TY - JOUR
T1 - Compact waveguided metamaterials for suppression of mutual coupling in microstrip array
AU - Qamar, Zeeshan
AU - Park, Hyun Chang
N1 - Publisher Copyright:
© 2014, Electromagnetics Academy. All rights reserved.
PY - 2014
Y1 - 2014
N2 - In this paper, suppression of mutual coupling is achieved using compact waveguided metamaterials (WG-MTMs) in between elements of a densely packed microstrip array. Both the E-plane internally folded complementary split ring resonator and the H-plane internally folded complementary split ring resonator are employed to reduce the mutual coupling between adjacent elements. Coupling suppression of 18 dB and 9dB, for elements in the E-plane and H-plane, respectively, is demonstrated. Due to the compact size of the waveguided metamaterials, the edge-to-edge separation between elements is kept at only 0.093λ 0. With the same element spacing, a 2 x 2 array is also simulated with compact WG-MTMs. The proposed structure reduces the array size and enables the implementation of compact Multiple-Input-Multiple-Output systems.
AB - In this paper, suppression of mutual coupling is achieved using compact waveguided metamaterials (WG-MTMs) in between elements of a densely packed microstrip array. Both the E-plane internally folded complementary split ring resonator and the H-plane internally folded complementary split ring resonator are employed to reduce the mutual coupling between adjacent elements. Coupling suppression of 18 dB and 9dB, for elements in the E-plane and H-plane, respectively, is demonstrated. Due to the compact size of the waveguided metamaterials, the edge-to-edge separation between elements is kept at only 0.093λ 0. With the same element spacing, a 2 x 2 array is also simulated with compact WG-MTMs. The proposed structure reduces the array size and enables the implementation of compact Multiple-Input-Multiple-Output systems.
UR - http://www.scopus.com/inward/record.url?scp=84908410593&partnerID=8YFLogxK
U2 - 10.2528/PIER14063002
DO - 10.2528/PIER14063002
M3 - Article
AN - SCOPUS:84908410593
SN - 1070-4698
VL - 149
SP - 183
EP - 192
JO - Progress in Electromagnetics Research
JF - Progress in Electromagnetics Research
ER -