A low complexity ofdm modulator/demodulator based on discrete hartley transform
The investigation upon to discrete Hartley transform (DHT) to replace the conventional complex-valued and mature discrete Fourier transform (DFT) as the OFDM modulator and demodulator was carried out in this research. The overall project is divided into two parts as follows: firstly, the proposed...
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my.unimap-371632014-09-17T06:59:11Z A low complexity ofdm modulator/demodulator based on discrete hartley transform Zakaria, Sembiring Discrete Hartley Transform (DHT) OFDM OFDM modulator System performance The investigation upon to discrete Hartley transform (DHT) to replace the conventional complex-valued and mature discrete Fourier transform (DFT) as the OFDM modulator and demodulator was carried out in this research. The overall project is divided into two parts as follows: firstly, the proposed system is simulated under various parameters such as BER versus SNR and the quality of image versus given value of SNR. Secondly, the simulation model has been developed using excellent software for simulation, MATLAB. Statistically analysis has been investigated to measure the accuracy of the system performance and also the complexity of the system. Simulation results show that the system complexity is reduced in term of multiplication and addition number. For number of subcarriers, N = 64, 52 % of multiplication and 28 % of addition numbers are reduced. The system performance is measured in term of plotted graph of BER versus SNR and quality of received image versus SNR, where the BER value is 10-3 and quality of image is similar with the original image when the given value of SNR = 30 dB. 2014-09-17T06:59:10Z 2014-09-17T06:59:10Z 2011 Thesis http://dspace.unimap.edu.my:80/dspace/handle/123456789/37163 en Universiti Malaysia Perlis (UniMAP) School of Computer and Communication Engineering |
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Discrete Hartley Transform (DHT) OFDM OFDM modulator System performance |
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Discrete Hartley Transform (DHT) OFDM OFDM modulator System performance Zakaria, Sembiring A low complexity ofdm modulator/demodulator based on discrete hartley transform |
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The investigation upon to discrete Hartley transform (DHT) to replace the conventional
complex-valued and mature discrete Fourier transform (DFT) as the OFDM modulator
and demodulator was carried out in this research. The overall project is divided into two
parts as follows: firstly, the proposed system is simulated under various parameters such as BER versus SNR and the quality of image versus given value of SNR. Secondly, the simulation model has been developed using excellent software for simulation,
MATLAB. Statistically analysis has been investigated to measure the accuracy of the
system performance and also the complexity of the system. Simulation results show that
the system complexity is reduced in term of multiplication and addition number. For
number of subcarriers, N = 64, 52 % of multiplication and 28 % of addition numbers are
reduced. The system performance is measured in term of plotted graph of BER versus
SNR and quality of received image versus SNR, where the BER value is 10-3 and
quality of image is similar with the original image when the given value of SNR = 30
dB. |
format |
Thesis |
author |
Zakaria, Sembiring |
author_facet |
Zakaria, Sembiring |
author_sort |
Zakaria, Sembiring |
title |
A low complexity ofdm modulator/demodulator based on discrete hartley transform |
title_short |
A low complexity ofdm modulator/demodulator based on discrete hartley transform |
title_full |
A low complexity ofdm modulator/demodulator based on discrete hartley transform |
title_fullStr |
A low complexity ofdm modulator/demodulator based on discrete hartley transform |
title_full_unstemmed |
A low complexity ofdm modulator/demodulator based on discrete hartley transform |
title_sort |
low complexity ofdm modulator/demodulator based on discrete hartley transform |
publisher |
Universiti Malaysia Perlis (UniMAP) |
publishDate |
2014 |
url |
http://dspace.unimap.edu.my:80/dspace/handle/123456789/37163 |
_version_ |
1643798216803614720 |
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13.222552 |