DocumentCode
1457190
Title
Capacity and error probability in single-tone and multitone multiple access over an impulsive channel
Author
Stopler, Danny ; Zamir, Ram
Author_Institution
Dept. of Electr. Eng.-Syst., Tel Aviv Univ., Israel
Volume
49
Issue
3
fYear
2001
fDate
3/1/2001 12:00:00 AM
Firstpage
506
Lastpage
517
Abstract
Single-tone and multitone are two modulation methods which can combine multiple digital users over a single channel, and decode them independently, corresponding to time-division and frequency-division multiple access, respectively. When the channel noise is impulsive, its distribution at the receiver decision point, and therefore its effect on the users, depends strongly on the type of modulation. We quantify this effect using information theoretic measures: capacity and error-exponent, where the latter is represented by its cut-off rate parameter. For low to moderate impulse power, the cut-off rate associated with multitone is greater than the cut-off rate associated with single-tone-in contrast to the relation between the corresponding Shannon capacities. This leads to anomalous behavior of the error-versus-information-rate performance. We show that this behavior relates to the tendency toward Gaussianity of the noise after multitone demodulation. We also provide specific evaluation of this phenomena for advanced data transmission over the cable TV (hybrid fiber coax) channel
Keywords
cable television; channel capacity; data communication; demodulation; error statistics; frequency division multiple access; hybrid fibre coax networks; impulse noise; lead; time division multiple access; time-varying channels; Gaussianity; cable TV; capacity; channel noise; cut-off rate parameter; digital users; error probability; error-exponent; error-versus-information-rate performance; frequency-division multiple access; hybrid fiber coax channel; impulse power; impulsive channel; information theoretic measures; modulation methods; multitone demodulation; multitone multiple access; receiver decision point; single-tone multiple access; time-division multiple access; Cable TV; Capacity planning; Data communication; Decoding; Demodulation; Digital modulation; Error probability; Frequency; Gaussian noise; Optical fiber cables;
fLanguage
English
Journal_Title
Communications, IEEE Transactions on
Publisher
ieee
ISSN
0090-6778
Type
jour
DOI
10.1109/26.911458
Filename
911458
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