Presentation 2008-08-28
Evaluation of Electromagnetic Field Measurement over Two-Dimensional Communication Media with Anti-Reflection Edged
Azman Osman Lim, Kenichi Tezuka, Bing Zhang,
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Abstract(in English) This paper presents a novelty two-dimensional (2D) communication media, which allows a surface to provide signal and energy transmissions to devices that are placed on top of it. The electromagnetic propagation inside the 2D sheet can produce a standing wave, which is a resultant of the reflected waves and the original wave. To diminish the effect of standing wave, we use an anti-reflection edged. In this paper, we investigate the electromagnetic field characteristic of 2D communication media, in which the edges or sides of 2D sheet are conjoined with the anti-reflection edged. To avoid the risk of causing measurement accuracies and ambiguities, all the experiments are conducted inside an anechoic room. Measurement results reveal that the average magnetic field strength drops about 8% and 18% for the 3-edged and 4-edged 2D sheets, respectively.
Keyword(in Japanese) (See Japanese page)
Keyword(in English) 2D communication media / electromagnetic field / reflected wave / standing wave / anti-reflection edged
Paper # MW2008-82
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Committee MW
Conference Date 2008/8/21(1days)
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Registration To Microwaves (MW)
Language ENG
Title (in Japanese) (See Japanese page)
Sub Title (in Japanese) (See Japanese page)
Title (in English) Evaluation of Electromagnetic Field Measurement over Two-Dimensional Communication Media with Anti-Reflection Edged
Sub Title (in English)
Keyword(1) 2D communication media
Keyword(2) electromagnetic field
Keyword(3) reflected wave
Keyword(4) standing wave
Keyword(5) anti-reflection edged
1st Author's Name Azman Osman Lim
1st Author's Affiliation National Institute of Information and Communications Technology()
2nd Author's Name Kenichi Tezuka
2nd Author's Affiliation Cellcross Co. Ltd.
3rd Author's Name Bing Zhang
3rd Author's Affiliation National Institute of Information and Communications Technology
Date 2008-08-28
Paper # MW2008-82
Volume (vol) vol.108
Number (no) 195
Page pp.pp.-
#Pages 6
Date of Issue