PERANCANGAN DAN REALISASI SUSUNAN ANTENA MICROSTRIP 2,3 GHZ UNTUK APLIKASI WIMAX SUBSCRIBER STATION PADA PENGGUNAAN INDOOR
This final thesis carried out design and realization of the microstrip array antenna on the 2.3 GHz frequency in order to be used for the application of WiMAX Subscriber Station for indoor use. The microstrip antenna was chosen because it was considered most suitable for microwave communication a...
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Format: | Final Project |
Language: | Indonesia |
Online Access: | https://digilib.itb.ac.id/gdl/view/11783 |
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Institution: | Institut Teknologi Bandung |
Language: | Indonesia |
Summary: | This final thesis carried out design and realization of the microstrip array
antenna on the 2.3 GHz frequency in order to be used for the application of
WiMAX Subscriber Station for indoor use. The microstrip antenna was chosen
because it was considered most suitable for microwave communication and has
several advantages compared to other type of antenna. The microstrip antenna
fulfils the requirements required by present technology that is it’s low cost
production, light weight as well as its relatively small dimensions. The 2.3 GHz
frequency was chosing according to the allocation frequency for WiMAX
application in Indonesia.
The microstrip array antenna which will be realized is designed so that it will
operate on the 2.3 – 2.39 GHz which has a minimum gain of 10 dBi and has a
circular polarization. In this final thesis, Computer Aided Design (CAD) software,
is used to carry out design and simulation of the antenna. The design which is
going to be implemented is rectangular patch with microstrip line feeding
technique. The realization of the design using FR-4 substrate by the photo etching
method.
The gain obtained during measurement amounted to 9.619 dBi on the 2.362
GHz frequency. The measurement bandwitdth at VSWR< 2 is 139 MHz at the
frequency range of 2.270 GHz – 2.409 GHz or 5.88%. The VSWR score resulted
from measurement on resonation frequency 2.362 GHz amounted 1.023. The
LHCP circular polarized antenna with an acceptance variant level maximum
power to the amount of 2.825 dBm to all the corners of acceptance. |
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