Title :
Design of compact Ku band microstrip antenna for satellite communication
Author :
Prasad, Prafulla Chandra ; Chattoraj, Neela
Author_Institution :
Wireless Commun., Birla Inst. of Technol., Ranchi, India
Abstract :
In the recent years antenna design appears as a mature field of research. It really is not the fact because as the technology grows with new ideas, fitting expectations in the antenna design are always coming up. A Ku-band patch antenna loaded with notches and slit has been designed and simulated using Ansoft HFSS 3D electromagnetic simulation tool. Multi-frequency band operation is obtained from the proposed microstrip antenna. The design was carried out using Glass PTFE as the substrate and copper as antenna material. The designed antennas resonate at 15GHz with return loss over 50dB & VSWR less than 1, on implementing different slots in the radiating patch multiple frequencies resonate at 12.2GHz & 15.00GHz (Return Loss -27.5, -37.73 respectively & VSWR 0.89, 0.24 respectively) and another resonate at 11.16 GHz, 15.64GHz & 17.73 GHz with return loss -18.99, -23.026, -18.156 dB respectively and VSWR 1.95, 1.22 & 2.1 respectively. All the above designed band are used in the satellite application for non-geostationary orbit (NGSO) and fixed-satellite services (FSS) providers to operate in various segments of the Ku-band.
Keywords :
microstrip antennas; microwave antennas; multifrequency antennas; satellite communication; Ansoft HFSS 3D electromagnetic simulation tool; Glass PTFE; Ku-band patch antenna; NGSO; fixed-satellite services; frequency 11.16 GHz; frequency 12.2 GHz; frequency 15 GHz; frequency 15.64 GHz; frequency 17.73 GHz; loss -18.156 dB; loss -18.99 dB; loss -23.026 dB; loss -27.5 dB; loss -37.73 dB; microstrip antenna; multifrequency band operation; nongeostationary orbit; radiating patch; Antenna radiation patterns; Frequency selective surfaces; Gain; Microstrip; Microstrip antennas; Resonant frequency; FSS (Fixed-Satellite Service); HFSS; Ku-Band; Microstrip Antenna; Multiband; NGSO (Non-Geostationary Satellite Orbit); Satellite application; Slot loaded patch;
Conference_Titel :
Communications and Signal Processing (ICCSP), 2013 International Conference on
Conference_Location :
Melmaruvathur
Print_ISBN :
978-1-4673-4865-2
DOI :
10.1109/iccsp.2013.6577042