DocumentCode
5451
Title
Loss Mechanisms in the Electrically Small Loop Antenna [Antenna Designer´s Notebook]
Author
Austin, Brian A. ; Boswell, Alan ; Perks, Michael A.
Author_Institution
Dept. of Electr. Eng. & Electron., Univ. of Liverpool, Liverpool, UK
Volume
56
Issue
4
fYear
2014
fDate
Aug. 2014
Firstpage
142
Lastpage
147
Abstract
The characteristics of an electrically small loop antenna are readily calculable. Being an inherently high-Q device, it requires careful tuning. Its performance as a transmitting antenna is sometimes limited by low radiation efficiency because of inherent losses, combined with a radiation resistance that varies as the fourth power of frequency. An apparent anomaly, frequently encountered in practice, is that the measured Q factor differs significantly from that calculated or obtained by computer simulation. This finding has led some to believe that the loop has a higher radiation resistance than conventional analytical techniques would imply. However, this conclusion is unfounded. Experimental evidence presented here indicates that Q factors close to those predicted can be achieved when appropriate consideration is given to reducing the loss associated with the tuning-capacitor mechanism, in particular. The ground loss (another significant factor) is also calculable, but since it decreases rapidly with increasing loop height above ground, its effect can readily be reduced. Vital to the experimental program that accompanied this work was an effective method - using a toroidal transformer - of measuring the total resistance of the loop.
Keywords
Q-factor measurement; antenna radiation patterns; capacitors; electric resistance measurement; loop antennas; transformers; transmitting antennas; Q factor measurement; computer simulation; electrically small loop antenna; ground loss mechanism; high-Q device; radiation resistance; toroidal transformer; total resistance measurement; transmitting antenna; tuning-capacitor mechanism; Antenna measurements; Electrical resistance measurement; Electronic mail; Loss measurement; Propagation losses; Q-factor; Resistance; Loop antenna theory and measurement; ground loss; low-loss variable capacitors; small loop Q factor;
fLanguage
English
Journal_Title
Antennas and Propagation Magazine, IEEE
Publisher
ieee
ISSN
1045-9243
Type
jour
DOI
10.1109/MAP.2014.6931671
Filename
6931671
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