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论文编号 201405-175
论文题目 电磁带隙和人工磁导体在贴片天线上的应用研究
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Electromagnetic Band Gap and Artificial Magnetic Conductor and Their Application to the Patch Antenna

首发时间:2014-05-13

Feng Xu 1   

Feng Xu is a senior member of IEEE and received the M.S. degree in microwave and millimeter-wave theory and technology from the Nanjing Research Institute of Electronics and Technology, Nanjing, China, in 1998, and the Ph.D. degree in radio engineering from Southeast University, Nanjing, China, in 2002. He is senior member of IEEE. From 2002 to 2010, he was with the Poly-Grames Research Center, école Polytechnique, Montréal, QC, Canada, where he was a Post-Doctoral Researcher and then was a Research Associate. In April of 2010, he joined the R&D Department of the Safe Engineering Services and Technologies, Montreal, QC, Canada, where he was senior research scientist of the R&D Department. Since January of 2011, he has been professor of School of Electronic Science and Engineering, Nanjing University of Posts and Telecommunication, sponsored the Specially Appointed Professor Program of Jiangsu Province of China. His current research interests include numerical methods, the modeling and design of advanced microwave and millimeter-wave circuits and components, and microwave photonic circuits and systems. He is also interested in transient electromagnetic scattering, electromagnetic interference (EMI) and electromagnetic compatibility (EMC).

Hongyuan Zhou 1   
  • 1、School of Electronic Science & Engineering, Nanjing University of Posts and Telecommunications

Abstract:In this letter, the microstrip antenna with square patch array on the front surface and two-dimensional photonic band gap (PBG) on the ground has been proposed. The ground etching structure can suppress the resonance of the harmonic frequencies effectively of the antenna while the square patch array can increase the gain comparing with the normal microstrip patch antenna. The simulation and measurement results of this novel antenna are illustrated. The comparison of radiation patterns between this novel antenna, the microstrip antenna only with ground etching structure and the normal microstrip antenna is also presented.

keywords: Artificial magnetic conductor electromagnetic bandgap Patch antenna

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电磁带隙和人工磁导体在贴片天线上的应用研究

许锋 1   

Feng Xu is a senior member of IEEE and received the M.S. degree in microwave and millimeter-wave theory and technology from the Nanjing Research Institute of Electronics and Technology, Nanjing, China, in 1998, and the Ph.D. degree in radio engineering from Southeast University, Nanjing, China, in 2002. He is senior member of IEEE. From 2002 to 2010, he was with the Poly-Grames Research Center, école Polytechnique, Montréal, QC, Canada, where he was a Post-Doctoral Researcher and then was a Research Associate. In April of 2010, he joined the R&D Department of the Safe Engineering Services and Technologies, Montreal, QC, Canada, where he was senior research scientist of the R&D Department. Since January of 2011, he has been professor of School of Electronic Science and Engineering, Nanjing University of Posts and Telecommunication, sponsored the Specially Appointed Professor Program of Jiangsu Province of China. His current research interests include numerical methods, the modeling and design of advanced microwave and millimeter-wave circuits and components, and microwave photonic circuits and systems. He is also interested in transient electromagnetic scattering, electromagnetic interference (EMI) and electromagnetic compatibility (EMC).

周鸿远 1   
  • 1、南京邮电大学电子科学与工程学院

摘要:在本文中,研究了一个正面由小矩形贴片阵列环绕、底面配置了二维光子带隙(PBG)结构的微带贴片天线。底面的PBG结构可以有效地压缩天线的谐波频率振荡,而正面的小矩形贴片阵列因虚拟磁壁效应可以提高天线的增益。文中对一般的微带贴片天线、仅带底面PBG结构的微带贴片天线和本文提出的微带贴片天线这三者,进行了分析和比较,验证了所提天线结构的有效性,并加工测试了所提出的微带贴片天线。

关键词: 人工磁导体 电磁带隙 微带贴片天线

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Feng Xu,Hongyuan Zhou. Electromagnetic Band Gap and Artificial Magnetic Conductor and Their Application to the Patch Antenna[EB/OL]. Beijing:Sciencepaper Online[2014-05-13]. https://www.paper.edu.cn/releasepaper/content/201405-175.

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