硕士生导师
所在单位:电子科学系
学历:研究生(博士)毕业
办公地点:翡翠湖校区科教楼B513
性别:男
学位:博士学位
在职信息:在职
毕业院校:电子科技大学
学科:电磁场与微波技术
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朱宋宋,杜平, 胡俊,一种生成宽带CP/LP OAM波反射型超表面设计:微波学报
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Tao Guo,Ping Du*,Scattering analysis of finite periodic array in the vicinity of arbitrary object using hybrid macro basis function method.[J].美国:IEEE Antennas and Wireless Propagation Letters(中科院2区Top期刊),2023,22(3):626-630.
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He-Qing Zhang, Ping Du*, and Song-Song Zhu,Characteristic modes analysis of aperiodic arrays using entire domain basis function method with adaptive cross approximation algorithm.[J].美国:IEEE Antennas and Wireless Propagation Letters(中科院2区Top期刊),2023,22(2):258-262.
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Ping Du, Wei Xiang, and Song-Song Zhu,A comparison of MB-CBFM and modified ASED basis function method to analyze interconnected finite periodic arrays.[J].美国:IEEE Antennas and Wireless Propagation Letters(中科院2区Top期刊),2022,21(9):1822-1826.
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张合情,杜平,郭涛,一种快速有限周期阵列特征模分析法.[J:微波学报,2022,38(3):42-45;52.
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Sheng Zhang, and Ping Du*,An extended aggregate basis function method for composite structure with periodic array.[J:Microwave and Optical Technology Letters,2021,63(10):2576-2580.
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Ping Du,Gang Zheng,Wei-Bing Lu,and Wei Xiang,Wideband solution of electrically connected finite periodic arrays using modified accurate subentire-domain basis function method and improved frequency-independent reaction.[J].美国:IEEE Antennas and Wireless Propagation Letters(中科院2区Top期刊),2021,20(9):1775-1778.
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Wei Jie Fu, Ping Du*, et al.,Fast wideband scattering analysis of large-scale finite-sized periodic arrays with planar cells using ASED basis function and interpolation technique.[J:Journal of Electromagnetic Waves and Applications,2019,33(13):1776-1788.
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Ping Du,Gang Zheng,Cheng Wang,and Wei-Jie Fu,Efficient wideband computation of electromagnetic scattering by finite periodic structures combining ASED Basis function with frequency-independent reaction.[J].美国:IEEE Antennas and Wireless Propagation Letters(中科院2区Top期刊),2018,17(2):234-237.
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Ping Du,Yu Shao,and Cheng Wang,Fast frequency sweep of metallic antennas using frequency-independent reaction and enhanced gap source model.[J:Journal of Electromagnetic Waves and Applications,2017,31(11-12):1093-1100.
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