DocumentCode
2579645
Title
E-textile microstrip patch antennas for GPS
Author
Elliot, P.G. ; Rosario, E.N. ; Rao, B. Rama ; Davis, R.J. ; Marcus, N.M.
Author_Institution
MITRE Corp., Bedford, MA, USA
fYear
2012
fDate
23-26 April 2012
Firstpage
66
Lastpage
73
Abstract
Body-worn microstrip patch antennas made from e-textile (Electro-Textile) materials were designed, built, and tested for the 1575 MHz (L1) and 1227 MHz (L2) Global Positioning System (GPS) frequencies. E-textiles, including fabrics and foam sheets, are flexible, lightweight, wearable, conformal, and the materials are low cost compared to conventional antenna materials. A variety of materials were tested to determine suitability for e-textile antennas. Gain was measured and found to be a few dB lower than for patch antennas built with conventional copper-clad materials, largely due to higher ohmic losses in the conductive fabrics. Gain was also measured on a human body “phantom” which is a plastic shell filled with fluids formulated to replicate the electromagnetic properties of the body. Use of wearable antennas removes the antenna from the receiver which reduces the size and weight of the receiver, and also allows larger antennas to be used. This effort also helps prepare for possible future applications of multiple wearable antennas such as interference mitigation, anti-spoof, indoor position detection, multiple-input-multiple-output (MIMO) communications, and body-worn antennas for health monitoring or covert communications.
Keywords
Global Positioning System; MIMO communication; microstrip antennas; GPS; Global Positioning System frequency; MIMO communication; antenna material; anti-spoof; body-worn microstrip patch antenna; conductive fabrics; copper-clad material; covert communication; e-textile materials; e-textile microstrip patch antenna; electro-textile materials; electromagnetic property; foam sheets; health monitoring; human body phantom; indoor position detection; interference mitigation; multiple-input-multiple-output communication; ohmic loss; plastic shell; wearable antenna; Monitoring;
fLanguage
English
Publisher
ieee
Conference_Titel
Position Location and Navigation Symposium (PLANS), 2012 IEEE/ION
Conference_Location
Myrtle Beach, SC
ISSN
2153-358X
Print_ISBN
978-1-4673-0385-9
Type
conf
DOI
10.1109/PLANS.2012.6236866
Filename
6236866
Link To Document