DocumentCode
2660531
Title
Design and Performance of LDPC Codes for OFDM Based Aeronautical Communication Systems
Author
Basharat, S.A. ; Rao, Y.V.
Author_Institution
R&D Group, Larsen & Toubro IInfotechnfotech Ltd., Bangalore
fYear
2007
fDate
13-19 May 2007
Firstpage
24
Lastpage
24
Abstract
With recent developments in forward error correction (FEC) schemes, low-density parity check (LDPC) codes are gaining more and more popularity with their performance approaching to near Shannon´s limits. In this paper a flexible LDPC codec is designed and optimized for OFDM transceivers in aeronautical channels. We considered OFDM based aeronautical communication systems and investigated en-route and taxi scenarios. The basic aim was to achieve a targeted BER for the proposed OFDM system, despite channel impairments and high Doppler shift (aircraft traveling at twice the supersonic speed).Through simulations, performance was evaluated for best possible system configuration. Performance of both regular and irregular LDPC codes is evaluated as a function of code rate, column weight, number of decoder iterations, coding delay, number of cycles and block length. For OFDM system type of modulation, number of subcarriers and FFT size are used as metrics for performance evaluation.
Keywords
Doppler shift; OFDM modulation; aircraft communication; codecs; error statistics; forward error correction; parity check codes; transceivers; wireless channels; BER; Doppler shift; FEC; FFT size; LDPC codec; OFDM transceiver; aeronautical channel; aeronautical communication systems; forward error correction; low-density parity check code; Aircraft; Bit error rate; Codecs; Design optimization; Doppler shift; Forward error correction; Iterative decoding; OFDM; Parity check codes; Transceivers;
fLanguage
English
Publisher
ieee
Conference_Titel
Telecommunications, 2007. AICT 2007. The Third Advanced International Conference on
Conference_Location
Morne
Print_ISBN
0-7695-2843-0
Electronic_ISBN
0-7695-2843-0
Type
conf
DOI
10.1109/AICT.2007.19
Filename
4215245
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