DocumentCode :
16232
Title :
Near-Capacity Joint Source and Channel Coding of Symbol Values from an Infinite Source Set Using Elias Gamma Error Correction Codes
Author :
Tao Wang ; Wenbo Zhang ; Maunder, Robert G. ; Hanzo, Lajos
Author_Institution :
Electron. & Comput. Sci., Univ. of Southampton, Southampton, UK
Volume :
62
Issue :
1
fYear :
2014
fDate :
Jan-14
Firstpage :
280
Lastpage :
292
Abstract :
In this paper we propose a novel low-complexity Joint Source and Channel Code (JSCC), which we refer to as the Elias Gamma Error Correction (EGEC) code. Like the recently-proposed Unary Error Correction (UEC) code, this facilitates the practical near-capacity transmission of symbol values that are randomly selected from a set having an infinite cardinality, such as the set of all positive integers. However, in contrast to the UEC code, our EGEC code is a universal code, facilitating the transmission of symbol values that are randomly selected using any monotonic probability distribution. When the source symbols obey a particular zeta probability distribution, our EGEC scheme is shown to offer a 3.4 dB gain over a UEC benchmarker, when Quaternary Phase Shift Keying (QPSK) modulation is employed for transmission over an uncorrelated narrowband Rayleigh fading channel. In the case of another zeta probability distribution, our EGEC scheme offers a 1.9 dB gain over a Separate Source and Channel Coding (SSCC) benchmarker.
Keywords :
Rayleigh channels; channel coding; error correction codes; phase shift keying; source coding; statistical distributions; EGEC code; Infinite Source Set; QPSK modulation; UEC code; elias gamma error correction codes; monotonic probability distribution; near-capacity joint source and channel coding; near-capacity transmission; novel low-complexity joint source and channel code; quaternary phase shift keying modulation; symbol values; unary error correction code; uncorrelated narrowband Rayleigh fading channel; universal code; zeta probability distribution; Decoding; Encoding; Error correction codes; Phase shift keying; Probability distribution; Transmitters; Vectors; Source coding; channel capacity; channel coding; iterative decoding;
fLanguage :
English
Journal_Title :
Communications, IEEE Transactions on
Publisher :
ieee
ISSN :
0090-6778
Type :
jour
DOI :
10.1109/TCOMM.2013.120213.130301
Filename :
6679360
Link To Document :
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