We apologize for a recent technical issue with our email system, which temporarily affected account activations. Accounts have now been activated. Authors may proceed with paper submissions. PhDFocusTM
CFP last date
20 November 2024
Reseach Article

Performance Comparison of Discrete Hartley Transform (DHT) and Fast Fourier Transform (FFT) OFDM System in AWGN Channel

by Vinay Kumar Singh, Shilpi Gupta, Upena D. Dalal
International Journal of Computer Applications
Foundation of Computer Science (FCS), NY, USA
Volume 70 - Number 9
Year of Publication: 2013
Authors: Vinay Kumar Singh, Shilpi Gupta, Upena D. Dalal
10.5120/11987-7865

Vinay Kumar Singh, Shilpi Gupta, Upena D. Dalal . Performance Comparison of Discrete Hartley Transform (DHT) and Fast Fourier Transform (FFT) OFDM System in AWGN Channel. International Journal of Computer Applications. 70, 9 ( May 2013), 1-4. DOI=10.5120/11987-7865

@article{ 10.5120/11987-7865,
author = { Vinay Kumar Singh, Shilpi Gupta, Upena D. Dalal },
title = { Performance Comparison of Discrete Hartley Transform (DHT) and Fast Fourier Transform (FFT) OFDM System in AWGN Channel },
journal = { International Journal of Computer Applications },
issue_date = { May 2013 },
volume = { 70 },
number = { 9 },
month = { May },
year = { 2013 },
issn = { 0975-8887 },
pages = { 1-4 },
numpages = {9},
url = { https://ijcaonline.org/archives/volume70/number9/11987-7865/ },
doi = { 10.5120/11987-7865 },
publisher = {Foundation of Computer Science (FCS), NY, USA},
address = {New York, USA}
}
%0 Journal Article
%1 2024-02-06T21:32:24.312191+05:30
%A Vinay Kumar Singh
%A Shilpi Gupta
%A Upena D. Dalal
%T Performance Comparison of Discrete Hartley Transform (DHT) and Fast Fourier Transform (FFT) OFDM System in AWGN Channel
%J International Journal of Computer Applications
%@ 0975-8887
%V 70
%N 9
%P 1-4
%D 2013
%I Foundation of Computer Science (FCS), NY, USA
Abstract

In the current scenario so many advanced techniques are finding a way as a substitute for complex DFT - based OFDM system. One of such type of technique is Discrete Hartley Transform. The requirement of only real arithmetic computations for the proposed technique makes it more advantageous in terms of simplicity and computational speed than conventional one. This technique is very closely related to Discrete Fourier Transform. The performance of DHT based OFDM system is carried out using raw data as well as with some images as the sources and after processing at the transmitter end, the signals are then transmitted through channel. Additive White Gaussian Noise (AWGN) has been considered for channel modeling. For accuracy of this simulation, the measurement of parameters has been repeated multiple times. The simulated resulting graph between Bit Error rate and SNR shows the improvement of performance. The system performance was analyzed for M- PSK mapping schemes with various values of M, where M is order of modulation technique used. Simulation has been performed on MATLAB 7. 0.

References
  1. John A. C. Bingham.
  2. Saad Bouguezel, M. Omair Ahmad, and M. N. S. Swamy. New parametric discrete fourier and hartley transforms, and algorithms for fast computation. IEEE Transactions Circuits and Systems I: Regular Papers, pages 562–575, March 2011.
  3. R. N. Bracewell. Discrete hartley transform. J. Opt. Soc. Am, 73(12):1832–1885, December 1983.
  4. R. N. Bracewell. Aspects of the hartley transform. Proc. IEEE, 82:381–387, March 1994.
  5. Chin-Kuo Jao, Syu-Siang Long, and Muh-Tian Shiue. On the dht-based multicarrier tranceiver over multipath fading channel. pages 1662–1666, September 2009.
  6. Chin-Kuo Jao, Syu-Siang Long, and Muh-Tian Shiue. Dht-based ofdm system for passband transmission over frequency-selective channel. IEEE Signal Processing Letters, 17(8):699–702, August 2010.
  7. Zakaria Sembiring and M Syahruddin. Performance analysis of discrete hartley transform based ofdm modulator and demodulator. Proc. IEEE 3rd International Conf. on Intelligent Systems Modelling and Simulations (ISMS), 82:674– 679, February 2012.
  8. Vijay Kumar Sharma, Richa Agrawal, U. C. Pati, and K. K. Mahapatra. 2-d separable discrete hartley transform architecture for efficient fpga resource. IEEE Signal Processing Letters, 17(8):699–702, August 2010.
  9. Hsieh S. Hou. The fast hartley transform algorithm. IEEE Transactions on Computers, C-36(2), February 1987.
  10. Chin-Liang Wang, Ching-Hsien Chang, John L. Fan, and John M. Cioffi. Discrete hartley transform based multicarrier modulation. Proc. IEEE ICASSP, 5:2513–2516, June 2000. 4
Index Terms

Computer Science
Information Sciences

Keywords

DHT- OFDM FFT- OFDM AWGN BER