個人經歷
工作經歷 Work Experience
教育經歷 Education Experience
工學博士 西安電子科技大學2010
主講課程
《微波與射頻電子線路》、《電子線路三》(英文)
研究方向
1.寬頻小型化天線及陣列技術研究
2.相控陣天線相關技術研究
3.特徵模算法在天線中的套用研究
4.電磁工程問題中的最佳化研究
科研項目:
低剖面寬頻天線研究
共口徑天線陣列研究
目標特徵模及磁電諧振特性在低剖面寬頻天線中的套用研究
學術成果
Academic Achievements
1. S.G. Zhou, P. K. Tan and T. H. Chio.: “A Wideband, Low Profile P- and Ku-band Shared Aperture Antenna with High Isolation and Low Cross-polarization”, IET Microwaves, Antennas & Propagation. Vol. 7, No. 4, pp:223–229, 2013
2. S.G. Zhou, P. K. Tan and T. H. Chio.: “Low-Profile, Wideband Dual-Polarized Antenna With High Isolation and Low Cross Polarization”. IEEE antennas and wireless propagation letters, vol. 11, pp: 1032-1035. 2012.
3. S.G. Zhou, T. H. Chio, J. Lu: “A shared-aperture dual-wideband dual-polarized stacked microstrip array”, Microwave and Optical Technology Letters, Vol. 54, No. 2, pp: 486–491, 2012
4. S.G. Zhou, J.Y. Li.: “Low profile and wideband antenna”. IEEE antennas and wireless propagation letters, vol. 10, pp: 373-376. 2011.
5. S.-G. Zhou, B.-H. Sun, Y.-F. Wei and Q.-Z. Liu:“Low profile wideband antenna with shaped beams for indoor DVB-H applications”. Electronics Letters, vol.45, no.23 pp: 1151-1152, Jul. 2009.
6. Zhou, S., Guo. J.,Huang, Y and Liu, Q:“Broadband dual frequency sleeve monopole antenna for DTV/GSM applications”. Electronics Letters, vol.45, pp: 766-768, Jul. 2009.
7. S.G. Zhou, Y.H. Huang and Q.Z. Liu. Wideband and omni-directional antenna for DVB/GSM applications. Journal of electromagnetic waves and applications, vol. 23, no.4, pp: 2143-2151, 2009.
8. Zhou, S., Ma, J., Deng, J. and Liu, Q: “A Novel Dual Band-notched Ultra-wideband Antenna”. Journal of electromagnetic waves and applications, vol. 23, no.1, pp: 57-63, 2009.
9. S.G. Zhou, B.H. Sun,J.L. Guo. and Q.Z. Liu: “A new fitness function for optimizing the matching network of broadband antennas by genetic algorithm”. Journal of electromagnetic waves and applications, vol. 22, no.4, pp: 759-765. 2008.
10. S. G. Zhou, B. H. Sun, Y. F. Wei and Q.-Z. Liu. Two-port antenna with high isolation for DTV/GSM/UMIS indoor applications. Progress in Electromagnetic Research letters, vol. 10, pp: 107-113, 2009.
11. Zhou, S., Ma, J., Deng, J. and Liu, Q. A Low-profile and Broadband Conical Antenna. Progress in Electromagnetic Research letters, vol.7, pp: 97-103, 2009
12. S.G. Zhou, T.H. Chio: “Dual-wideband And Dual-polarized Shared Aperture Antenna”, 2012 International Symposium on Antennas and Propagation, 2012, Nagoya, Japan
13. S.G. Zhou, T.H. Chio: “A Wideband, Low Profile P- and Ku-band Dual Polarized Shared Aperture Antenna”, 2012 International Symposium on Antennas and Propagation, 2012, Nagoya, Japan
14. S.G. Zhou, T.H. Chio: “Dual-wideband, Dual-polarized Shared Aperture Antenna with High Isolation and Low Cross-polarization”, the 10th International Symposium on Antennas and Propagation, and EM theory, 2012, Xi’an, China
15. S.G. Zhou, T.H. Chio: “Dual linear polarization patch antenna array with high isolation and low cross polarization” IEEE society international symposium on Antenna and propagation, 2011, Spokane US
學術文獻 Academic Literature
1. A compact dual-band dual-polarized antenna for base station application , Electromagnetics Academy,2016,64,61-70 ,DOI:10.2528/PIERC16040206, ISSN:19378718
2. Development of a Symmetric Waveguide T-Junction Power Divider with Equal-Phase Characteristic , Applied Computational Electromagnetics Society (ACES),2016,31(3),309-314 ,DOI:, ISSN:10544887
3. A Wideband Full-Corporate-Feed Waveguide Slot Planar Array , Institute of Electrical and Electronics Engineers Inc.,2016,64(5),1974-1978 ,DOI:10.1109/TAP.2016.2526074, ISSN:0018926X
4. Fabrication of a High-Efficiency Waveguide Antenna Array via Direct Metal Laser Sintering , Institute of Electrical and Electronics Engineers Inc.,2016,15,622-625 ,DOI:10.1109/LAWP.2015.2464752, ISSN:15361225
5. A compact dual-polarized antenna for base station application , Electromagnetics Academy,2016,59,7-13 ,DOI:, ISSN:19376480
6. Design of a dual-polarized wideband antenna for 2G/3G/4G mobile communication base station application , John Wiley and Sons Inc., P.O.Box 18667, Newark, NJ 07191-8667, United States,2016,58(6),1329-1332 ,DOI:10.1002/mop.29787, ISSN:08952477
7. Application of 3-D metal-direct-printing technique for waveguide antenna fabrication , Institute of Electrical and Electronics Engineers Inc.,2015,2015-October,316-317 ,DOI:10.1109/APS.2015.7304544, ISSN:9781479978151
8. Design of a wideband and low-profile monopulse array fabricated by 3-d metal printing technique , Institute of Electrical and Electronics Engineers Inc.,2015,2015-October,322-323 ,DOI:10.1109/APS.2015.7304547, ISSN:9781479978151
9. Design of a Wideband Dual-Polarization Full-Corporate Waveguide Feed Antenna Array , IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC,2015,63(11),4775-4782 ,DOI:10.1109/TAP.2015.2479639, ISSN:0018-926X
10. Broadband and high gain waveguide-fed slot antenna array in the Ku-band , INST ENGINEERING TECHNOLOGY-IET,2014,8(13),1041-1046 ,DOI:10.1049/iet-map.2013.0702, ISSN:1751-8725
11. 3-D metal-direct-printed wideband and high-efficiency waveguide-fed antenna array , Institute of Electrical and Electronics Engineers Inc.,2015, ,DOI:10.1109/MWSYM.2015.7166882, ISSN:9781479982752
12. A low profile and low sidelobe wideband slot antenna array feb by an amplitude-tapering waveguide feed-network , Institute of Electrical and Electronics Engineers Inc.,2015,63(1),419-423 ,DOI:10.1109/TAP.2014.2365238, ISSN:0018926X