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拟招收博士研究生专业: 信息与通信工程 拟招收硕士研究生专业: 信息与通信工程 电子与通信工程 开放申请硕/博士研究课题 1、5G超表面天线的小型化和宽带化理论与设计方法研究 2、超表面在板级和芯片级产品封装电磁干扰问题中的应用研究 3、突破Rozanov厚度极限的微波吸波体的理论与设计方法研究 4、新型二维材料的电磁特性及潜在应用研究 本课题组具有十分优良的科研氛围和平台,开展一系列结合理论前沿和工程实践的课题研究,致力于实现对学术界和工业界产生较大影响的原创性成果。欢迎对电磁场的前沿理论及工程实践具有浓厚科研兴趣的同学咨询和报考,若有疑问,可随时进行邮件交流。 个人简介: 2014年和2019年分别获得浙江大学电子科学与技术专业学士和博士学位,2019年7月以重庆大学“百人计划”特聘研究员身份加入微电子与通信工程学院。研究方向为新型超表面和二维材料在高速电路、先进封装中的电磁兼容方面和5G小型化天线方面的应用。在电磁屏蔽、吸波、滤波等方面取得系列成果,在IEEE Transactions on Microwave Theory and Technology,IEEE Transactions on Antennas and Propagations等著名国际期刊和国际会议上发表20余篇学术论文,学术成果分别获得IWS2016最佳论文奖、SPI2017国际会议的青年研究员奖。先后参与和完成了国家自然科学基金一项,省自然科学基金两项及华为公司、长电科技的多项横向合作项目,相关产品得到企业界的高度评价,已申请4项发明专利、2项新型实用专利。 发明专利: [1]易达,魏兴昌,杨彦彬,基于电磁场近场提取导电薄膜表面电导率测试装置及方法,实用新型专利,授权公告号:CN209117761U。(同样的发明创造已同日申请发明专利) [2]易达,魏兴昌,舒宇飞,杨彦彬,一种天线后向辐射抑制结构,实用新型专利,授权公告号:CN209104359U。(同样的发明创造已同日申请发明专利) [3]易达,魏兴昌,杨彦彬,一种全金属电磁屏蔽散热器,发明专利,申请号:201811391784.X。 [4] 一种电磁辐射抑制型散热器及其制作方法,发明专利,已交付华为公司申请。 近期学术活动: [1] IEEE Trans.TAP,TNANO,TEMC,Carbon等审稿人 [2] EMC Compo 2019 TPC Member,Session chair [3] ICCEM 2020 TPC Member,Session chair 学术获奖: [1] IWS2016最佳论文奖 [2] SPI2017国际会议的青年研究员奖 [3] 2017年浙江大学博士研究生国家奖学金

近期论文

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代表性论文 [1]D. Yi, X. Wei, R. Yang, X. Gao, and Y. Yang, “Modeling and Analyzing High-Order Modes in Periodic-Stub-Loaded Stripline for Wideband Filter Design,”IEEE Trans. Electromagn. Compat.,Early Access,2019.【SCI】 [2]D. Yi,B. Shen, X. Wei, L. Tong, Y. Xu, J. Li, S. Xu, Y. Zhang, W. Zheng, and Y. Yang,“Subwavelength PeriodicShieldingMaterials: Towards Enhanced Shielding of The Incomplete Enclosure,”IEEE Microwave and Wireless Components Letters,vol. 29, no. 2, pp. 113-115, 2019.【SCI】 [3]D. Yi, X. Wei, B. Shen, Y. Li, W. Zheng, X. Gao, and Y. Yang,“A Rasorber-Like Waveguide Based on Thin Film,”IEEE Microwave and Wireless Components Letters, vol. 28, no. 7, pp. 558-560, 2018.【SCI】 [4]D. Yi, X. Wei, Y. Xu,“Tunable Microwave Absorber Based on Patterned Graphene,”IEEE Trans. Microwave Theory Techn., vol. 65, no. 8, pp. 2819-2826, 2017.【SCI】 [5]D. Yi, X. Wei, Y. Xu,“A Transparent Microwave Absorber Based on Patterned Graphene: Design, Measurement, and Enhancement,”IEEE Trans. Nanotechnol., vol. 16, no. 3, pp. 484-490, 2017.【SCI】 [6] Z. Chen,D. Yi, B. Shen, L. Zhang, X. Ma, Y. Pang, L. Liu, X. Wei, and W. Zheng,“Semi-transparent Biomass-derived Macroscopic Carbon Grids for Efficient and Tunable Electromagnetic Shielding,”Carbon, vol. 139, pp. 271-278, 2018.【SCI,共同一作】 [7] B. Shen, Y. Li,D. Yi, W. Zhai, X. Wei, and W. Zheng,“Microcellular Graphene Foam for Improved Broadband Electromagnetic Interference Shielding,”Carbon, vol. 102, pp. 154-160, 2016.【SCI,ESI高被引】 [8]D. Yi, X. Wei,“An Improved Equivalent Circuit Model of Spoof Surface Plasmon Transmission Line,”IEEE Workshop on Signal and Power Integrity (SPI), 2017.【EI,获青年研究员奖】 [9]D. Yi, X. Wei, and Y. Xu,“Experimental Demonstration of Transparent Microwave Absorber Based on Graphene.”pp. 1-4.IEEE MTT-s International Wireless Symposium, 2016.【EI,获最佳论文奖】 [10] R. Yang, X. Wei, Y. Shu,D. Yi, and Y. Yang, "A Miniature Multi-Components Probe for Near-Field Scanning,"IEEE Transactions on Antennas and Propagation,pp. 1-1, 2019.【SCI】 [11] G. Lovat,D. Yi, P. Burghignoli, R. Araneo, S. Celozzi, and X. Wei,“Theoretical Analysis of the First Higher-Order Mode in Grounded Graphene Nanoribbons,”IEEE Trans. Nanotechnol., pp. 484-490, 2018.【SCI】 [12] W. Ding, X. Wei, Y. Shu,D. Yi, and T. Xiang,“Inductance Extraction of Grid Power Distribution Network,”IEEE Trans. Compon. Packag. Manuf. Technol., vol. 8, no. 6, pp. 1066-1072, 2017.【SCI】 [13] W. Ding, X. Wei,D. Yi, Y. Fei,“A Closed-form Solution for the Impedance Calculation of Grid Power Distribution Network,”IEEE Trans. Electromagn. Compat., vol. 59, no. 5, pp. 1449-1456, 2017.【SCI】 [14] Y. Li, B. Shen,D. Yi, L. Zhang, W. Zhai, X. Wei, and W. Zheng,“The Influence of Gradient and Sandwich Configurations on The Electromagnetic Interference Shielding Performance of Multilayered Thermoplastic Polyurethane/Graphene Composite Foams,”Compos.Sci.Technol., vol. 138, pp. 209-216, 2017.【SCI】 [15] L. Yang, X. Wei,D. Yi, J. Jin,“A Bandpass Frequency Selective Surface with a Low Cross-Polarization Based on Cavities with a Hybrid Boundary,”IEEE Trans. Antennas Propagat., vol. 65, no. 2, pp. 654-661, 2017.【SCI】 [16] B. Shen, Y. Li,D. Yi, W. Zhai, X. Wei, and W. Zheng,“Strong Flexible Polymer/graphene Composite Films with 3D Saw-tooth Folding for Enhanced and Tunable Electromagnetic Shielding,”Carbon, vol. 113, pp. 55-62, 2017.【SCI】 [17] Y. Xu, E. Li, X. Wei, and D. Yi, “A Novel Tunable Absorber Based on Vertical Graphene Strips,”IEEE Microwave and Wireless Components Letters, vol. 26, no. 1, pp. 10-12, 2016.【SCI】

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