Title :
An enhanced-bandwidth integrated dual L antenna for mobile communications systems-design and measurement
Author :
Virga, K. ; Rahmat-Samii, Y.
Author_Institution :
Dept. of Electr. Eng., California Univ., Los Angeles, CA, USA
Abstract :
This paper presents the characteristics of an enhanced bandwidth low-profile integrated antenna, the radiation coupled dual L antenna. The characteristics are determined by both measurements and computer simulations. This antenna is obtained by modifying the planar inverted F antenna (PIFA) to increase the bandwidth. The bandwidth is enhanced without increasing the antenna depth. The radiation coupled dual L antenna radiates isotropically and offers a number of design options for impedance matching. Compared with a PIFA of equal height, its bandwidth is higher by at least 50%. An insight as to which parameters have a dominant affect on the input impedance of this antenna is used to develop a methodology to design enhanced bandwidth dual L antennas. Special attention is paid to the input impedance characteristics, since both the PIFA and the dual L have very broad antenna patterns and the bandwidth defined by acceptable radiation patterns is usually quite larger than the impedance bandwidth.
Keywords :
antenna radiation patterns; antenna testing; electric impedance; impedance matching; land mobile radio; mobile antennas; antenna depth; antenna patterns; computer simulations; enhanced bandwidth low-profile integrated antenna; impedance bandwidth; impedance matching; input impedance; integrated dual L antenna; measurements; mobile communications systems; planar inverted F antenna; radiation coupled dual L antenna; radiation patterns; Antenna feeds; Arm; Bandwidth; Impedance matching; Microstrip antennas; Mobile antennas; Mobile communication; Receiving antennas; Resonance; Resonant frequency;
Conference_Titel :
Antennas and Propagation Society International Symposium, 1995. AP-S. Digest
Conference_Location :
Newport Beach, CA, USA
Print_ISBN :
0-7803-2719-5
DOI :
10.1109/APS.1995.530215