Compact UWB frequency selective surface with high angular stability

Author:

Yahya Rabia1,Nakamura Akira1,Itami Makoto1

Affiliation:

1. Department of Applied Electronics, Tokyo University of Science

Publisher

Institute of Electronics, Information and Communications Engineers (IEICE)

Subject

General Medicine

Reference7 articles.

1. [1] B. A. Munk, Frequency Selective Surfaces: Theory and Design, John Wiley & Sons Inc, New York, 2000. DOI:10.1002/0471723770

2. [3] First Report and Order, Revision of Part 15 of the Commission’s Rules Regarding Ultra-Wideband Transmission Systems, Federal Communications Commission, ET Docket 98-153, FCC 02-48, Feb. 2002.

3. [4] Y. Ranga, L. Matekovits, A. R. Weily, and K. P. Esselle, “A low-profile dual-layer ultra-wideband frequency selective surface reflector,” Microw. Opt. Technol. Lett., vol. 55, pp. 1223–1227, June 2013. DOI:10.1002/mop.27583

4. [5] B. Yuan, X. Zheng-hui, L. Wei-ming, and R. Wu, “Ultra-wideband frequency selective surface at K and Ka band,” Proc. IEEE International Conference on Microwave Technology and Computational Electromagnetics (ICMTCE), Qingdao, China, pp. 55–57, Aug. 2013. DOI:10.1109/ICMECE.2013.6812480

5. [6] W. Li, T. Zhang, G. Yang, Q. Wu, and J. Hua, “Novel frequency selective surfaces with compact structure and ultra-wideband response,” Proc. Asia-Pacific Symposium on Electromagnetic Compatibility (APEMC), Singapore, pp. 557–560, May 2012. DOI:10.1109/APEMC.2012.6238018

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