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    邵维

    • 教授 博士生导师
    • 性别:男
    • 毕业院校:电子科技大学
    • 学历:博士研究生毕业
    • 学位:理学博士学位
    • 在职信息:在岗
    • 所在单位:物理学院

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    个人简介

    个人经历1998年、2004年和2006年毕业于电子科技大学,分别获电子材料与元器件专业学士、无线电物理专业硕士和无线电物理专业博士学位;2010-2011年,美国宾夕法尼亚州立大学电磁通信实验室访问学者;2012-2013年,香港大学电子与电气工程系访问学者;20071月至今在电子科技大学物理电子学院(现物理学院)从事教学和科研工作。 

     

    研究领域:计算电磁学、天线理论与技术。

     

    获奖情况2005年获教育部提名国家科学技术奖自然科学二等奖(排名第三),2009年获得四川省优秀博士学位论文 2011年入选教育部新世纪优秀人才支持计划2012201320182020年获电子科技大学研究生课程教学质量优良奖2014年获电子科技大学青年教师教学优秀奖2017年获电子科技大学先进工作者2018年获电子科技大学唐立新奖教金——优秀学者三等奖2019年和2020年分别获中国电子教育学会优秀博士学位论文优秀指导教师奖2021年获“电子科技大学优秀共产党员”等;培养的博士研究生程友峰和肖理业分别获2018年和2020中国电子教育学会优秀博士学位论文提名奖,博士研究生肖理业获2018电子科技大学十大杰出学生(研究生)2019四川省优秀毕业生和入选2019年国家博士后创新人才支持计划等。

     

    科研项目:作为项目负责人,主持了国家自然科学基金面上项目(2015-2018)、国家自然科学基金青年基金项目(2010-2012)、教育部新世纪优秀人才支持计划基金(2012-2014)、总装预研基金(2010-2011)和横向课题等多项课题的研究工作;作为主研人员参与重大基础研究项目(2021-2024)、国家自然科学基金重点项目(2014-2018)和973子专题项目(2016-2018)等。

     

    著作成果:王秉中,邵维,《计算电磁学》,北京:科学出版社,201811月。

    期刊论文

     2022

    ·    Yang Hong, Wei Shao, Yan-He Lv, Bing-Zhong Wang, Lin Peng, and Baojun Jiang*, “Knowledge-based neural network for thinned array modeling with active element patterns,” IEEE Trans. Antennas and Propagation, early access2022.

    ·    Hai-Ying Luo, Wei Shao*, Xiao Ding, Bing-Zhong Wang, and Xi Cheng, “Topological modeling of microstrip filters based on convolutional neural network,” IEEE Microwave and Wireless Components Letters, early access2022.

    ·    Kai Wang, Wei Shao*, Hua Li, and Bing-Zhong Wang, “Low-RCS surface design based on lossy metagratings,” Applied Computational Electromagnetics Society (ACES), 2022.

    ·    Zhi-Xian Liu, Wei Shao, Xiao Ding, Lin Peng, and Baojun Jiang*, “Neural network with Fourier series-based transfer functions for filter modeling,” IEEE Microwave and Wireless Components Letters, vol. 32, no. 7, pp. 823-826, July, 2022.

    ·   Fu-Long Jin, Wei Shao, Li-Ye Xiao, Bing-Zhong Wang, and Baojun Jiang*, “Substrate- integrated cavity-backed array with controlled mutual coupling for wide scanning,” IEEE Antennas and Wireless Propagation Letters, vol. 21, no. 4, pp. 808-812, April, 2022.

    ·   Kai Wang, Wei Shao, Xiao Ding, Bing-Zhong Wang, and Baojun Jiang*, “Design of high-gain metasurface antenna based on characteristic mode analysis,” IEEE Antennas and Wireless Propagation Letters, vol. 21, no. 4, pp. 661-665, April, 2022.

     

       2021

         ·   Tu-Lu Liang, Yongming Tu, Xi Chen, Yingyan Huang, Qiang Bai, Yaying Zhao, Junchi Zhang, Yutong Yuan, Junyu Li, Fei Yi, Wei Shao*, and Seng-Tiong Ho, “A fully numerical method for designing efficient adiabatic mode evolution structures (adiabatic taper, coupler, splitter, mode converter) applicable to complex geometries,” IEEE Journal of Lightwave Technology, vol. 39, no. 17, pp. 5531-5547, Sep. 2021.

        ·    Xi Cheng, Wei Shao*, Kai Wang and Bing-Zhong Wang, “An ANN-based surrogate model for wave propagation in uncertain media,” Waves in Random and Complex Media, 2021.

       ·  Li-Ye Xiao, Wei Shao*, Fu-Long Jin, Bing-Zhong Wang, and Qing Huo Liu, “Inverse artificial neural network for multi-objective antenna design”, IEEE Trans. Antennas and Propagation, vol. 69, no. 10, pp. 6651-6659, Oct. 2021.

        ·    Liye Xiao, Wei Shao*, Fulong Jin, and Zhuochun Wu, “A self-adaptive kernel extreme learning machine for short-term wind speed forecasting”, Applied Soft Computing Journal, vol. 99, 106917, 2021.

     

       2020

       ·   Xi Cheng, Zhi-Yong Zhang, and Wei Shao*, “A surrogate model based on artificial neural networks for wave propagation in uncertain media,” IEEE Access, vol. 8, pp. 218323-218330, 2020.

       ·  Li-Ye Xiao, Wei Shao*, Fu-Long Jin, Bing-Zhong Wang, and Qing Huo Liu, “Radial basis function neural network with hidden node interconnection scheme for thinned array modeling,” IEEE Antennas and Wireless Propagation Letters, vol. 19, no. 12, pp. 2418-2422, 2020.

        ·   Li-Ye Xiao, Fu-Long Jin, Bing-Zhong Wang, Qing Huo Liu and Wei Shao*, “Efficient inverse extreme learning machine for parametric design of metasurfaces,” IEEE Antennas and Wireless Propagation Letters, vol. 19, no. 6, pp. 992-996, 2020.

       ·   Fu-Long Jin, Xiao Ding*, You-Feng Cheng, Bing-Zhong Wang, and Wei Shao, “A wideband phased array with broad scanning range and wide-angle impedance matching”, IEEE Trans. Antennas and Propagation, vol. 68, no. 8, pp. 6022-6031, 2020.

        ·   Li-Ye Xiao, Wei Shao*, Fu-Long Jin, Bing-Zhong Wang, William T. Joines, and Qing Huo Liu, “Semi-supervised radial basis function neural network with an effective sampling strategy”, IEEE Trans. Microwave Theory and Techniques, vol. 68, no. 4, pp.1260-1269, 2020.

       ·  Kai Wang, Wei Shao*, Xiao Ding, and Bing-Zhong Wang, “Design method of passive lossless metasurfaces with auxiliary waves for beam control”, IEEE Trans. Antennas and Propagation, vol. 68, no. 5, pp. 4126-4131, 2020.


    2019

    • Xi Cheng, Wei Shao*, Kai Wang, and Bing-Zhong Wang, “Uncertainty analysis in dispersive and lossy media for ground penetrating radar modeling”, IEEE Antennas and Wireless Propagation Letters, vol. 18, no. 9, pp. 1931-1935, Sept. 2019.

    • Li-Ye Xiao, Wei Shao*, Xiao Ding, Qing Huo Liu, and William T. Joines, “Multigrade artificial neural network for the design of finite periodic arrays”, IEEE Trans. Antennas and Propagation, vol. 67, no. 5, pp. 3109-3116 , May 2019.

    • Li-Ye Xiao, Wei Shao*, Xiao Ding, Bing-Zhong Wang, Qing Huo Liu, and William T. Joines, “Parametric modeling of microwave components based on semi-supervised learning”, IEEE Access, vol. 7, no. 1, pp. 35890-35897, 2019.

    • Fu-Long Jin, Xiao Ding*, You-Feng Cheng, Bing-Zhong Wang, and Wei Shao, “Impedance matching design of a low-profile wide-angle scanning phased array”, IEEE Trans. Antennas and Propagation, vol. 67, no. 10, pp. 6401-6409, Oct. 2019.

       

        2018

    • Tu-Lu Liang, Wei Shao* and Kai Wang, “A Hybrid Sub-Gridding ADE-FDTD Method for Modeling Periodic Metallic Nanoparticle Arrays”, Chinese Physics B, vol. 27, no. 10, pp.100204, 2018.

    • Xiao-Kun Wei, Wei Shao*, Xiao Ding, and Bing-Zhong Wang, “Efficient sub-gridded FDTD for three-dimensional time-reversed electromagnetic field shaping”, Applied Computational Electromagnetics Society Journal, vol. 33, no. 8, pp. 828-833, 2018.

    • Li-Ye Xiao, Wei Shao*, Xiao Ding, and Bing-Zhong Wang, “Dynamic adjustment kernel extreme learning machine for microwave component design”, IEEE Trans. Microw. Theory Techn., vol. 66, no. 10, pp. 4452-4461, 2018.

    • Sheng-Bing Shi, Wei Shao*, and Kai Wang, “Domain decomposition scheme in Newmark-Beta- FDTD for dispersive grating calculation”, Applied Computational Electromagnetics Society Journal, vol. 33, no. 7, pp. 718-723, 2018.

    • You-Feng Cheng, Xiao Ding, Fu-Long Jin and Wei Shao*, “A bandwidth-enhanced planar endfire antenna based on surface waves”, Journal of Electromagnetic Waves and Applications, vol. 32, no. 14, pp. 1847-1856, 2018.

    • Tu-Lu Liang, Wei Shao*, and Sheng-Bing Shi, “Complex-envelope ADE-LOD-FDTD for band gap analysis of plasma photonic crystals”, Applied Computational Electromagnetics Society Journal, vol. 33, no. 4, pp. 443-449, 2018.

    • Li-Ye Xiao, Wei Shao*, Fu-Long Jin, and Bing-Zhong Wang, “Multiparameter modeling with ANN for antenna design”, IEEE Trans. Antennas and Propagation, vol. 66, no. 7, pp. 3718-3723, Jul. 2018.

    • Xiao-Kun Wei, Wei Shao*, and Xiao-Hua Wang, “Hybrid sub-gridded time-domain method for ground penetrating radar simulations on dispersive and inhomogeneous soils”, IEEE Access, vol. 6, no. 1, pp. 15777-15786, Dec. 2018.

    • You-Feng Cheng, Xiao Ding, Wei Shao*, and Bing-Zhong Wang, “Dual-band wide-angle scanning phased array composed of SIW-cavity backed elements”, IEEE Trans. Antennas and Propagation, vol. 66, no. 5, pp. 2678-2683, May 2018.

    • Xiao-Kun Wei, Wei Shao*, Shuai Ding, and Bing-Zhong Wang, “Hybrid sub-gridded ADE-FDTD for modeling ground penetrating radar on dispersive soils”, Journal of Electromagnetic Waves and Applications, vol. 32, no. 11, pp. 1416-1426, 2018.

    • Li-Ye Xiao, Wei Shao*, Sheng-Bing Shi, and Zhong-Bing Wang, “Extreme learning machine with a modified flower pollination algorithm for filter design”, Applied Computational Electromagnetics Society Journal, vol. 33, no. 3, pp. 279-284, 2018.

    • Xiao-Kun Wei, Wei Shao*, Xiao-Hua Wang, and Bing-Zhong Wang, “Domain decomposition CN-FDTD with unsplit-field PML for time-reversed channel analysis”, Radiaoengineering, vol. 27, no 2, pp. 469-474, 2018.

    • Li-Ye Xiao, Wei Shao*, Zhi-Xin Yao, and Shanshan Gao, “Data mining techniques in artificial neural network for UWB antenna design”, Radioengineering, vol. 27, no. 1, pp. 70-78, April 2018.

       

        2017

    • Kai Wang, Wei Shao*, Haiyan Ou, and Bing-Zhong Wang, “Time reversal focusing beyond the diffraction limit using near-field auxiliary sources”, IEEE Antennas and Wireless Propagation Letters, vol. 16, pp. 2828-2831, 2017.

    • Xiao-Kun Wei*, Xingqi Zhang, Nectaria Diamanti, Wei Shao, and Costas D. Sarris, “Sub-gridded FDTD modeling of ground penetrating radar scenarios beyond the Courant stability limit,IEEE Transactions on Geoscience and Remote Sensing, vol. 55, no. 12, pp. 7189-7198, Dec. 2017.

    • Xiao-Kun Wei, Wei Shao*, and Haiyan Ou, “Domain decomposition CN-FDTD method for analyzing dispersive metallic gratings”, IEEE Photonics Journal, vol. 9, no. 4, 6101318, 2017.

    • You-Feng Cheng, Xiao Ding, Bing-Zhong Wang, and Wei Shao*, “An azimuth-pattern reconfigurable antenna with enhanced gain and front-to-back ratio,” IEEE Antennas and Wireless Propagation Letters, vol. 16, pp. 2302-2306, 2017.

    • Sheng-Bing Shi, Wei Shao*, Jing Ma, Congjun Jin, and Xiao-Hua Wang, “Newmark-Beta- FDTD method for super-resolution analysis of time-reversal waves,” Journal of Computational Physics, vol. 345, pp. 475-483, 2017.

    • Liye Xiao, Wei Shao*, Mengxia Yu, Jing Ma and Congjun Jin, “Research and application of a hybrid wavelet neural network model with the improved cuckoo search algorithm for electrical power system forecasting,” Applied Energy, vol. 198. 203-222, 2017. (SCI: EW2RK)

    • Li-Ye Xiao, Feng Qian and Wei Shao*, “Multi-step wind speed forecasting based on a hybrid forecasting architecture and an improved bat algorithm,” Energy Conversion and Management, vol. 143, 410-430, 2017.

    • You-Feng Cheng*, Wei Shao, Xiao Ding, Mengxia Yu, Jing Ma and Congjun Jin, “A novel beam steerable antenna based on dual-reconfiguration technique,” Journal of Electromagnetic Wave and Applications, vol.31, no. 7, pp. 740-751, 2017.

    • You-Feng Cheng*, Wei Shao, Xiao Ding and Meng-Xia Yu, “Design of tilted-beam Fabry-Perot antenna with aperiodic partially reflective surface,” Applied Computational Electromagnetics Society, vol. 32, no. 5, pp. 397-404, May, 2017.

    • You-Feng Cheng*, Xiao Ding, Wei Shao and Bing-Zhong Wang, “Reduction of mutual coupling between patch antennas using a polarization-conversion isolator,” IEEE Antennas and Wireless Propagation Letters, vol. 16, pp. 1257 - 1260, Dec. 2017.

    • Xiao-Kun Wei*, Wei Shao, Haiyan Ou and Bing-Zhong Wang, “Efficient WLP-FDTD with complex frequency shifted PML for super-resolution analysis”, IEEE Antennas and Wireless Propagation Letters, vol. 16, pp. 1007-1010, 2017.

    • You-Feng Cheng*, Xiao Ding, Wei Shao, Meng-Xia Yu and Bing-Zhong Wang, “2-D planar wide-angle scanning phased array based on wide-beam elements”, IEEE Antennas and Wireless Propagation Letters, vol. 16, pp. 876-879, 2017.

    • You-Feng Cheng*, Xiao Ding, Wei Shao, Meng-Xia Yu and Bing-Zhong Wang, “ A novel wide-angle scanning phased array based on dual-mode pattern reconfigurable elements,” IEEE Antennas and Wireless Propagation Letters, vol. 16, pp. 396-399, 2017.

    • You-Feng Cheng*, Xiao Ding, Wei Shao and Bing-Zhong Wang, “Planar wide-angle scanning phased array with pattern-reconfigurable windmill-shaped loop elements,” IEEE Trans. Antennas and Propagation, vol. 65, no. 2, pp. 932-936, Feb. 2017.

    • Liye Xiao, Wei Shao*, Mengxia Yu, Jing Ma and Congjun Jin, “Research and application of a combined model based on multi-objective optimization for electrical load forecasting”, Energy, 119 (2017) 1057-1074.


       2016

    • Sheng-Bing Shi, Wei Shao*, Tu-Lu Liang, Li-Ye Xiao, Xue-Song Yang, and Haiyan Ou, “Efficient frequency-dependent Newmark-Beta-FDTD method for periodic grating calculation,” IEEE Photonics Journal, vol. 8, no. 6, 7805409, 2016.

    • Tu-Lu Liang, Wei Shao*, Sheng-Bing Shi and Haiyan Ou, “Analysis of extraordinary optical transmission with periodic metallic gratings using ADE-LOD-FDTD method”, IEEE Photonics Journal, vol. 8, no. 5, 7804710, 2016.

    • Sheng-Bing Shi*, Wei Shao, Xiao-Kun Wei, Xue-Song Yang and Bing-Zhong Wang, “A new unconditionally stable FDTD method based on the Newmark-Beta algorithm”, IEEE Trans. Microwave Theory and Technique, vol. 64, no. 12, pp. 4082-4090, Dec. 2016.

    • You-Feng Cheng*, Wei Shao, Ran Zhang, Xiao Ding, and Meng-Xia Yu “Thinning and weighting of planar/conformal arrays considering mutual coupling effects,” International Journal of Antennas and Propagation, vol. 2016, Article ID 7521723, 10 pages, 2016.

    • Xiao-Kun Wei*, Wei Shao, Sheng-Bing Shi, You-Feng Cheng and Bing-Zhong Wang, “ An optimized higher-order PML in domain decomposition WLP-FDTD method for time reversal analysis”, IEEE Trans. Antennas and Propagation, vol. 64, no. 10, pp.4374 -4383, Oct. 2016.

    • Liye Xiao, Wei Shao*, Chen Wang, Kequan Zhang and Haiyan Lu, “Research and application of a hybrid model based on multi-objective optimization for electrical load forecasting,” Applied Energy, vol. 180, pp. 213-233, 2016.

    • Xiao-Kun Wei∗, Wei Shao, Haiyan Ou and Bing-Zhong Wang, “An efficient higher-order PML in WLP-FDTD method for time reversed wave simulation,” Journal of Computational Physics, vol. 321, pp. 1206-1216, 2016.

    • Wei-Jun Chen*, Wei Shao, Jun Quan and Shi-Yu Long, “Modeling of wave propagation in thin graphene sheets with WLP-FDTD method”, Journal of Electromagnetic Waves and Applications, vol. 30, no. 6, pp. 780-787, 2016.

    • Liye Xiao, Wei Shao*, Tulu Liang and Chen Wang, “A combined model based on multiple seasonal patterns and modified firefly algorithm for electrical load forecasting”, Applied Energy, vol. 167, pp. 135-153, 2016.

    • You-Feng Cheng*, Wei Shao, Sheng-Jun Zhang and Ya-Peng Li, “An improved multi-objective genetic algorithm for large planar array thinning,” IEEE Trans. Magnetics, vol. 52, no. 3, pp.9400304, 2016.

     

        2015

    • Xiao-Kun Wei*, Wei Shao, Sheng-Bing Shi and Bing-Zhong Wang, “An efficient 2-D WLP-FDTD method utilizing vertex-based domain decomposition scheme,” IEEE Microwave and Wireless Components Letters, vol. 25, no. 12, pp. 769-771, 2015.

    • Xiao-Kun Wei*, Wei Shao, Sheng-Bing Shi, Yong Zhang and Bing-Zhong Wang, “Efficient locally one-dimensional finite-difference time-domain method based on the conformal scheme”, Chinese Physics B, vol. 24, no. 7, (2015) 070203.

    • Wei Shao*, Jia-Lin Li and Qifei Li, “Oblique incidence plane wave scattering from large finite arrays using EV-AEP method”, Applied Computational Electromagnetics Society Journal, vol. 30, no. 3, pp. 281-287, 2015.

     

       2014年

    • Xiao-Kun Wei*, Wei Shao, Cheng Zhang, Jia-Lin Li and Bing-Zhong Wang, “An improved self-adaptive genetic algorithm with quantum scheme for electromagnetic optimization,” IET Microwave, Antennas and Propagation, vol. 8, no. 12, pp. 965–972, 2014.

    • Yan-Liang Li, Wei Shao*, Jing-Ting Wang and Haibo Chen, “An improved NSGA-II and its application for reconfigurable pixel antenna design,” Radioengineering, vol. 23, no. 2, pp. 733-738, 2014.

    • Hai-Yan Huang*, Wei Shao, Bing-Zhong Wang and Xiao-Liang Ma, “Novel dual-band slot antenna design for Bluetooth and UWB applications,” Frequenz, vol. 68, no. 5-6, pp. 217-225, May 2014.

    • Wei-Jun Chen, Wei Shao*, Haibo Chen and Bing-Zhong Wang, “Nearly PML for ADE-WLP-FDTD modeling in two-dimensional dispersive media,” IEEE Microwave and Wireless Components Letters, vol. 24, no. 2, pp. 75-77, Feb. 2014.


        2013

    • Wei-Jun Chen, Wei Shao*, Jia-Lin Li and Bing-Zhong Wang,“Numerical dispersion analysis and key parameter selection in Laguerre-FDTD method,” IEEE Microwave and Wireless Components Letters, vol. 23, no. 12, pp. 629-631, Dec. 2013.

    • Yan-Liang Li, Wei Shao*, Long You and Bing-Zhong Wang, “An improved PSO algorithm and its application to UWB antenna design,” IEEE Antennas and Wireless Propagation Letters, vol. 12, pp. 1236-1239, Dec. 2013.

    • Wei-Jun Chen, Wei Shao*, Jia-Lin Li and Bing-Zhong Wang,“A two-dimensional nonorthogonal WLP-FDTD method for eigenvalue problems,”IEEE Microwave and Wireless Components Letters, vol. 23, no. 10, pp. 515-517, Oct. 2013.

    • Wei-Jun Chen, Wei Shao* and Bing-Zhong Wang, “ADE-Laguerre-FDTD method for wave propagation in general dispersive materials,” IEEE Microwave and Wireless Components Letters, vol. 23, no. 5, pp. 228-230, May 2013.

    • Guo-Qiang He, Wei Shao*, Xiao-Hua Wang and Bing-Zhong Wang, “An efficient domain decomposition Laguerre-FDTD method for two-dimensional scattering problems,” IEEE Trans. Antennas and Propagation, vol. 61, no. 5, pp. 2639-2645, May 2013.

     

        2012

    • Wei Shao* and Xinyue Zhu, “A hybrid optimization algorithm for low RCS antenna design,” Radioengineering, vol. 21, no. 4, Dec. pp. 1007-1012, 2012.

    • Jian-Chao Liu and Wei Shao*, “Broadband and compact zeroth-order resonant antennas with truncated grounds,” Applied Computational Electromagnetics Society Journal, vol. 27, No. 10, pp. 823-828, 2012.

    • Wei Shao* and Jia-Lin Li, “Accurate modeling of a patterned ground and its application to microwave filters,” Applied Computational Electromagnetics Society Journal, vol. 27, no. 7, pp. 596-602, 2012.

    • Xiao-Liang Ma, Wei Shao* and Guo-Qiang He, “A novel dual narrow band-notched CPW-fed UWB slot antenna with parasitic strips,” Applied Computational Electromagnetics Society Journal, vol. 27, no. 7, pp. 581-586, 2012.

    • Xinyue Zhu, Wei Shao* and Jia-Lin Li, “Low RCS antenna design using genetic algorithm combined with tabu list,” Applied Computational Electromagnetics Society Journal, vol. 27, no. 7, pp. 574-580, 2012.

    • Wei Shao* and Jia-Lin Li, “An efficient Laguerre-FDTD algorithm for exact parameter extraction of lossy transmission lines,” Applied Computational Electromagnetics Society Journal, vol. 27, no. 3, pp. 223-228, 2012.

    • Wei Shao* and Jia-Lin Li, “Design of a microwave frequency tripler with conversion gain,” Journal of Electromagnetic Waves and Applications, vol. 26, no. 2/3, pp. 226-238, 2012.

    • Xinyue Zhu, Wei Shao*, Jia-Lin Li and Yuliang Dong, “Design and optimization of low RCS patch antennas based on a genetic algorithm”, Progress In Electromagnetics Research, vol. 122, pp. 327-339, 2012.

     

        2011

    • Qifei Li, Wei Shao* and Hua Li, “Scattering pattern calculation for large finite arrays using the element-varying AEF method,” Applied Computational Electromagnetics Society Journal, vol. 26, no. 11, pp. 893-898, 2011.

    • Jian-Chao Liu, Wei Shao* and Bing-Zhong Wang, “Design of a novel dual-beam scanning leaky-wave antenna,” Applied Computational Electromagnetics Society Journal, vol. 26, no. 7, pp. 619-623, 2011.

    • Jian-Chao Liu, Wei Shao* and Bing-Zhong Wang, “A dual-band metamaterial design using double SRR structures,” Applied Computational Electromagnetics Society Journal, Vol. 26, No. 6, pp. 459-463, 2011.

    • Wei Shao* and Jia-Lin Li, “A compact log-periodic branch-line balun with an octave bandwidth,” Journal of Electromagnetic Waves and Applications, vol. 25, no. 14-15, pp. 2033-2042, 2011.

    • Wei Shao* and Jia-Lin Li, “Design of a half-mode SIW high-pass filter,” Applied Computational Electromagnetics Society Journal, vol. 26, no. 5, pp. 447-451, 2011.

     

        2004-2010

    • Wei Shao*, Jun He and Bing-Zhong Wang, “Compact rat-race ring coupler with capacitor loading,” Microwave and Optical Technology Letters, vol. 52, no. 1, pp. 7-9, 2010.

    • Wei Shao*, Sheng-Jian Lai and Ting-Zhu Huang, “Compact 2-D full-wave order-marching time-domain method with a memory-reduced technique,” Progress in Electromagnetics Research Letters, vol. 6, pp. 157-164, 2009.

    • Wei Shao*, Bing-Zhong Wang and Ting-Zhu Huang, “A memory-reduced 2-D order-marching time-domain method for waveguide studies,” Journal of Electromagnetic Waves and Applications, vol. 22, pp. 2523-2531, 2008.

    • Wei Shao* and Bing-Zhong Wang, “Order-marching time-domain method in cylindrical coordinate system for eigenvalue problems,” Journal of Electromagnetic Waves and Applications, vol. 21, no. 14, pp. 2025-2031, 2007.

    • Wei Shao*, Bing-Zhong Wang, and H. Li, “Modeling curved surfaces using locally conformal order-marching time-domain method,” International Journal of Infrared and Millimeter Waves, vol. 28, no.11, pp. 1033-1038, Nov. 2007.

    • Wei Shao* and Bing-Zhong Wang, “Complex variable technique in compact 2-D order-marching time-domain method,” Journal of Electromagnetic Waves and Applications, vol. 21, no. 11, pp. 1453-1460, Sept. 2007.

    • Wei Shao*, Bing-Zhong Wang and Huilai Liu, “Study of millimeter-wave waveguides using a 2-D order-marching time-domain method,” International Journal Infrared and Millimeter Waves, vol. 27, no. 9, 1217-1225. 2006.

    • Wei Shao*, Bing-Zhong Wang, Xiao-Hua Wang and Xiao-Fei Liu, “Efficient compact 2-D time-domain method with weighted laguerre polynomials,” IEEE Trans. Electromagn. Compat., 2006, 48(3): 442-448.

    • Wei Shao*, Bing-Zhong Wang and Xiao-Fei Liu, “Second-order absorbing boundary conditions for marching-on-in-order scheme,” IEEE Microw. Wireless Compon. Lett., 2006, 16(5): 308-310.

    • Wei Shao*, Bing-Zhong Wang and Zhong-Jun Yu, “Space-domain finite-difference and time-domain moment method for electromagnetic simulation,” IEEE Trans. Electromagn. Compat., 2006, 48(1): 10-18.

    • Wei Shao*, Bing-Zhong Wang, “2D FDTD algorithm for the analysis of lossy and dispersive millimeter-wave coplanar waveguide,” International Journal Infrared and Millimeter Waves, 2003, 24(9): 1553-1560.

    • 邵维*,王秉中.二维FDTD法互连线分析的非均匀网格实现.电子科技大学学报, 2003, 32(4): 385-388.


     

     

    教育经历

    2003.9 -- 2006.12
    电子科技大学       无线电物理       博士研究生毕业       理学博士学位

    2001.9 -- 2003.8
    电子科技大学       无线电物理       硕士研究生毕业       理学硕士学位

    1994.9 -- 1998.7
    电子科技大学       电子材料与器件       大学本科毕业       工学学士学位

    工作经历

    2017.12 -- 至今

    电子科技大学物理学院      教师

    2012.12 -- 2013.9

    香港大学      访问学者

    2007.1 -- 2017.11

    电子科技大学物理电子学院      教师

    1998.8 -- 2001.7

    成都泰城科技公司      销售工程师

    社会兼职

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