynamic-range motion imaging based on linearized doppler radar sensor,' IEEE Transactions on Microwave Theory and Techniques. Vol. 62, pp. 1837, August 2014.
8. Y. Shen*, D. Ye, I. Celanovic, S. G. Johnson, J. D. Joannopoulos, M. Soljacic, 'Optical broadband angular selectivity,' Science. Vol. 343, pp. 1499, March 2014.
7. R. Wang, D. Ye*, S. Dong, Z. Peng, S. Yannick, F. Shen, J. Huangfu, C. Li, and L. Ran, 'Optimal matched rectifying surface for space solar power satellite applications,' IEEE Transactions on Microwave Theory and Techniques. Vol. 62, pp. 1080, January 2014.
6. D. Ye, Z. Wang, K. Xu, H. Li, J. Huangfu, Z. Wang, and L. Ran, 'Ultrawideband dispersion control of a metamaterial surface for a perfectly-matched-layer-like absorption,' Physical Review Letters, Vol. 111, pp.187404, November 2013.
5. D. Ye, G. Zheng, J. Wang, Z. Wang, S. Qiao, J. Huangfu, and L. Ran, 'Negative group velocity in the absence of absorption resonance,' Scientific Reports, Vol. 3, pp. 01628-6, April 2013.
4. D. Ye, Z. Wang, Z. Wang, K. Xu, B. Zhang, J. Huangfu, C, Li, and L. Ran, 'Towards experimental perfectly-matched layers with ultra-thin metamaterial surfaces,' IEEE Transactions on Antennas and Propagation, Vol. 60, pp. 5164, November 2012.
3. D. Ye, S. Qiao, J. Huangfu, and L. Ran, 'Experimental characterization of the dispersive behavior in a uniaxial metamaterial around plasma frequency,' Optics Express, Vol. 18, pp. 22631, October 2010.
2. D. Ye, S. Xi, H. Chen, J. Huangfu, and L. Ran, 'Achieving large effective aperture antenna with small volume based on coordinate transformation,' Progress in Electromagnetics Research, Vol. 111, pp. 407, December 2010.
1. X. Huang, S. Xiao, D. Ye, et al, 'Fractal plasmonic metamaterials for subwavelength imaging,' Optics Express, Vol. 18, pp. 10377, May 2010.
專利成果
[1] 葉德信,姜濤,皇甫江濤,冉立新,“利用異向介質材料天線罩的多波束天線”,申請號:200810162381.8,公開號:CN101420067,2009年4月;(已授權)
[2] 葉德信,冉立新,“環狀金屬對結構填充開槽波導得到等相位波導信號分配器”,申請號:201010040077.3,公開號:CN101728617A,2010年1月;
[3] 葉德信,皇甫江濤,冉立新,“用於深水聲波探測的諧振腔式傳聲器”,申請號:201010253813.3,公開號:CN101917655A,2010年12月;
[4] 葉德信,皇甫江濤,冉立新,“用於深水聲波探測的諧振腔式水聽器”,申請號:201010253811.4,公開號: CN101949732A, 2010年12月;(已授權)
[5] 葉德信,皇甫江濤,冉立新,“用於深水聲波探測的壓電片式水下探音器”,申請號:201010253802.5,公開號: CN101949733A,2010年12月;(已授權)
[6] 葉德信,皇甫江濤,冉立新,“利用次波長諧振結構構成的超匹配吸波材料”,申請號:201010599688.1,公開號:CN102026531A,2011年4月;(已授權)
[7] 葉德信,張斌,皇甫江濤,冉立新,“次波長諧振結構單元構成的高效率微波能量接收板”申請號:201110232309.X,公開號:CN102394514A,2012年3月;(已授權)
[8] 葉德信,張斌,皇甫江濤,冉立新,“利用次波長諧振結構單元構成的全向電掃天線罩”,申請號:201110232298.5,公開號:CN102354810A,2012年2月;
[9] 葉德信,張斌,皇甫江濤,冉立新,“利用次波長諧振單元構成的全匹配無折射雷達天線罩”,申請號:201110232314.0,公開號: CN102354811A,2012年2月;
[10] 葉德信,皇甫江濤,冉立新,“利用次波長諧振單元及有源電路構成的完美匹配吸波層”,申請號:CN201410175775,公開號: CN103943968A,2014年7月;
