TY - JOUR
T1 - Dual-spiral slot antennas
AU - Hirose, K.
AU - Nakano, H.
PY - 1991/1/1
Y1 - 1991/1/1
N2 - Two types of dual-spiral slot antennas characterized by their simple feed are studied; one is a bidirectional radiation type (Bi-DSS) and the other is a undirectional type (Uni-DSS). The radiation characteristics of the Bi-DSS are evaluated using the numerically determined magnetic current distribution. It is found that a travelling wave magnetic current distribution becomes dominant for a particular range of slot-arm lengths, contributing to the radiation of a circularly polarised wave. On the basis of the investigation of the Bi-DSS radiation mechanism, the Uni-DSS antenna with a triplate configuration is designed. Formation of a circularly polarised, unidirectional beam is experimentally realised. A 4 × 8 Uni-DSS array antenna with a simple feeding system is constructed, achieving an aperture efficiency of 60% over a frequency range of 11.6 GHz to 12.0 GHz.
AB - Two types of dual-spiral slot antennas characterized by their simple feed are studied; one is a bidirectional radiation type (Bi-DSS) and the other is a undirectional type (Uni-DSS). The radiation characteristics of the Bi-DSS are evaluated using the numerically determined magnetic current distribution. It is found that a travelling wave magnetic current distribution becomes dominant for a particular range of slot-arm lengths, contributing to the radiation of a circularly polarised wave. On the basis of the investigation of the Bi-DSS radiation mechanism, the Uni-DSS antenna with a triplate configuration is designed. Formation of a circularly polarised, unidirectional beam is experimentally realised. A 4 × 8 Uni-DSS array antenna with a simple feeding system is constructed, achieving an aperture efficiency of 60% over a frequency range of 11.6 GHz to 12.0 GHz.
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U2 - 10.1049/ip-h-2.1991.0006
DO - 10.1049/ip-h-2.1991.0006
M3 - Article
AN - SCOPUS:0026108450
VL - 138
SP - 32
EP - 36
JO - IEE Proceedings H: Microwaves, Antennas and Propagation
JF - IEE Proceedings H: Microwaves, Antennas and Propagation
SN - 0950-107X
IS - 1
ER -