Title :
Bandwidth, SAR, and efficiency of internal mobile phone antennas
Author :
Kivekäs, Outi ; Ollikainen, Jani ; Lehtiniemi, Tuukka ; Vainikainen, Pertti
Author_Institution :
Inst. of Digital Commun., Helsinki Univ. of Technol., Espoo, Finland
Abstract :
This paper presents a thorough investigation into the effects of several phone chassis-related parameters-length, width, thickness, and distance between the head and phone-on the bandwidth, efficiency, and specific absorption rate (SAR) characteristics of internal mobile phone antennas. The studied antenna-chassis combinations are located beside an anatomical head model in a position of actual handset use. The effect of the user´s hand is also studied with two different hand models. The main part of the study is based on FDTD simulations, but also experimental results, which support the computationally obtained conclusions, are given. The presented analysis provides novel and useful information for future design of mobile handset antennas. The results show the general trends of bandwidth, SAR, and efficiency with different chassis parameters. The results also reveal a connection between these three performance parameters: an increase in SARs and a decrease in radiation efficiency occur compared to the general trend when the bandwidth reaches its maximum. This happens when the resonant frequency of the chassis equals that of the antenna.
Keywords :
UHF antennas; biological effects of microwaves; electromagnetic wave absorption; finite difference time-domain analysis; mobile antennas; mobile handsets; 1800 MHz; 900 MHz; anatomical head model; bandwidth; chassis parameters; finite-difference time-domain simulations; hand models; internal mobile phone antennas; mobile handset antenna design; phone chassis; radiation efficiency; resonant frequency; specific absorption rate; Bandwidth; Computational modeling; Finite difference methods; Information analysis; Mobile antennas; Mobile handsets; Resonant frequency; Specific absorption rate; Telephone sets; Time domain analysis;
Journal_Title :
Electromagnetic Compatibility, IEEE Transactions on
DOI :
10.1109/TEMC.2004.823613